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首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Identification and functional characterization of a g-type lysozyme gene of Labeo rohita, an Indian major carp species
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Identification and functional characterization of a g-type lysozyme gene of Labeo rohita, an Indian major carp species

机译:印度主要鲤鱼种类凝固植物G型溶菌酶基因的鉴定和功能表征

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Lysozyme, an important secretory innate immune component, possesses antimicrobial activity against broad spectrum of bacteria and viruses. In the present study, complete CDs (558 bps) of g-type lysozyme of rohu (Labeo rohita) was amplified and translated for a putative protein of 185 amino acids. The domain architecture and tertiary structure was also predicted for the protein. Its expression profile was studied in three infection models (bacteria: Aeromonas hydrophila, poly I:C, a dsRNA viral analogue and an ectoparasite: Argulus siamensis) in liver and kidney tissues of rohu. An up-regulation of 630-fold and 420-fold of the gene was observed at 48 h in liver and anterior kidney tissues respectively, after A. hydrophila infection. Significant increase in transcript level was noticed in both liver (0.8-fold) and kidney (480-fold) after 1 h and 12 h of poly I:C induction, respectively. Similarly, expression of lysozyme g transcripts was increased 6000-fold after 7 d of A. siamensis infection in liver tissue. The recombinant protein of g-type lysozyme of rohu (rLr-lysG) of 20.19 kDa was produced in Escherichia coil system and the lysozyme activity of rLr-lysG was found to be most active at pH 6.0 and temperature 35 degrees C. The potential lytic activity was found to be against A. hydrophila (U-L = 0.53) followed by for E. tarda (U-L = 0.45) whereas the lytic activity was the least against S. aureus (U-L = 0.35) and M. lysodeikticus (U-L = 0.34), at pH 6.0 and temperature 35 degrees C. The normal serum level of protein was estimated using indirect ELISA and was found to be very low (0.12-0.15 mu g/ml). These results suggested that g-type lysozyme of rohu might be a potent immunostimulant against microbial infections, with a major role in innate immunity.
机译:溶菌酶是一种重要的分泌先天免疫组分,具有针对广谱的抗微生物活性免受广谱的细菌和病毒。在本研究中,扩增RoHU(Labeo Rohita)的G型溶菌酶的完整CDS(558bps)并转换为185个氨基酸的调用蛋白质。域架构和三级结构也预测了蛋白质。其表达谱在三种感染模型(细菌:Aeromonas Hydrophila,Poly I:C,DsRNA病毒性物类似物和异丙酸盐)中进行了研究肝脏和肾脏组织的肝肾组织中的三种感染模型(细菌在A.疏水液感染后,分别在48小时内观察到630倍和420倍的基因的上调。在Poly I:C诱导的1小时和12小时后,在肝脏(0.8倍)和肾(480倍)中,注意到转录物水平的显着增加。类似地,在肝脏组织中的7 d中,溶菌酶G转录物的表达增加了6000倍。在大肠圈系统中产生20.19kDa的RoHU(RLR-LYSG)的G型溶菌酶的重组蛋白,发现RLR-LYSG的溶菌活性在pH6.0和温度35摄氏度下最活跃。潜在的裂变发现活性对抗A.疏水液(UL = 0.53),然后进行E. tarda(UL = 0.45),而裂解活性最少含有金黄色葡萄球菌(UL = 0.35)和M.Lysodeikticus(UL = 0.34) ,在pH6.0和温度35摄氏度下,使用间接ELISA估计正常的蛋白质水平,发现非常低(0.12-0.15μg/ ml)。这些结果表明Rohu的G型溶菌酶可能是针对微生物感染的有效免疫刺激剂,其在先天免疫中具有重要作用。

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