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A Novel C-Type Lysozyme from Mytilus galloprovincialis: Insight into Innate Immunity and Molecular Evolution of Invertebrate C-Type Lysozymes

机译:一种来自Mytilus galloprovincialis的新型C型溶菌酶:对无脊椎动物C型溶菌酶的天然免疫力和分子进化的认识。

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摘要

A c-type lysozyme (named as MgCLYZ) gene was cloned from the mussel Mytilus galloprovincialis. Blast analysis indicated that MgCLYZ was a salivary c-type lysozyme which was mainly found in insects. The nucleotide sequence of MgCLYZ was predicted to encode a polypeptide of 154 amino acid residues with the signal peptide comprising the first 24 residues. The deduced mature peptide of MgCLYZ was of a calculated molecular weight of 14.4 kD and a theoretical isoelectric point (pI) of 8.08. Evolution analysis suggested that bivalve branch of the invertebrate c-type lysozymes phylogeny tree underwent positive selection during evolution. By quantitative real-time RT-PCR (qRT-PCR) analysis, MgCLYZ transcript was widely detected in all examined tissues and responded sensitively to bacterial challenge in hemocytes and hepatopancreas. The optimal temperature and pH of recombinant MgCLYZ (rMgCLYZ) were 20 degrees C and 4, respectively. The rMgCLYZ displayed lytic activities against Gram-positive bacteria including Micrococcus luteus and Staphyloccocus aureus, and Gram-negative bacteria including Vibrio anguillarum, Enterobacter cloacae, Pseudomonas putida, Proteus mirabilis and Bacillus aquimaris. These results suggest that MgCLYZ perhaps play an important role in innate immunity of M. galloprovincialis, and invertebrate c-type lysozymes might be under positive selection in a species-specific manner during evolution for undergoing adaptation to different environment and diverse pathogens.
机译:从贻贝Mytilus galloprovincialis克隆了一个c型溶菌酶(称为MgCLYZ)基因。爆炸分析表明MgCLYZ是唾液c型溶菌酶,主要存在于昆虫中。预测MgCLYZ的核苷酸序列编码具有154个氨基酸残基的多肽,其中信号肽包含前24个残基。推导的MgCLYZ成熟肽的计算分子量为14.4 kD,理论等电点(pI)为8.08。进化分析表明,无脊椎动物c型溶菌酶系统发育树的双壳类分支在进化过程中经历了正选择。通过定量实时RT-PCR(qRT-PCR)分析,MgCLYZ转录本在所有检查的组织中都被广泛检测到,并且对血细胞和肝胰腺中的细菌攻击敏感。重组MgCLYZ(rMgCLYZ)的最佳温度和pH分别为20摄氏度和4。 rMgCLYZ对革兰氏阳性菌(包括微球菌和金黄色葡萄球菌)以及革兰氏阴性菌(包括弧菌,阴沟肠杆菌,恶臭假单胞菌,变形杆菌和水生芽孢杆菌)表现出裂解活性。这些结果表明,MgCLYZ可能在Galloprovincialis的固有免疫中起重要作用,而无脊椎动物c型溶菌酶可能在进化过程中以物种特异性方式处于正选择状态,以适应不同的环境和多种病原体。

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