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1.
PLoS Pathog ; 20(5): e1011961, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38701091

RESUMEN

Noroviruses (NoVs) are a leading cause of viral gastroenteritis. Despite global clinical relevance, our understanding of how host factors, such as antiviral cytokines interferons (IFNs), modulate NoV population dynamics is limited. Murine NoV (MNoV) is a tractable in vivo model for the study of host regulation of NoV. A persistent strain of MNoV, CR6, establishes a reservoir in intestinal tuft cells for chronic viral shedding in stool. However, the influence of host innate immunity and permissive cell numbers on viral population dynamics is an open question. We generated a pool of 20 different barcoded viruses (CR6BC) by inserting 6-nucleotide barcodes at the 3' position of the NS4 gene and used this pool as our viral inoculum for in vivo infections of different mouse lines. We found that over the course of persistent CR6 infection, shed virus was predominantly colon-derived, and viral barcode richness decreased over time irrespective of host immune status, suggesting that persistent infection involves a series of reinfection events. In mice lacking the IFN-λ receptor, intestinal barcode richness was enhanced, correlating with increased viral intestinal replication. IL-4 treatment, which increases tuft cell numbers, also increased barcode richness, indicating the abundance of permissive tuft cells to be a bottleneck during CR6 infection. In mice lacking type I IFN signaling (Ifnar1-/-) or all IFN signaling (Stat1-/-), barcode diversity at extraintestinal sites was dramatically increased, implicating different IFNs as critical bottlenecks at specific tissue sites. Of interest, extraintestinal barcodes were overlapping but distinct from intestinal barcodes, indicating that disseminated virus represents a distinct viral population than that replicating in the intestine. Barcoded viruses are a valuable tool to explore the influence of host factors on viral diversity in the context of establishment and maintenance of infection as well as dissemination and have provided important insights into how NoV infection proceeds in immunocompetent and immunocompromised hosts.


Asunto(s)
Infecciones por Caliciviridae , Interferones , Norovirus , Animales , Norovirus/fisiología , Infecciones por Caliciviridae/virología , Infecciones por Caliciviridae/inmunología , Ratones , Interferones/metabolismo , Infección Persistente/virología , Infección Persistente/inmunología , Ratones Endogámicos C57BL , Mucosa Intestinal/virología , Mucosa Intestinal/inmunología , Gastroenteritis/virología , Replicación Viral , Ratones Noqueados , Inmunidad Innata , Esparcimiento de Virus
2.
Viruses ; 16(4)2024 03 23.
Artículo en Inglés | MEDLINE | ID: mdl-38675838

RESUMEN

Rabbit hemorrhagic disease (RHD) is an acute fatal disease caused by the rabbit hemorrhagic disease virus (RHDV). Since the first outbreaks of type 2 RHDV (RHDV2) in April 2020 in China, the persistence of this virus in the rabbit population has caused substantial economic losses in rabbit husbandry. Previous failures in preventing RHDV2 prompted us to further investigate the immune mechanisms underlying the virus's pathogenicity, particularly concerning the spleen, a vital component of the mononuclear phagocyte system (MPS). For this, a previous RHDV2 isolate, CHN/SC2020, was utilized to challenge naive adult rabbits. Then, the splenic transcriptome was determined by RNA-Seq. This study showed that the infected adult rabbits had 3148 differentially expressed genes (DEGs), which were associated with disease, signal transduction, cellular processes, and cytokine signaling categories. Of these, 100 upregulated DEGs were involved in inflammatory factors such as IL1α, IL-6, and IL-8. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis showed that these DEGs were significantly enriched in the cytokine-cytokine receptor interaction signaling pathway, which may play a vital role in CHN/SC2020 infection. At the same time, proinflammatory cytokines and chemokines were significantly increased in the spleen at the late stages of infection. These findings suggested that RHDV2 (CHN/SC2020) might induce dysregulation of the cytokine network and compromise splenic immunity against viral infection, which expanded our understanding of RHDV2 pathogenicity.


Asunto(s)
Infecciones por Caliciviridae , Citocinas , Virus de la Enfermedad Hemorrágica del Conejo , Bazo , Transcriptoma , Animales , Virus de la Enfermedad Hemorrágica del Conejo/genética , Virus de la Enfermedad Hemorrágica del Conejo/inmunología , Bazo/virología , Bazo/inmunología , Conejos , Infecciones por Caliciviridae/virología , Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/genética , Citocinas/metabolismo , Citocinas/genética , Perfilación de la Expresión Génica , Inflamación/virología , Inflamación/genética
3.
Viruses ; 16(4)2024 03 30.
Artículo en Inglés | MEDLINE | ID: mdl-38675881

RESUMEN

Rabbit hemorrhagic disease virus 2 (RHDV2) emerged in the United States in 2018 and has spread in both domestic and wild rabbits nationwide. The virus has a high mortality rate and can spread rapidly once introduced in a rabbit population. Vaccination against RHDV2 provides the best protection against disease and should be considered by all rabbit owners. Here, we investigate the duration of immunity provided by vaccination with the Medgene Platform conditionally licensed commercial vaccine 6 months following the initial series. Rabbits received either the vaccination or a placebo and were challenged with RHDV2 6 months later. All vaccinated rabbits survived challenge whereas 18/19 non-vaccinated controls succumbed to infection within 10 or fewer days post-challenge. These results demonstrate lasting immunity following vaccination with the Medgene RHDV2 vaccine.


Asunto(s)
Baculoviridae , Infecciones por Caliciviridae , Virus de la Enfermedad Hemorrágica del Conejo , Vacunación , Vacunas Sintéticas , Vacunas Virales , Animales , Virus de la Enfermedad Hemorrágica del Conejo/inmunología , Virus de la Enfermedad Hemorrágica del Conejo/genética , Conejos , Infecciones por Caliciviridae/prevención & control , Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/virología , Infecciones por Caliciviridae/veterinaria , Vacunas Virales/inmunología , Vacunas Virales/administración & dosificación , Vacunas Virales/genética , Vacunas Sintéticas/inmunología , Vacunas Sintéticas/administración & dosificación , Vacunas Sintéticas/genética , Baculoviridae/genética , Baculoviridae/inmunología , Anticuerpos Antivirales/sangre , Anticuerpos Antivirales/inmunología
5.
J Virol ; 97(10): e0093823, 2023 10 31.
Artículo en Inglés | MEDLINE | ID: mdl-37792003

RESUMEN

IMPORTANCE: Human norovirus (HuNoV) is highly infectious and can result in severe illnesses in the elderly and children. So far, there is no effective antiviral drug to treat HuNoV infection, and thus, the development of HuNoV vaccines is urgent. However, NoV evolves rapidly, and currently, at least 10 genogroups with numerous genotypes have been found. The genetic diversity of NoV and the lack of cross-protection between different genotypes pose challenges to the development of broadly protective vaccines. In this study, guided by structural alignment between GI.1 and GII.4 HuNoV VP1 proteins, several chimeric-type virus-like particles (VLPs) were designed through surface-exposed loop grafting. Mouse immunization studies show that two of the designed chimeric VLPs induced cross-immunity against both GI.1 and GII.4 HuNoVs. To our knowledge, this is the first designed chimeric VLPs that can induce cross-immune activities across different genogroups of HuNoV, which provides valuable strategies for the development of cross-reactive HuNoV vaccines.


Asunto(s)
Infecciones por Caliciviridae , Epítopos , Genotipo , Norovirus , Vacunas Virales , Virión , Animales , Humanos , Ratones , Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/prevención & control , Infecciones por Caliciviridae/virología , Epítopos/química , Epítopos/genética , Epítopos/inmunología , Inmunización , Norovirus/química , Norovirus/clasificación , Norovirus/genética , Norovirus/inmunología , Vacunas Virales/química , Vacunas Virales/genética , Vacunas Virales/inmunología , Quimera/genética , Quimera/inmunología , Proteínas de la Cápside/química , Proteínas de la Cápside/genética , Proteínas de la Cápside/inmunología , Virión/química , Virión/genética , Virión/inmunología
6.
Gut Microbes ; 15(2): 2249960, 2023 12.
Artículo en Inglés | MEDLINE | ID: mdl-37655966

RESUMEN

Over 90% of epidemic non-bacterial gastroenteritis are caused by human noroviruses (NoVs), which persist in a substantial subset of people allowing their spread worldwide. This has led to a significant number of endemic cases and up to 70,000 children deaths in developing countries. NoVs are primarily transmitted through the fecal-oral route. To date, studies have focused on the influence of the gut microbiota on enteric viral clearance by mucosal immunity. In this study, the use of mouse norovirus S99 (MNoV_S99) and CR6 (MNoV_CR6), two persistent strains, allowed us to provide evidence that the norovirus-induced exacerbation of colitis severity relied on bacterial sensing by nucleotide-binding oligomerization domain 2 (Nod2). Consequently, Nod2-deficient mice showed reduced levels of gravity of Dextran sodium sulfate (DSS)-induced colitis with both viral strains. And MNoV_CR6 viremia was heightened in Nod2-/- mice in comparison with animals hypomorphic for Atg16l1, which are prone to aggravated inflammation under DSS. Accordingly, the infection of macrophages derived from WT mice promoted the phosphorylation of Signal Transducer and Activator of Transcription 1 (STAT1) and NOD2's expression levels. Higher secretion of Tumor Necrosis Factor alpha (TNFα) following NOD2 activation and better viral clearance were measured in these cells. By contrast, reduced levels of pSTAT1 and blunted downstream secretion of TNFα were found in Nod2-deficient macrophages infected by MNoV_S99. Hence, our results uncover a previously unidentified virus-host-bacterial interplay that may represent a novel therapeutic target for treating noroviral origin gastroenteritis that may be linked with susceptibility to several common illnesses such as Crohn's disease.


Asunto(s)
Infecciones por Caliciviridae , Colitis , Gastroenteritis , Microbioma Gastrointestinal , Proteína Adaptadora de Señalización NOD2 , Animales , Ratones , Infecciones por Caliciviridae/inmunología , Colitis/inducido químicamente , Colitis/virología , Gastroenteritis/inmunología , Gastroenteritis/virología , Proteína Adaptadora de Señalización NOD2/metabolismo
7.
J Clin Immunol ; 43(2): 371-390, 2023 02.
Artículo en Inglés | MEDLINE | ID: mdl-36282455

RESUMEN

PURPOSE: About 15% of patients with common variable immunodeficiency (CVID) develop a small intestinal enteropathy, which resembles celiac disease with regard to histopathology but evolves from a distinct, poorly defined pathogenesis that has been linked in some cases to chronic norovirus (NV) infection. Interferon-driven inflammation is a prominent feature of CVID enteropathy, but it remains unknown how NV infection may contribute. METHODS: Duodenal biopsies of CVID patients, stratified according to the presence of villous atrophy (VA), IgA plasma cells (PCs), and chronic NV infection, were investigated by flow cytometry, multi-epitope-ligand cartography, bulk RNA-sequencing, and RT-qPCR of genes of interest. RESULTS: VA development was connected to the lack of intestinal (IgA+) PC, a T helper 1/T helper 17 cell imbalance, and increased recruitment of granzyme+CD8+ T cells and pro-inflammatory macrophages to the affected site. A mixed interferon type I/III and II signature occurred already in the absence of histopathological changes and increased with the severity of the disease and in the absence of (IgA+) PCs. Chronic NV infection exacerbated this signature when compared to stage-matched NV-negative samples. CONCLUSIONS: Our study suggests that increased IFN signaling and T-cell cytotoxicity are present already in mild and are aggravated in severe stages (VA) of CVID enteropathy. NV infection preempts local high IFN-driven inflammation, usually only seen in VA, at milder disease stages. Thus, revealing the impact of different drivers of the pathological mixed IFN type I/III and II signature may allow for more targeted treatment strategies in CVID enteropathy and supports the goal of viral elimination.


Asunto(s)
Infecciones por Caliciviridae , Inmunodeficiencia Variable Común , Norovirus , Humanos , Atrofia/complicaciones , Atrofia/patología , Infecciones por Caliciviridae/inmunología , Linfocitos T CD8-positivos , Inmunodeficiencia Variable Común/complicaciones , Inmunodeficiencia Variable Común/inmunología , Inmunoglobulina A , Inflamación/complicaciones , Interferones , Norovirus/fisiología
8.
Sci Rep ; 12(1): 14275, 2022 08 22.
Artículo en Inglés | MEDLINE | ID: mdl-35995986

RESUMEN

Norovirus is a leading cause of epidemic acute gastroenteritis. More than 30 genotypes circulate in humans, some are common, and others are only sporadically detected. Here, we investigated whether serology can be used to determine which genotypes infect children. We established a multiplex protein microarray with structural and non-structural norovirus antigens that allowed simultaneous antibody testing against 30 human GI and GII genotypes. Antibody responses of sera obtained from 287 children aged < 1 month to 5.5 years were profiled. Most specific IgG and IgA responses were directed against the GII.2, GII.3, GII.4, and GII.6 capsid genotypes. While we detected antibody responses against rare genotypes, we found no evidence for wide circulation. We also detected genotype-specific antibodies against the non-structural proteins p48 and p22 in sera of older children. In this study, we show the age-dependent antibody responses to a broad range of norovirus capsid and polymerase genotypes, which will aid in the development of vaccines.


Asunto(s)
Infecciones por Caliciviridae , Gastroenteritis , Inmunidad Humoral , Norovirus , Infecciones por Caliciviridae/inmunología , Proteínas de la Cápside/genética , Preescolar , Europa (Continente) , Gastroenteritis/inmunología , Gastroenteritis/virología , Genotipo , Humanos , Lactante , Norovirus/genética , Filogenia
9.
J Cell Sci ; 135(4)2022 02 15.
Artículo en Inglés | MEDLINE | ID: mdl-35098996

RESUMEN

To rapidly adapt to stresses such as infections, cells have evolved several mechanisms, which include the activation of stress response pathways and the innate immune response. These stress responses result in the rapid inhibition of translation and condensation of stalled mRNAs with RNA-binding proteins and signalling components into cytoplasmic biocondensates called stress granules (SGs). Increasing evidence suggests that SGs contribute to antiviral defence, and thus viruses need to evade these responses to propagate. We previously showed that feline calicivirus (FCV) impairs SG assembly by cleaving the scaffolding protein G3BP1. We also observed that uninfected bystander cells assembled G3BP1-positive granules, suggesting a paracrine response triggered by infection. We now present evidence that virus-free supernatant generated from infected cells can induce the formation of SG-like foci, which we name paracrine granules. They are linked to antiviral activity and exhibit specific kinetics of assembly-disassembly, and protein and RNA composition that are different from canonical SGs. We propose that this paracrine induction reflects a novel cellular defence mechanism to limit viral propagation and promote stress responses in bystander cells.


Asunto(s)
Infecciones por Caliciviridae , Gránulos de Estrés , Animales , Infecciones por Caliciviridae/inmunología , Calicivirus Felino/inmunología , Gatos , Proteínas de Unión a Poli-ADP-Ribosa/inmunología , Proteínas con Motivos de Reconocimiento de ARN/metabolismo , Gránulos de Estrés/inmunología , Replicación Viral/fisiología
10.
J Gen Virol ; 103(1)2022 01.
Artículo en Inglés | MEDLINE | ID: mdl-35077345

RESUMEN

Norovirus is the leading cause of epidemic and endemic acute gastroenteritis worldwide and the most frequent cause of foodborne illness in the United States. There is no specific treatment for norovirus infections and therapeutic interventions are based on alleviating symptoms and limiting viral transmission. The immune response to norovirus is not completely understood and mechanistic studies have been hindered by lack of a robust cell culture system. In recent years, the human intestinal enteroid/human intestinal organoid system (HIE/HIO) has enabled successful human norovirus replication. Cells derived from HIE have also successfully been subjected to genetic manipulation using viral vectors as well as CRISPR/Cas9 technology, thereby allowing studies to identify antiviral signaling pathways important in controlling norovirus infection. RNA sequencing using HIE cells has been used to investigate the transcriptional landscape during norovirus infection and to identify antiviral genes important in infection. Other cell culture platforms such as the microfluidics-based gut-on-chip technology in combination with the HIE/HIO system also have the potential to address fundamental questions on innate immunity to human norovirus. In this review, we highlight the recent advances in understanding the innate immune response to human norovirus infections in the HIE system, including the application of advanced molecular technologies that have become available in recent years such as the CRISPR/Cas9 and RNA sequencing, as well as the potential application of single cell transcriptomics, viral proteomics, and gut-on-a-chip technology to further elucidate innate immunity to norovirus.


Asunto(s)
Infecciones por Caliciviridae/inmunología , Gastroenteritis/inmunología , Intestinos/virología , Organoides/inmunología , Gastroenteritis/virología , Humanos , Inmunidad Innata , Intestinos/inmunología , Modelos Biológicos , Norovirus/patogenicidad , Norovirus/fisiología , Organoides/virología , Análisis de Secuencia de ARN , Replicación Viral
11.
J Virol ; 96(3): e0192321, 2022 02 09.
Artículo en Inglés | MEDLINE | ID: mdl-34787460

RESUMEN

Akt (protein kinase B) is a key signaling protein in eukaryotic cells that controls many cellular processes, such as glucose metabolism and cell proliferation, for survival. As obligate intracellular pathogens, viruses modulate host cellular processes, including Akt signaling, for optimal replication. The mechanisms by which viruses modulate Akt and the resulting effects on the infectious cycle differ widely depending on the virus. In this study, we explored the effect of Akt serine 473 phosphorylation (p-Akt) during murine norovirus (MNV) infection. p-Akt increased during infection of murine macrophages with acute MNV-1 and persistent CR3 and CR6 strains. Inhibition of Akt with MK2206, an inhibitor of all three isoforms of Akt (Akt1/2/3), reduced infectious virus progeny of all three virus strains. This reduction was due to decreased viral genome replication (CR3), defective virus assembly (MNV-1), or altered cellular egress (CR3 and CR6) in a virus strain-dependent manner. Collectively, our data demonstrate that Akt activation increases in macrophages during the later stages of the MNV infectious cycle, which may enhance viral infection in unique ways for different virus strains. The data, for the first time, indicate a role for Akt signaling in viral assembly and highlight additional phenotypic differences between closely related MNV strains. IMPORTANCE Human noroviruses (HNoV) are a leading cause of viral gastroenteritis, resulting in high annual economic burden and morbidity, yet there are no small-animal models supporting productive HNoV infection or robust culture systems producing cell culture-derived virus stocks. As a result, research on drug discovery and vaccine development against norovirus infection has been challenging, and no targeted antivirals or vaccines against HNoV are approved. On the other hand, murine norovirus (MNV) replicates to high titers in cell culture and is a convenient and widespread model in norovirus research. Our data demonstrate the importance of Akt signaling during the late stage of the MNV life cycle. Notably, the effect of Akt signaling on genome replication, virus assembly, and cellular egress is virus strain specific, highlighting the diversity of biological phenotypes despite small genetic variability among norovirus strains. This study is the first to demonstrate a role for Akt in viral assembly.


Asunto(s)
Infecciones por Caliciviridae/metabolismo , Infecciones por Caliciviridae/virología , Macrófagos/metabolismo , Macrófagos/virología , Norovirus/fisiología , Proteínas Proto-Oncogénicas c-akt/metabolismo , Replicación Viral , Animales , Infecciones por Caliciviridae/inmunología , Susceptibilidad a Enfermedades , Interacciones Huésped-Patógeno , Activación de Macrófagos , Macrófagos/inmunología , Ratones , Fosforilación , Proteínas Proto-Oncogénicas c-akt/antagonistas & inhibidores , Especificidad de la Especie
12.
Int J Mol Sci ; 22(24)2021 Dec 15.
Artículo en Inglés | MEDLINE | ID: mdl-34948268

RESUMEN

Rotavirus (RV) and norovirus (NoV) are the leading causes of acute gastroenteritis (AGE) worldwide. Several studies have demonstrated that histo-blood group antigens (HBGAs) have a role in NoV and RV infections since their presence on the gut epithelial surfaces is essential for the susceptibility to many NoV and RV genotypes. Polymorphisms in genes that code for enzymes required for HBGAs synthesis lead to secretor or non-secretor and Lewis positive or Lewis negative individuals. While secretor individuals appear to be more susceptible to RV infections, regarding NoVs infections, there are too many discrepancies that prevent the ability to draw conclusions. A second factor that influences enteric viral infections is the gut microbiota of the host. In vitro and animal studies have determined that the gut microbiota limits, but in some cases enhances enteric viral infection. The ways that microbiota can enhance NoV or RV infection include virion stabilization and promotion of virus attachment to host cells, whereas experiments with microbiota-depleted and germ-free animals point to immunoregulation as the mechanism by which the microbiota restrict infection. Human trials with live, attenuated RV vaccines and analysis of the microbiota in responder and non-responder individuals also allowed the identification of bacterial taxa linked to vaccine efficacy. As more information is gained on the complex relationships that are established between the host (glycobiology and immune system), the gut microbiota and intestinal viruses, new avenues will open for the development of novel anti-NoV and anti-RV therapies.


Asunto(s)
Infecciones por Caliciviridae/microbiología , Infecciones por Rotavirus/microbiología , Animales , Antígenos de Grupos Sanguíneos/inmunología , Antígenos de Grupos Sanguíneos/metabolismo , Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/virología , Gastroenteritis/microbiología , Microbioma Gastrointestinal/fisiología , Genotipo , Glicómica , Humanos , Inmunidad , Norovirus/inmunología , Norovirus/patogenicidad , Rotavirus/inmunología , Rotavirus/patogenicidad , Infecciones por Rotavirus/inmunología , Infecciones por Rotavirus/virología , Eficacia de las Vacunas , Vacunas Virales
13.
Front Immunol ; 12: 781718, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34868056

RESUMEN

Norovirus (NoV) is a zoonotic virus that causes diarrhea in humans and animals. Outbreaks in nosocomial settings occur annually worldwide, endangering public health and causing serious social and economic burdens. The latter quarter of 2016 witnessed the emergence of the GII.P16-GII.2 recombinant norovirus throughout Asia. This genotype exhibits strong infectivity and replication characteristics, proposing its potential to initiate a pandemic. There is no vaccine against GII.P16-GII.2 recombinant norovirus, so it is necessary to design a preventive vaccine. In this study, GII.P16-GII.2 type norovirus virus-like particles (VLPs) were constructed using the baculovirus expression system and used to conduct immunizations in mice. After immunization of mice, mice were induced to produce memory T cells and specific antibodies, indicating that the VLPs induced specific cellular and humoral immune responses. Further experiments were then initiated to understand the underlying mechanisms involved in antigen presentation. Towards this, we established co-cultures between dendritic cells (DCs) or macrophages (Mø) and naïve CD4+T cells and simulated the antigen presentation process by incubation with VLPs. Thereafter, we detected changes in cell surface molecules, cytokines and related proteins. The results indicated that VLPs effectively promoted the phenotypic maturation of Mø but not DCs, as indicated by significant changes in the expression of MHC-II, costimulatory factors and related cytokines in Mø. Moreover, we found VLPs caused Mø to polarize to the M1 type and release inflammatory cytokines, thereby inducing naïve CD4+ T cells to perform Th1 immune responses. Therefore, this study reveals the mechanism of antigen presentation involving GII.P16-GII.2 recombinant norovirus VLPs, providing a theoretical basis for both understanding responses to norovirus infection as well as opportunities for vaccine development.


Asunto(s)
Infecciones por Caliciviridae/inmunología , Interacciones Huésped-Patógeno/inmunología , Activación de Macrófagos/inmunología , Macrófagos/inmunología , Norovirus/inmunología , Células TH1/inmunología , Vacunas de Partículas Similares a Virus/inmunología , Animales , Anticuerpos Neutralizantes , Anticuerpos Antivirales/inmunología , Especificidad de Anticuerpos/inmunología , Presentación de Antígeno , Antígenos Virales/genética , Antígenos Virales/inmunología , Infecciones por Caliciviridae/prevención & control , Infecciones por Caliciviridae/virología , Modelos Animales de Enfermedad , Femenino , Humanos , Inmunidad Celular , Macrófagos/metabolismo , Ratones , Norovirus/clasificación , Norovirus/genética , Proteínas Recombinantes , Células TH1/metabolismo , Vacunas de Partículas Similares a Virus/aislamiento & purificación , Vacunas de Partículas Similares a Virus/ultraestructura
14.
Sci Rep ; 11(1): 20540, 2021 10 15.
Artículo en Inglés | MEDLINE | ID: mdl-34654825

RESUMEN

In a prospective observational study, seroconversion to a specific pathogen can serve as a marker of an incident infection, whether or not that infection is symptomatic or clinically diagnosed. While self-reported symptoms can be affected by reporting bias, seroconversion is likely to be free of this bias as it is based on objective measurements of antibody response. Non-invasive salivary antibody tests can be used instead of serum tests to detect seroconversions in prospective studies. In the present study, individuals and families were recruited at a Lake Michigan beach in Wisconsin in August 2011. Data on recreational water exposure and baseline saliva samples (S1) were collected at recruitment. Follow-up data on gastrointestinal symptoms were collected via a telephone interview approximately 10 days post-recruitment. Follow-up saliva samples were self-collected approximately 2 weeks (S2) and 30-40 days post-recruitment (S3) and mailed to the study laboratory. Samples were analyzed for immunoglobulin (Ig) G responses to recombinant antigens of three noroviruses and Cryptosporidium, as well as protein purification tags as internal controls, using an in-house multiplex suspension immunoassay on the Luminex platform. Responses were defined as ratios of antibody reactivities with a target protein and its purification tag. Seroconversions were defined as at least four-fold and three-fold increases in responses in S2 and S3 samples compared to S1, respectively. In addition, an S2 response had to be above the upper 90% one-sided prediction limit of a corresponding spline function of age. Among 872 study participants, there were seven (0.8%) individuals with seroconversions, including six individuals with seroconversions to noroviruses and two to Cryptosporidium (one individual seroconverted to both pathogens). Among 176 (20%) individuals who reported swallowing lake water, there were six (3.4%) seroconversions compared to one (0.14%) seroconversion among the remaining 696 individuals: the crude and age-standardized risk differences per 1000 beachgoers were 32.7 (95% confidence limits 5.7; 59.6) and 94.8 (4.6; 276), respectively. The age-adjusted odds ratio of seroconversion in those who swallowed water vs. all others was 49.5 (4.5; 549), p = 0.001. Individuals with a norovirus seroconversion were more likely to experience vomiting symptoms within 4 days of the index beach visit than non-converters with an odds ratio of 34 (3.4, 350), p = 0.003. This study contributed further evidence that recreational water exposure is associated with symptomatic and asymptomatic waterborne infections, and that salivary antibody assays can be used in epidemiological surveys of norovirus and Cryptosporidium infections.


Asunto(s)
Infecciones Asintomáticas/epidemiología , Playas/estadística & datos numéricos , Infecciones por Caliciviridae/epidemiología , Criptosporidiosis/epidemiología , Saliva/inmunología , Adolescente , Adulto , Anticuerpos/análisis , Infecciones por Caliciviridae/inmunología , Niño , Criptosporidiosis/inmunología , Femenino , Humanos , Lagos/virología , Masculino , Persona de Mediana Edad , Estudios Prospectivos , Microbiología del Agua , Wisconsin/epidemiología , Adulto Joven
15.
J Gen Virol ; 102(10)2021 10.
Artículo en Inglés | MEDLINE | ID: mdl-34698626

RESUMEN

Human noroviruses (HuNoVs) are increasingly becoming the main cause of transmissible gastroenteritis worldwide, with hundreds of thousands of deaths recorded annually. Yet, decades after their discovery, there is still no effective treatment or vaccine. Efforts aimed at developing vaccines or treatment will benefit from a greater understanding of norovirus-host interactions, including the host response to infection. In this review, we provide a concise overview of the evidence establishing the significance of type I and type III interferon (IFN) responses in the restriction of noroviruses. We also critically examine our current understanding of the molecular mechanisms of IFN induction in norovirus-infected cells, and outline the diverse strategies deployed by noroviruses to supress and/or avoid host IFN responses. It is our hope that this review will facilitate further discussion and increase interest in this area.


Asunto(s)
Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/virología , Interferones/fisiología , Norovirus/inmunología , Norovirus/patogenicidad , Animales , Línea Celular , Humanos , Evasión Inmune , Inmunidad Innata , Interferones/biosíntesis , Proteínas Virales/metabolismo , Replicación Viral
16.
Viruses ; 13(10)2021 10 09.
Artículo en Inglés | MEDLINE | ID: mdl-34696463

RESUMEN

Acute gastroenteritis (AGE) is a major cause of morbidity and mortality worldwide, resulting in an estimated 440,571 deaths of children under age 5 annually. Rotavirus, norovirus, and sapovirus are leading causes of childhood AGE. A successful rotavirus vaccine has reduced rotavirus hospitalizations by more than 50%. Using rotavirus as a guide, elucidating the determinants, breath, and duration of serological antibody immunity to AGE viruses, as well as host genetic factors that define susceptibility is essential for informing development of future vaccines and improving current vaccine candidates. Here, we summarize the current knowledge of disease burden and serological antibody immunity following natural infection to inform further vaccine development for these three high-burden viruses.


Asunto(s)
Enfermedades Gastrointestinales/inmunología , Enfermedades Gastrointestinales/virología , Inmunidad Humoral , Anticuerpos Antivirales , Infecciones por Caliciviridae/inmunología , Infecciones por Caliciviridae/virología , Niño , Preescolar , Diarrea/inmunología , Diarrea/virología , Gastroenteritis/inmunología , Gastroenteritis/virología , Enfermedades Gastrointestinales/prevención & control , Hospitalización , Humanos , Norovirus , Rotavirus , Infecciones por Rotavirus/inmunología , Infecciones por Rotavirus/virología , Vacunas contra Rotavirus , Sapovirus , Desarrollo de Vacunas
17.
J Gen Virol ; 102(9)2021 09.
Artículo en Inglés | MEDLINE | ID: mdl-34491891

RESUMEN

Murine norovirus (MNV) is widely used as a model for studying norovirus biology. While MNV isolates vary in their pathogenesis, infection of immunocompetent mice mostly results in persistent infection. The ability of a virus to establish a persistent infection is dependent on its ability to subvert or avoid the host immune response. Previously, we described the identification and characterization of virulence factor 1 (VF1) in MNV, and demonstrated its role as an innate immune antagonist. Here, we explore the role of VF1 during persistent MNV infection in an immunocompetent host. Using reverse genetics, we generated MNV-3 viruses carrying a single or a triple termination codon inserted in the VF1 ORF. VF1-deleted MNV-3 replicated to comparable levels to the wildtype virus in tissue culture. Comparative studies between MNV-3 and an acute MNV-1 strain show that MNV-3 VF1 exerts the same functions as MNV-1 VF1, but with reduced potency. C57BL/6 mice infected with VF1-deleted MNV-3 showed significantly reduced replication kinetics during the acute phase of the infection, but viral loads rapidly reached the levels seen in mice infected with wildtype virus after phenotypic restoration of VF1 expression. Infection with an MNV-3 mutant that had three termination codons inserted into VF1, in which reversion was suppressed, resulted in consistently lower replication throughout a 3 month persistent infection in mice, suggesting a role for VF1 in viral fitness in vivo. Our results indicate that VF1 expressed by a persistent strain of MNV also functions to antagonize the innate response to infection. We found that VF1 is not essential for viral persistence, but instead contributes to viral fitness in mice. These data fit with the hypothesis that noroviruses utilize multiple mechanisms to avoid and/or control the host response to infection and that VF1 is just one component of this.


Asunto(s)
Infecciones por Caliciviridae/virología , Norovirus/patogenicidad , Proteínas Virales/metabolismo , Factores de Virulencia/metabolismo , Animales , Apoptosis , Infecciones por Caliciviridae/inmunología , Línea Celular , Inmunidad Innata , Interferón beta/biosíntesis , Masculino , Ratones , Ratones Endogámicos C57BL , Norovirus/genética , Norovirus/fisiología , Proteínas Virales/genética , Virulencia , Factores de Virulencia/genética , Replicación Viral , Esparcimiento de Virus
18.
Viruses ; 13(9)2021 09 12.
Artículo en Inglés | MEDLINE | ID: mdl-34578393

RESUMEN

Feline calicivirus (FCV) is an important pathogen of cats that has two genogroups (GI and GII). To investigate the prevalence and molecular characteristics of FCVs in southwestern China, 162 nasal swab samples were collected from cats in animal shelters and pet hospitals. In total, 38 of the clinical samples (23.46%) were identified as FCV positive using nested RT-PCR. Phylogenetic analyses using 10 capsid protein VP1 sequences revealed that 8 GI and 2 GII strains formed two independent clusters. Additionally, three separated FCVs that were not clustered phylogenetically (two GI and one GII strains) were successfully isolated from clinical samples and their full-length genomes were obtained. Phylogenetic and recombinant analyses of a GI FCV revealed genomic breakpoints in ORF1 and ORF2 regions with evidence for recombinant events between GI sub-genogroups, which is reported in China for the first time. Furthermore, sera obtained from mice immunized independently with the three FCV isolates and a commercial vaccine were used to evaluate the cross-reactivity of neutralizing antibodies. The three separate FCVs were neutralized by each other at a 1:19 to 1:775 titer range, whereas the triple-inactivated vaccine was at a titer of 1:16, which suggested that different genogroup/sub-genogroup FCV strains exhibit significantly different titers of neutralizing antibodies, including the commercial FCV vaccine. Thus, our study revealed the genetic diversity and complex cross-reactivity levels of FCVs in southwestern China, which provides new insights for application in vaccination strategies.


Asunto(s)
Anticuerpos Antivirales/sangre , Infecciones por Caliciviridae/inmunología , Calicivirus Felino/genética , Calicivirus Felino/inmunología , Reacciones Cruzadas/inmunología , Animales , Anticuerpos Neutralizantes/sangre , Infecciones por Caliciviridae/epidemiología , Enfermedades de los Gatos/epidemiología , Enfermedades de los Gatos/virología , Gatos , China/epidemiología , Femenino , Ratones , Ratones Endogámicos BALB C , Filogenia
19.
Emerg Microbes Infect ; 10(1): 1717-1730, 2021 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-34376124

RESUMEN

Norovirus is a major cause of acute gastroenteritis. Human noroviruses present >30 different genotypes, with a single genotype (GII.4) predominating worldwide. Concurrent outbreaks of norovirus are often associated with the emergence of new viruses. While different hypotheses have been presented, the source of new mutations in noroviruses is still unknown. In this study, we applied high-resolution sequencing to determine the intra-host viral diversity presented by noroviruses during the acute and shedding phase of infection in children. Profiling viral intra-host diversification at nearly full genome level indicated that GII.4 viruses presented dynamic intra-host variation, while non-GII.4 viruses presented minimal variation throughout the infection. Notably, the intra-host genetic variation during the shedding phase recapitulates the genetic diversity observed at the global level, particularly those mapping at the VP1 antigenic sites. Thus the intra-host evolution in healthy children explains the source of norovirus mutations that results in diversification at the global scale.


Asunto(s)
Infecciones por Caliciviridae/virología , Evolución Molecular , Genotipo , Interacciones Microbiota-Huesped/genética , Inmunocompetencia , Norovirus/genética , Infecciones por Caliciviridae/inmunología , Brotes de Enfermedades , Gastroenteritis/virología , Variación Genética , Genoma Viral , Interacciones Microbiota-Huesped/inmunología , Humanos , Lactante , Mutación , Norovirus/clasificación , Norovirus/inmunología , Filogenia , ARN Viral/genética , Estudios Retrospectivos
20.
Viruses ; 13(8)2021 08 04.
Artículo en Inglés | MEDLINE | ID: mdl-34452406

RESUMEN

Human noroviruses are recognised as the major global cause of viral gastroenteritis. Here, we provide an overview of notable advances in norovirus research and provide a short recap of the novel model systems to which much of the recent progress is owed. Significant advances include an updated classification system, the description of alternative virus-like protein morphologies and capsid dynamics, and the further elucidation of the functions and roles of various viral proteins. Important milestones include new insights into cell tropism, host and microbial attachment factors and receptors, interactions with the cellular translational apparatus, and viral egress from cells. Noroviruses have been detected in previously unrecognised hosts and detection itself is facilitated by improved analytical techniques. New potential transmission routes and/or viral reservoirs have been proposed. Recent in vivo and in vitro findings have added to the understanding of host immunity in response to norovirus infection, and vaccine development has progressed to preclinical and even clinical trial testing. Ongoing development of therapeutics includes promising direct-acting small molecules and host-factor drugs.


Asunto(s)
Infecciones por Caliciviridae/diagnóstico , Infecciones por Caliciviridae/inmunología , Gastroenteritis/virología , Norovirus/genética , Norovirus/fisiología , Animales , Infecciones por Caliciviridae/epidemiología , Infecciones por Caliciviridae/transmisión , Proteínas de la Cápside/genética , Evolución Molecular , Interacciones Microbiota-Huesped , Humanos , Ratones , Norovirus/clasificación , Norovirus/inmunología , Desarrollo de Vacunas , Tropismo Viral , Replicación Viral
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