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首页> 外文期刊>Frontiers in Immunology >C-Terminal Domain of Hemocyanin, a Major Antimicrobial Protein from Litopenaeus vannamei: Structural Homology with Immunoglobulins and Molecular Diversity
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C-Terminal Domain of Hemocyanin, a Major Antimicrobial Protein from Litopenaeus vannamei: Structural Homology with Immunoglobulins and Molecular Diversity

机译:血蓝蛋白的一种C末端结构域,一种主要的抗菌蛋白,来自凡纳滨对虾:具有免疫球蛋白和分子多样性的结构同源性

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摘要

Invertebrates rely heavily on immune-like molecules with highly diversified variability so as to counteract infections. However, the mechanisms and the relationship between this variability and functionalities are not well understood. Here, we showed that the C-terminal domain of hemocyanin (HMC) from shrimp Litopenaeus vannamei contained an evolutionary conserved domain with highly variable genetic sequence, which is structurally homologous to immunoglobulin (Ig). This domain is responsible for recognizing and binding to bacteria or red blood cells, initiating agglutination and hemolysis. Furthermore, when HMC is separated into three fractions using anti-human IgM, IgG, or IgA, the subpopulation, which reacted with anti-human IgM (HMC-M), showed the most significant antimicrobial activity. The high potency of HMC-M is a consequence of glycosylation, as it contains high abundance of α- d -mannose relative to α- d -glucose and N -acetyl- d -galactosamine. Thus, the removal of these glycans abolished the antimicrobial activity of HMC-M. Our results present a comprehensive investigation of the role of HMC in fighting against infections through genetic variability and epigenetic modification.
机译:无脊椎动物严重依赖具有高度多样性变异性的免疫样分子,以抵抗感染。但是,这种可变性和功能性之间的机制和关系尚不十分清楚。在这里,我们显示虾对虾凡纳滨对虾血蓝蛋白(HMC)的C端结构域包含一个进化保守的结构域,该结构域具有高度可变的遗传序列,该结构域与免疫球蛋白(Ig)在结构上同源。该结构域负责识别并与细菌或红细胞结合,引发凝集和溶血。此外,当使用抗人IgM,IgG或IgA将HMC分为三个部分时,与抗人IgM(HMC-M)反应的亚群显示出最显着的抗菌活性。 HMC-M的高效能是糖基化的结果,因为相对于α-d-葡萄糖和N-乙酰基-d-半乳糖胺,HMC-M包含高丰度的α-d-甘露糖。因此,除去这些聚糖消除了HMC-M的抗微生物活性。我们的研究结果对HMC在通过遗传变异和表观遗传修饰抗击感染中的作用进行了全面研究。

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