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C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization

BACKGROUND: C-type lectins are a superfamily of Ca(2+) dependent carbohydrate-recognition proteins that play significant diverse roles in nonself-recognition and clearance of invaders. Though they are well characterized in vertebrates, the study of the potential function and mechanism of C-type lect...

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Autores principales: Yang, Jialong, Wang, Lingling, Zhang, Huan, Qiu, Limei, Wang, Hao, Song, Linsheng
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039652/
https://www.ncbi.nlm.nih.gov/pubmed/21347232
http://dx.doi.org/10.1371/journal.pone.0017089
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author Yang, Jialong
Wang, Lingling
Zhang, Huan
Qiu, Limei
Wang, Hao
Song, Linsheng
author_facet Yang, Jialong
Wang, Lingling
Zhang, Huan
Qiu, Limei
Wang, Hao
Song, Linsheng
author_sort Yang, Jialong
collection PubMed
description BACKGROUND: C-type lectins are a superfamily of Ca(2+) dependent carbohydrate-recognition proteins that play significant diverse roles in nonself-recognition and clearance of invaders. Though they are well characterized in vertebrates, the study of the potential function and mechanism of C-type lectins in invertebrate immunity is still in its infancy. METHODOLOGY: A C-type lectin (CfLec-1) from scallop Chlamys farreri, a dominant cultured mollusk species in China, was selected to investigate its mRNA expression, localization and the possible functions in innate immunity in the present study. After scallop was stimulated by three typical PAMPs, the mRNA expression of CfLec-1 in hemocytes was poles apart. It was significantly up-regulated (p<0.01) after scallops were stimulated by LPS or β-glucan, but significantly down-regulated (p<0.01) after PGN stimulation. The binding ability of recombinant CfLec-1 (designated as rCfLec-1) towards eight PAMPs was investigated subsequently by PAMPs microarray, which revealed rCfLec-1 could bind LPS, PGN and mannan in vitro, indicating CfLec-1 served as a PRR involved in the pathogen recognition. Immunofluorescence assay with polyclonal antibody specific for CfLec-1 revealed that CfLec-1 was mainly located in the mantle and gill of the scallop. CfLec-1 could bind to the surface of scallop hemocytes and recruited hemocytes to enhance their encapsulation in vitro, and this process could be specifically blocked by anti-rCfLec-1 antibody. Meanwhile, rCfLec-1 could also enhance the phagocytic activity of scallop hemocytes against Escherichia coli. CONCLUSIONS: The results clearly suggested that CfLec-1 in C. farreri not only served as a PRR involved in the PAMPs recognition, but also functioned as an opsonin participating in the clearance of invaders. It is therefore suspected that CfLec-1 could be an attachment-molecule to nonself-agents acting as an alternative to immunoglobulin in vertebrates.
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spelling pubmed-30396522011-02-23 C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization Yang, Jialong Wang, Lingling Zhang, Huan Qiu, Limei Wang, Hao Song, Linsheng PLoS One Research Article BACKGROUND: C-type lectins are a superfamily of Ca(2+) dependent carbohydrate-recognition proteins that play significant diverse roles in nonself-recognition and clearance of invaders. Though they are well characterized in vertebrates, the study of the potential function and mechanism of C-type lectins in invertebrate immunity is still in its infancy. METHODOLOGY: A C-type lectin (CfLec-1) from scallop Chlamys farreri, a dominant cultured mollusk species in China, was selected to investigate its mRNA expression, localization and the possible functions in innate immunity in the present study. After scallop was stimulated by three typical PAMPs, the mRNA expression of CfLec-1 in hemocytes was poles apart. It was significantly up-regulated (p<0.01) after scallops were stimulated by LPS or β-glucan, but significantly down-regulated (p<0.01) after PGN stimulation. The binding ability of recombinant CfLec-1 (designated as rCfLec-1) towards eight PAMPs was investigated subsequently by PAMPs microarray, which revealed rCfLec-1 could bind LPS, PGN and mannan in vitro, indicating CfLec-1 served as a PRR involved in the pathogen recognition. Immunofluorescence assay with polyclonal antibody specific for CfLec-1 revealed that CfLec-1 was mainly located in the mantle and gill of the scallop. CfLec-1 could bind to the surface of scallop hemocytes and recruited hemocytes to enhance their encapsulation in vitro, and this process could be specifically blocked by anti-rCfLec-1 antibody. Meanwhile, rCfLec-1 could also enhance the phagocytic activity of scallop hemocytes against Escherichia coli. CONCLUSIONS: The results clearly suggested that CfLec-1 in C. farreri not only served as a PRR involved in the PAMPs recognition, but also functioned as an opsonin participating in the clearance of invaders. It is therefore suspected that CfLec-1 could be an attachment-molecule to nonself-agents acting as an alternative to immunoglobulin in vertebrates. Public Library of Science 2011-02-15 /pmc/articles/PMC3039652/ /pubmed/21347232 http://dx.doi.org/10.1371/journal.pone.0017089 Text en Yang et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yang, Jialong
Wang, Lingling
Zhang, Huan
Qiu, Limei
Wang, Hao
Song, Linsheng
C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title_full C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title_fullStr C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title_full_unstemmed C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title_short C-Type Lectin in Chlamys farreri (CfLec-1) Mediating Immune Recognition and Opsonization
title_sort c-type lectin in chlamys farreri (cflec-1) mediating immune recognition and opsonization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039652/
https://www.ncbi.nlm.nih.gov/pubmed/21347232
http://dx.doi.org/10.1371/journal.pone.0017089
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