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Multiple specialised goose-type lysozymes potentially compensate for an exceptional lack of chickentype lysozymes in Atlantic cod

机译:多种专门的鹅型溶菌酶可能会弥补鸡类的特殊缺乏 大西洋鳕鱼中的溶菌酶

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摘要

Previous analyses of the Atlantic cod genome showed unique combinations of lacking and expanded number of genes for the immune system. The present study examined lysozyme activity, lysozyme gene distribution and expression in cod. Enzymatic assays employing specific bacterial lysozyme inhibitors provided evidence for presence of g-Type, but unexpectedly not for c-Type lysozyme activity. Database homology searches failed to identify any c-Type lysozyme gene in the cod genome or in expressed sequence tags from cod. In contrast, we identified four g-Type lysozyme genes (LygF1a-d) constitutively expressed, although differentially, in all cod organs examined. The active site glutamate residue is replaced by alanine in LygF1a, thus making it enzymatic inactive, while LygF1d was found in two active site variants carrying alanine or glutamate, respectively. In vitro and in vivo infection by the intracellular bacterium Francisella noatunensis gave a significantly reduced LygF1a and b expression but increased expression of the LygF1c and d genes as did also the interferon gamma (IFN3) cytokine. These results demonstrate a lack of c-Type lysozyme that is unprecedented among vertebrates. Our results further indicate that serial gene duplications have produced multiple differentially regulated cod g-Type lysozymes with specialised functions potentially compensating for the lack of c-Type lysozymes.
机译:以前对大西洋鳕鱼基因组的分析表明,免疫系统缺乏和扩展的基因数量具有独特的组合。本研究检查了鳕鱼中的溶菌酶活性,溶菌酶基因分布和表达。采用特定细菌溶菌酶抑制剂的酶法测定提供了存在g型溶菌酶的证据,但出乎意料的不是c型溶菌酶活性的证据。数据库同源性搜索未能识别鳕鱼基因组中或鳕鱼中表达的序列标签中的任何c型溶菌酶基因。相比之下,我们确定了四个g型溶菌酶基因(LygF1a-d)在所有鳕鱼器官中组成性表达,尽管有差异。活性位点的谷氨酸残基在LygF1a中被丙氨酸替代,从而使其失去酶活性,而LygF1d在分别携带丙氨酸或谷氨酸的两个活性位点变体中被发现。胞内细菌弗朗西斯菌(Noistunensis)的体外和体内感染使LygF1a和b的表达显着降低,但LygF1c和d基因的表达却增加,干扰素γ(IFN3)细胞因子也是如此。这些结果表明,缺乏脊椎动物中前所未有的c型溶菌酶。我们的结果进一步表明,系列基因重复产生了多种具有特定功能的,差异调节的鳕鱼g型溶菌酶,可能弥补了c型溶菌酶的缺乏。

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