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多功能血淋巴血清蛋白促进贻贝血细胞对携带D-甘露糖敏感配体的霍乱弧菌和大肠杆菌菌株的杀伤作用。

Killing of Vibrio cholerae and Escherichia coli Strains Carrying D-mannose-sensitive Ligands by Mytilus Hemocytes is Promoted by a Multifunctional Hemolymph Serum Protein.

作者信息

Canesi Laura, Grande Chiara, Pezzati Elisabetta, Balbi Teresa, Vezzulli Luigi, Pruzzo Carla

机构信息

Department of Hearth, Environmental and Life Sciences (DISTAV), University of Genova, Corso Europa 26, 16132, Genova, Italy.

出版信息

Microb Ecol. 2016 Nov;72(4):759-762. doi: 10.1007/s00248-016-0757-1. Epub 2016 Apr 4.

Abstract

In aquatic environments, bivalve mollusks represent an important ecological niche for microorganisms. Persistence of bacteria in bivalve tissues partly depends on their capacity to survive the bactericidal activity of the hemolymph due to both cellular (hemocyes) and soluble serum factors (e.g., enzymes, lectins, opsonins). The extrapallial protein (EP) present in serum of Mytilus galloprovincialis (MgEP) has been recently shown to work as an opsonin promoting D-mannose sensitive (MS) interactions of the bivalve pathogen Vibrio aestuarianus 01/032 strain with the hemocytes. In this study, the role of MgEP in adhesion and killing of other bacteria carrying MS sensitive ligands was investigated. MgEP enhanced adhesion to and killing by hemocytes of Vibrio cholerae ElTor N16961, expressing the MS hemagglutin (MSHA), as well as of Escherichia coli MG1655, carrying type 1 fimbriae. These results further support the recent finding that the multifunctional MgEP also acts as an opsonin involved in mussel defense towards bacteria carrying MS ligands. In addition, these results contribute to elucidate the ecology of bacterial pathogens that can be transmitted to humans via shellfish consumption.

摘要

在水生环境中,双壳贝类软体动物是微生物的重要生态位。细菌在双壳贝类组织中的存活部分取决于它们在血细胞(血淋巴细胞)和可溶性血清因子(如酶、凝集素、调理素)的杀菌活性下存活的能力。最近研究发现,地中海贻贝血清中的外套膜外蛋白(MgEP)可作为调理素,促进双壳贝类病原菌河流弧菌01/032菌株与血细胞之间的D-甘露糖敏感(MS)相互作用。在本研究中,我们探究了MgEP在携带MS敏感配体的其他细菌的黏附及杀灭过程中的作用。MgEP增强了表达MS血凝素(MSHA)的霍乱弧菌ElTor N16961以及携带1型菌毛的大肠杆菌MG1655与血细胞的黏附及血细胞对它们的杀灭作用。这些结果进一步支持了最近的发现,即多功能的MgEP也作为一种调理素参与贻贝对携带MS配体细菌的防御。此外,这些结果有助于阐明可通过食用贝类传播给人类的细菌病原体的生态学。

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