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1.
Nature ; 606(7916): 945-952, 2022 06.
Artigo em Inglês | MEDLINE | ID: mdl-35732742

RESUMO

Amyotrophic lateral sclerosis (ALS) is a heterogenous neurodegenerative disorder that affects motor neurons and voluntary muscle control1. ALS heterogeneity includes the age of manifestation, the rate of progression and the anatomical sites of symptom onset. Disease-causing mutations in specific genes have been identified and define different subtypes of ALS1. Although several ALS-associated genes have been shown to affect immune functions2, whether specific immune features account for ALS heterogeneity is poorly understood. Amyotrophic lateral sclerosis-4 (ALS4) is characterized by juvenile onset and slow progression3. Patients with ALS4 show motor difficulties by the time that they are in their thirties, and most of them require devices to assist with walking by their fifties. ALS4 is caused by mutations in the senataxin gene (SETX). Here, using Setx knock-in mice that carry the ALS4-causative L389S mutation, we describe an immunological signature that consists of clonally expanded, terminally differentiated effector memory (TEMRA) CD8 T cells in the central nervous system and the blood of knock-in mice. Increased frequencies of antigen-specific CD8 T cells in knock-in mice mirror the progression of motor neuron disease and correlate with anti-glioma immunity. Furthermore, bone marrow transplantation experiments indicate that the immune system has a key role in ALS4 neurodegeneration. In patients with ALS4, clonally expanded TEMRA CD8 T cells circulate in the peripheral blood. Our results provide evidence of an antigen-specific CD8 T cell response in ALS4, which could be used to unravel disease mechanisms and as a potential biomarker of disease state.


Assuntos
Esclerose Lateral Amiotrófica , Linfócitos T CD8-Positivos , Células Clonais , Esclerose Lateral Amiotrófica/imunologia , Esclerose Lateral Amiotrófica/patologia , Animais , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD8-Positivos/patologia , Células Clonais/patologia , DNA Helicases/genética , DNA Helicases/metabolismo , Técnicas de Introdução de Genes , Camundongos , Neurônios Motores/patologia , Enzimas Multifuncionais/genética , Enzimas Multifuncionais/metabolismo , Mutação , RNA Helicases/genética , RNA Helicases/metabolismo
2.
Cell ; 181(7): 1502-1517.e23, 2020 06 25.
Artigo em Inglês | MEDLINE | ID: mdl-32559462

RESUMO

RNA viruses are a major human health threat. The life cycles of many highly pathogenic RNA viruses like influenza A virus (IAV) and Lassa virus depends on host mRNA, because viral polymerases cleave 5'-m7G-capped host transcripts to prime viral mRNA synthesis ("cap-snatching"). We hypothesized that start codons within cap-snatched host transcripts could generate chimeric human-viral mRNAs with coding potential. We report the existence of this mechanism of gene origination, which we named "start-snatching." Depending on the reading frame, start-snatching allows the translation of host and viral "untranslated regions" (UTRs) to create N-terminally extended viral proteins or entirely novel polypeptides by genetic overprinting. We show that both types of chimeric proteins are made in IAV-infected cells, generate T cell responses, and contribute to virulence. Our results indicate that during infection with IAV, and likely a multitude of other human, animal and plant viruses, a host-dependent mechanism allows the genesis of hybrid genes.


Assuntos
Capuzes de RNA/genética , Infecções por Vírus de RNA/genética , Proteínas Recombinantes de Fusão/genética , Regiões 5' não Traduzidas/genética , Animais , Bovinos , Linhagem Celular , Cricetinae , Cães , Humanos , Vírus da Influenza A/metabolismo , Camundongos , Proteínas Mutantes Quiméricas/genética , Proteínas Mutantes Quiméricas/metabolismo , Fases de Leitura Aberta/genética , Capuzes de RNA/metabolismo , Infecções por Vírus de RNA/metabolismo , Vírus de RNA/genética , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , RNA Viral/metabolismo , RNA Polimerase Dependente de RNA/genética , RNA Polimerase Dependente de RNA/metabolismo , Proteínas Recombinantes de Fusão/metabolismo , Transcrição Gênica/genética , Proteínas Virais/metabolismo , Replicação Viral/genética
3.
J Virol ; 92(1)2018 01 01.
Artigo em Inglês | MEDLINE | ID: mdl-29046457

RESUMO

Endogenous retroviruses (ERVs) occupy extensive regions of the human genome. Although many of these retroviral elements have lost their ability to replicate, those whose insertion took place more recently, such as the HML-2 group of HERV-K elements, still retain intact open reading frames and the capacity to produce certain viral RNA and/or proteins. Transcription of these ERVs is, however, tightly regulated by dedicated epigenetic control mechanisms. Nonetheless, it has been reported that some pathological states, such as viral infections and certain cancers, coincide with ERV expression, suggesting that transcriptional reawakening is possible. HML-2 elements are reportedly induced during HIV-1 infection, but the conserved nature of these elements has, until recently, rendered their expression profiling problematic. Here, we provide comprehensive HERV-K HML-2 expression profiles specific for productively HIV-1-infected primary human CD4+ T cells. We combined enrichment of HIV-1 infected cells using a reporter virus expressing a surface reporter for gentle and efficient purification with long-read single-molecule real-time sequencing. We show that three HML-2 proviruses-6q25.1, 8q24.3, and 19q13.42-are upregulated on average between 3- and 5-fold in HIV-1-infected CD4+ T cells. One provirus, HML-2 12q24.33, in contrast, was repressed in the presence of active HIV replication. In conclusion, this report identifies the HERV-K HML-2 loci whose expression profiles differ upon HIV-1 infection in primary human CD4+ T cells. These data will help pave the way for further studies on the influence of endogenous retroviruses on HIV-1 replication.IMPORTANCE Endogenous retroviruses inhabit big portions of our genome. Moreover, although they are mainly inert, some of the evolutionarily younger members maintain the ability to express both RNA and proteins. We have developed an approach using long-read single-molecule real-time (SMRT) sequencing that produces long reads that allow us to obtain detailed and accurate HERV-K HML-2 expression profiles. We applied this approach to study HERV-K expression in the presence or absence of productive HIV-1 infection of primary human CD4+ T cells. In addition to using SMRT sequencing, our strategy also includes the magnetic selection of the infected cells so that levels of background expression due to uninfected cells are kept at a minimum. The results presented here provide a blueprint for in-depth studies of the interactions of the authentic upregulated HERV-K HML-2 elements and HIV-1.


Assuntos
Linfócitos T CD4-Positivos/virologia , Retrovirus Endógenos/genética , Regulação Viral da Expressão Gênica , HIV-1/fisiologia , Provírus/genética , Proteínas Virais/genética , Células Cultivadas , Retrovirus Endógenos/fisiologia , Genoma Humano , HIV-1/genética , Humanos , Provírus/fisiologia , RNA Viral/metabolismo , Proteínas do Envelope Viral/metabolismo
4.
Immunity ; 44(1): 46-58, 2016 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-26789921

RESUMO

Viruses are obligate parasites and thus require the machinery of the host cell to replicate. Inhibition of host factors co-opted during active infection is a strategy hosts use to suppress viral replication and a potential pan-antiviral therapy. To define the cellular proteins and processes required for a virus during infection is thus crucial to understanding the mechanisms of virally induced disease. In this report, we generated fully infectious tagged influenza viruses and used infection-based proteomics to identify pivotal arms of cellular signaling required for influenza virus growth and infectivity. Using mathematical modeling and genetic and pharmacologic approaches, we revealed that modulation of Sec61-mediated cotranslational translocation selectively impaired glycoprotein proteostasis of influenza as well as HIV and dengue viruses and led to inhibition of viral growth and infectivity. Thus, by studying virus-human protein-protein interactions in the context of active replication, we have identified targetable host factors for broad-spectrum antiviral therapies.


Assuntos
Interações Hospedeiro-Parasita/fisiologia , Vírus da Influenza A/fisiologia , Vírus da Influenza A/patogenicidade , Modelos Teóricos , Replicação Viral/fisiologia , Vírus da Dengue/patogenicidade , Vírus da Dengue/fisiologia , HIV/patogenicidade , HIV/fisiologia , Humanos , Imunoprecipitação , Espectrometria de Massas , Dobramento de Proteína , Proteômica
5.
Eur J Immunol ; 41(6): 1594-605, 2011 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21469106

RESUMO

Memory CD8(+) T lymphocytes are critical effector cells of the adaptive immune system mediating long-lived pathogen-specific protective immunity. Three signals - antigen, costimulation and inflammation - orchestrate optimal CD8(+) T-cell priming and differentiation into effector and memory cells and shape T-cell functional fate and ability to protect against challenge infections. While among the conventional spleen DCs (cDCs), the CD8α(+) but not the CD8α(-) cDCs most efficiently mediate CD8(+) T-cell priming, it is unclear which subset, irrespective of their capacity to process MHC class I-associated antigens, is most efficient at inducing naïve CD8(+) T-cell differentiation into pathogen-specific protective memory cells in vivo. Moreover, the origin of the required signals is still unclear. Using mice infected with the intracellular bacterium Listeria monocytogenes, we show that splenic CD8α(+) cDCs become endowed with all functional features to optimally prime protective memory CD8(+) T cells in vivo within only a few hours post-immunization. Such programming requires both cytosolic signals resulting from bacterial invasion of the host cells and extracellular inflammatory mediators. Thus, these data designate these cells as the best candidates to facilitate the development of cell-based vaccine therapy.


Assuntos
Antígenos CD8/metabolismo , Linfócitos T CD8-Positivos/metabolismo , Células Dendríticas/metabolismo , Listeria monocytogenes/imunologia , Listeriose/imunologia , Subpopulações de Linfócitos T/metabolismo , Adenosina Trifosfatases/genética , Transferência Adotiva , Animais , Proteínas de Bactérias/genética , Antígenos CD8/imunologia , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD8-Positivos/microbiologia , Linfócitos T CD8-Positivos/patologia , Contagem de Células , Células Cultivadas , Citosol/imunologia , Citosol/microbiologia , Células Dendríticas/imunologia , Células Dendríticas/microbiologia , Células Dendríticas/patologia , Memória Imunológica , Inflamação , Listeria monocytogenes/genética , Listeria monocytogenes/crescimento & desenvolvimento , Listeria monocytogenes/patogenicidade , Listeriose/microbiologia , Ativação Linfocitária , Proteínas de Membrana Transportadoras/genética , Camundongos , Camundongos Endogâmicos BALB C , Canais de Translocação SEC , Proteínas SecA , Deleção de Sequência/genética , Baço/microbiologia , Baço/patologia , Subpopulações de Linfócitos T/imunologia , Subpopulações de Linfócitos T/microbiologia , Subpopulações de Linfócitos T/patologia , Virulência/genética
6.
Infect Immun ; 79(6): 2396-403, 2011 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21402759

RESUMO

The SecA2 auxiliary secretion system of Gram-positive bacteria promotes the export of virulence proteins essential for colonization of the host in the case of both Mycobacterium tuberculosis and Listeria monocytogenes, two intracellular bacteria causing diseases in humans. We and others have demonstrated that this secretion system is also linked to the onset of long-term CD8(+) T cell-mediated protective immunity in mice. In the case of L. monocytogenes, expression of SecA2 inside the cytosol of infected cells correlates with the generation of CCL3-secreting memory CD8(+) T cells that are required for protection against secondary challenge with wild-type (wt) L. monocytogenes. Since the SecA2 ATPase is well conserved among Gram-positive pathogenic bacteria, we hypothesized that SecA2 itself bears evolutionarily conserved motifs recognized by cytosolic pattern recognition receptors, leading to signaling events promoting the differentiation of CCL3(+) memory CD8(+) T cells. To test this possibility, we generated a stable L. monocytogenes chromosomal mutant that expressed a SecA2 ATPase bearing a mutated nucleotide binding site (NBS). Similarly to a SecA2 deletion mutant, the NBS mutant exhibited rough colonies, a bacterial chaining phenotype, an impaired protein secretion profile, and in vivo virulence in comparison to wt L. monocytogenes. Importantly, mice immunized with the SecA2 NBS mutant were not protected against secondary infection with wt L. monocytogenes and did not develop CCL3(+) memory CD8(+) T cells. NBS mutant and wt SecA2 proteins were expressed to comparable extents by bacteria, suggesting that SecA2 itself is unlikely to promote the induction of these cells. Rather, one or several of the SecA2 substrate proteins released inside the cytosol of infected cells may be involved.


Assuntos
Adenosina Trifosfatases/fisiologia , Proteínas de Bactérias/fisiologia , Linfócitos T CD8-Positivos/imunologia , Memória Imunológica/imunologia , Listeria monocytogenes/imunologia , Listeriose/imunologia , Proteínas de Membrana Transportadoras/fisiologia , Adenosina Trifosfatases/genética , Adenosina Trifosfatases/imunologia , Animais , Proteínas de Bactérias/genética , Proteínas de Bactérias/imunologia , Western Blotting , Clonagem Molecular , Feminino , Citometria de Fluxo , Listeria monocytogenes/genética , Proteínas de Membrana Transportadoras/genética , Proteínas de Membrana Transportadoras/imunologia , Camundongos , Camundongos Endogâmicos BALB C , Mutagênese Sítio-Dirigida , Canais de Translocação SEC , Proteínas SecA
7.
J Exp Med ; 206(3): 595-606, 2009 Mar 16.
Artigo em Inglês | MEDLINE | ID: mdl-19273628

RESUMO

CX(3)CR1 expression is associated with the commitment of CSF-1R(+) myeloid precursors to the macrophage/dendritic cell (DC) lineage. However, the relationship of the CSF-1R(+) CX(3)CR1(+) macrophage/DC precursor (MDP) with other DC precursors and the role of CX(3)CR1 in macrophage and DC development remain unclear. We show that MDPs give rise to conventional DCs (cDCs), plasmacytoid DCs (PDCs), and monocytes, including Gr1(+) inflammatory monocytes that differentiate into TipDCs during infection. CX(3)CR1 deficiency selectively impairs the recruitment of blood Gr1(+) monocytes in the spleen after transfer and during acute Listeria monocytogenes infection but does not affect the development of monocytes, cDCs, and PDCs.


Assuntos
Células Dendríticas/enzimologia , Inflamação/enzimologia , Macrófagos/enzimologia , Receptor de Fator Estimulador de Colônias de Macrófagos/metabolismo , Receptores de Quimiocinas/metabolismo , Células-Tronco/enzimologia , Tirosina Quinase 3 Semelhante a fms/metabolismo , Animais , Células da Medula Óssea/citologia , Células da Medula Óssea/imunologia , Receptor 1 de Quimiocina CX3C , Diferenciação Celular , Movimento Celular , Proliferação de Células , Sobrevivência Celular , Células Dendríticas/citologia , Células Dendríticas/imunologia , Inflamação/imunologia , Listeria monocytogenes , Listeriose/imunologia , Macrófagos/citologia , Macrófagos/imunologia , Camundongos , Monócitos/citologia , Monócitos/imunologia , Óxido Nítrico Sintase Tipo II/metabolismo , Fenótipo , Espécies Reativas de Oxigênio/metabolismo , Receptores de Quimiocinas/deficiência , Baço/citologia , Baço/imunologia , Baço/microbiologia , Células-Tronco/citologia , Células-Tronco/imunologia , Fator de Necrose Tumoral alfa/biossíntese
8.
Immunol Cell Biol ; 86(5): 398-408, 2008 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-18392044

RESUMO

Monocytes can have important effects on the polarization and expansion of lymphocytes and may contribute to shaping primary and memory T-cell responses in humans and mice. However, their precise contribution in terms of cellular subsets and the molecular mechanisms involved remains to be determined. Mouse monocytes originate from a bone marrow progenitor, the macrophage and DC precursor (MDP), which also gives rise to conventional dendritic cells through a separate differentiation pathway. Mouse monocytes may be grouped in different functional subsets. The CD115(+) Gr1(+) 'inflammatory' monocyte subset can give rise not only to immunostimulatory 'TipDCs' in infected mice but also to immunosuppressive 'myeloid-derived suppressor cells' in tumor-bearing mice. CD115(+) Gr1(+) monocytes can also contribute to the renewal of several resident subsets of macrophages and DCs, such as microglia and Langerhans cells, in inflammatory conditions. The CD115(+) Gr1(-) 'resident' monocyte subset patrols blood vessels in the steady state and extravasates during infection with Listeria monocytogenes or in the healing myocardium. CD115(+) Gr1(-) monocytes are responsible for an early and transient inflammatory burst during Lm infection, which may play a role in the recruitment of other effector cells and subsequently differentiate toward 'M2'-like macrophages that may be involved in wound healing. More research will no doubt confirm the existence of more functional subsets, the developmental relationship between mouse subsets as well as the correspondence between mouse subsets and human subsets of monocytes. We will discuss here the potential roles of monocytes in the immune response, the existence of functional subsets and their relationship with other myeloid cells, including dendritic cells.


Assuntos
Células Dendríticas/imunologia , Monócitos/imunologia , Linfócitos T/imunologia , Adaptação Biológica/imunologia , Animais , Diferenciação Celular/imunologia , Humanos , Monócitos/metabolismo , Células Mieloides/citologia , Células Mieloides/imunologia
9.
J Exp Med ; 204(9): 2075-87, 2007 Sep 03.
Artigo em Inglês | MEDLINE | ID: mdl-17698589

RESUMO

Cytolysis, interferon gamma and tumor necrosis factor (TNF) alpha secretion are major effector mechanisms of memory CD8+ T cells that are believed to be required for immunological protection in vivo. By using mutants of the intracellular bacterium Listeria monocytogenes, we found that none of these effector activities is sufficient to protect against secondary infection with wild-type (WT) bacteria. We demonstrated that CCL3 derived from reactivated memory CD8+ T cells is required for efficient killing of WT bacteria. CCL3 induces a rapid TNF-alpha secretion by innate inflammatory mononuclear phagocytic cells (MPCs), which further promotes the production of radical oxygen intermediates (ROIs) by both MPCs and neutrophils. ROI generation is the final bactericidal mechanism involved in L. monocytogenes clearance. These results therefore uncover two levels of regulation of the antibacterial secondary protective response: (a) an antigen-dependent phase in which memory CD8+ T cells are reactivated and control the activation of the innate immune system, and (b) an antigen-independent phase in which the MPCs coordinate innate immunity and promote the bactericidal effector activities. In this context, CCL3-secreting memory CD8+ T cells are able to mediate "bystander" killing of an unrelated pathogen upon antigen-specific reactivation, a mechanism that may be important for the design of therapeutic vaccines.


Assuntos
Linfócitos T CD8-Positivos/imunologia , Quimiocinas CC/imunologia , Imunidade/imunologia , Memória Imunológica/imunologia , Listeria monocytogenes/imunologia , Proteínas Inflamatórias de Macrófagos/imunologia , Fagócitos/imunologia , Fatores de Necrose Tumoral/imunologia , Animais , Proteínas de Bactérias/metabolismo , Efeito Espectador/imunologia , Linfócitos T CD8-Positivos/metabolismo , Linfócitos T CD8-Positivos/microbiologia , Linfócitos T CD8-Positivos/parasitologia , Quimiocina CCL3 , Quimiocina CCL4 , Quimiocinas CC/metabolismo , Citotoxicidade Imunológica , Feminino , Imunização , Interferon gama/metabolismo , Leishmania major/imunologia , Listeriose/imunologia , Proteínas Inflamatórias de Macrófagos/metabolismo , Camundongos , Modelos Imunológicos , Mutação/genética , Neutrófilos/metabolismo , Fagócitos/microbiologia , Espécies Reativas de Oxigênio , Fatores de Tempo , Fator de Necrose Tumoral alfa/metabolismo
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