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1.
Methods Mol Biol ; 2442: 475-515, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35320542

RESUMEN

Galectin-11 (LGALS-11) and galectin-14 (LGALS-14) are ruminant specific galectins, first reported in sheep. Although their roles in parasite immunity are still being elucidated, it appears that they influence protection against parasites. In gastrointestinal infections with the nematode Haemonchus contortus, both galectin-11 and galectin-14 appear to be protective. However, in a chronic infection of liver fluke, Fasciola hepatica, these galectins may aid parasite survival. To unravel the structural, functional, and ligand profile of galectin-11 and galectin-14, recombinant production of these proteins is vital. Here we present the recombinant production of soluble galectin-11 and galectin-14 from domestic sheep for in vitro and structural biology studies. These methods include parasite cultivation and infection, galectin staining of host and parasite tissue, surface staining of parasites with recombinant galectins, pull-down assays to identify endogenous galectin binding proteins, and in vitro assays to monitor the effect of galectins on parasite development.


Asunto(s)
Fasciola hepatica , Fascioliasis , Galectinas , Hemoncosis , Haemonchus , Enfermedades de las Ovejas , Animales , Fasciola hepatica/inmunología , Fascioliasis/inmunología , Fascioliasis/veterinaria , Galectinas/genética , Galectinas/fisiología , Hemoncosis/inmunología , Hemoncosis/veterinaria , Haemonchus/inmunología , Ovinos , Enfermedades de las Ovejas/inmunología , Enfermedades de las Ovejas/parasitología , Coloración y Etiquetado
2.
Vet Sci ; 8(10)2021 Oct 04.
Artículo en Inglés | MEDLINE | ID: mdl-34679046

RESUMEN

Teladorsagia circumcincta is the most important gastrointestinal parasite in the livestock industry in temperate regions around the world, causing great economic losses. The infective third-stage larvae (L3) of Teladorsagia circumcincta secrete a large number of excretory-secretory (E/S) molecules, some of which are likely to play critical roles in modulating the host immune response. One of the most abundant E/S molecules is a protein termed Tci-gal-1, which has similarity to mammalian galectins. Galectins are a family of carbohydrate-binding molecules, with characteristic domain organisation and affinity for ß-galactosids that mediate a variety of important cellular functions including inflammation and immune responses. To understand the role of Tci-gal-1 at the host-parasite interface, we used a proteomics pull-down approach to identify Tc-gal-1 interacting proteins from sheep abomasal scrapes and whole tissue. A total of 135 unique proteins were identified from whole abomasal tissue samples, while 89 proteins were isolated from abomasal scrape samples. Of these proteins, 63 were present in both samples. Many of the host proteins identified, such as trefoil factors and mucin-like proteins, play critical roles in the host response. The identification of Tci-gal-1 binding partners provides new insights on host-parasite interactions and could lead to the development of new control strategies.

3.
Vet Parasitol ; 291: 109373, 2021 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-33578197

RESUMEN

Livestock production around the world is impacted by liver fluke (Fasciola spp.) infection resulting in serious economic losses to the beef, dairy and sheep industries with significant losses of about $90 million per annum in Australia. Triclabendazole (TCBZ) is the most effective anthelmintic treatment available to control liver fluke infections; however, the widespread emergence of TCBZ resistance in livestock threatens liver fluke control. Alternative control measures to lower exposure of livestock to liver fluke infection would help to preserve the usefulness of current anthelmintic treatments. Environmental DNA (eDNA) based identification of liver fluke and the intermediate snail host in the water bodies is a robust method to assess the risk of liver fluke infection on farms. In this study, we used a multiplex quantitative PCR assay of water samples to detect and quantify eDNA of Fasciola hepatica (F. hepatica) and Austropeplea tomentosa (A. tomentosa), a crucial intermediate snail host for liver fluke transmission in South-east Australia. Water samples were collected from an irrigation channel for a period of 7 months in 2016 (February, March, May, September, October, November and December) at a dairy farm located at Maffra, Victoria, South-east Australia. Using an effective eDNA extraction method, the multiplex qPCR assay allows for the independent but simultaneous detection of eDNA released from liver fluke life stages and snails using specific primers and a probe targeting the ITS-2 region of the liver fluke and snail, respectively, with minimal inhibition from contaminants in field collected water samples. The sensitivity of this assay to detect eDNA of liver fluke and snails was observed to be 14 fg and 50 fg, respectively, in the presence of field collected water samples. Differential levels of liver fluke and snail specific eDNA in water were observed at the time points analysed in this study. The successful detection of eDNA specific to liver fluke and snails from the field collected water samples provides a precedent for the use of this method as a monitoring tool to determine the prevalence of liver fluke and liver fluke-transmitting snails in irrigation regions. Further, this method has the enormous potential to allow an assessment of the liver fluke transmission zones on farms and to inform the application of effective control strategies.


Asunto(s)
Enfermedades de los Bovinos/parasitología , Enfermedades de los Bovinos/transmisión , ADN Ambiental/análisis , Fasciola hepatica/genética , Fascioliasis/veterinaria , Caracoles/parasitología , Agua/parasitología , Animales , Bovinos , ADN Ambiental/genética , Industria Lechera , Fascioliasis/transmisión
4.
Int J Parasitol ; 49(12): 921-932, 2019 11.
Artículo en Inglés | MEDLINE | ID: mdl-31560927

RESUMEN

Fasciola hepatica is a globally distributed zoonotic trematode that causes fasciolosis in livestock, wildlife, ruminants and humans. Fasciolosis causes a significant economic impact on the agricultural sector and affects human health. Due to the increasing prevalence of triclabendazole resistance in F. hepatica, alternative treatment methods are required. Many protein antigens have been trialled as vaccine candidates with low success, however, the tegument of F. hepatica is highly glycosylated and the parasite-derived glycoconjugate molecules have been identified as an important mediator in host-parasite interactions and as prime targets for the host immune system. Galectin-11 (LGALS-11) and galectin-14 (LGALS-14) are two ruminant-specific glycan-binding proteins, showing upregulation in the bile duct of sheep infected with F. hepatica, which are believed to mediate host-parasite interaction and innate immunity against internal parasites. For the first known time, this study presents the ligand profile of whole worm and tegument extracts of F. hepatica that interacted with immobilised LGALS-11 and LGALS-14. LGALS-14 interacted with a total of 255 F. hepatica proteins. The protein which had the greatest interaction was identified as an uncharacterised protein which contained a C-type lectin domain. Many of the other proteins identified were previously trialled vaccine candidates including glutathione S-transferase, paramyosin, cathepsin L, cathepsin B, fatty acid binding protein and leucine aminopeptidase. In comparison to LGALS-14, LGALS-11 interacted with only 49 F. hepatica proteins and it appears to have a much smaller number of binding partners in F. hepatica. This is, to our knowledge, the first time host-specific lectins have been used for the enrichment of F. hepatica glycoproteins and this study has identified a number of glycoproteins that play critical roles in host-parasite interactions which have the potential to be novel vaccine candidates.


Asunto(s)
Antígenos Helmínticos/análisis , Fasciola hepatica/crecimiento & desarrollo , Galectinas/metabolismo , Proteínas del Helminto/análisis , Interacciones Huésped-Parásitos , Mapeo de Interacción de Proteínas , Ovinos , Animales , Antígenos Helmínticos/aislamiento & purificación , Proteínas del Helminto/aislamiento & purificación , Ligandos , Espectrometría de Masas , Unión Proteica , Proteómica
5.
Vet Parasitol ; 259: 17-24, 2018 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-30056979

RESUMEN

Liver fluke (Fasciola hepatica) infection is an increasing threat to livestock production resulting in serious economic losses to the beef, dairy and sheep industries in Australia and globally. Triclabendazole (TCBZ) is the main drug used to control liver fluke infections in Australia and the widespread emergence of TCBZ resistance in cattle and sheep threatens liver fluke control. Alternative control measures to lower exposure of livestock to fluke infection would be useful to help preserve the usefulness of current chemical flukicides. Environmental DNA (eDNA) sampling methodology and associated molecular techniques are suited to rapidly assess the presence of pathogens on farms. In the present study, we developed a water sampling method in combination with a multiplex quantitative PCR assay to detect and quantify DNA of F. hepatica and Austropeplea tomentosa (A. tomentosa), a crucial intermediate snail host for liver fluke transmission in South-east Australia. The multiplex qPCR assay allows for the independent detection of F. hepatica and A. tomentosa DNA using specific primers and a probe targeting the ITS-2 region of the liver fluke or snail. The method allows the highly specific and sensitive (minimal DNA detection levels to 14-50 fg) detection of F. hepatica or A. tomentosa. The method allows the detection of both liver fluke and snail eDNA in water samples. The effective quantification of liver fluke and snail eDNA in water samples using this assay could potentially allow researchers to both identify and monitor F. hepatica transmission zones on farming properties in South-east Australia which will better inform control strategies, with potential application of the assay worldwide.


Asunto(s)
Fasciola hepatica/genética , Fascioliasis/veterinaria , Reacción en Cadena de la Polimerasa Multiplex/métodos , Caracoles/genética , Infecciones por Trematodos/veterinaria , Agua/parasitología , Animales , Australia/epidemiología , Bovinos , Enfermedades de los Bovinos/diagnóstico , Enfermedades de los Bovinos/epidemiología , Enfermedades de los Bovinos/parasitología , ADN/análisis , Cartilla de ADN , ADN de Helmintos/genética , ADN de Helmintos/aislamiento & purificación , Fasciola hepatica/aislamiento & purificación , Fascioliasis/diagnóstico , Fascioliasis/epidemiología , Fascioliasis/parasitología , Humanos , Límite de Detección , Sensibilidad y Especificidad , Ovinos/parasitología , Enfermedades de las Ovejas/diagnóstico , Enfermedades de las Ovejas/epidemiología , Enfermedades de las Ovejas/parasitología , Caracoles/parasitología , Infecciones por Trematodos/diagnóstico , Infecciones por Trematodos/epidemiología , Agua/análisis
6.
PeerJ ; 6: e4510, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29576976

RESUMEN

Haemonchus contortus is the most pathogenic nematode of small ruminants. Infection in sheep and goats results in anaemia that decreases animal productivity and can ultimately cause death. The involvement of ruminant-specific galectin-11 (LGALS-11) and galectin-14 (LGALS-14) has been postulated to play important roles in protective immune responses against parasitic infection; however, their ligands are unknown. In the current study, LGALS-11 and LGALS-14 ligands in H. contortus were identified from larval (L4) and adult parasitic stages extracts using immobilised LGALS-11 and LGALS-14 affinity column chromatography and mass spectrometry. Both LGALS-11 and LGALS-14 bound more putative protein targets in the adult stage of H. contortus (43 proteins) when compared to the larval stage (two proteins). Of the 43 proteins identified in the adult stage, 34 and 35 proteins were bound by LGALS-11 and LGALS-14, respectively, with 26 proteins binding to both galectins. Interestingly, hematophagous stage-specific sperm-coating protein and zinc metalloprotease (M13), which are known vaccine candidates, were identified as putative ligands of both LGALS-11 and LGALS-14. The identification of glycoproteins of H. contortus by LGALS-11 and LGALS-14 provide new insights into host-parasite interactions and the potential for developing new interventions.

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