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Molecular cloning of heat shock protein 60 (PtHSP60) from Portunus trituberculatus and its expression response to salinity stress

机译:三疣梭子蟹热休克蛋白60(PtHSP60)的分子克隆及其对盐分胁迫的表达响应。

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Heat shock protein 60 (HSP60) is a highly conserved and multi-functional molecular chaperone that plays an essential role in both cellular metabolism and stress response. Portunus trituberculatus is an important marine fishery and aquaculture species, and water salinity condition influenced its artificial propagations significantly. In order to investigate the function of P. trituberculatus HSP60 against osmotic stress, P. trituberculatus HSP60 gene was firstly cloned. The full-length cDNA of PtHSP60 contains 1,743 nucleotides encoding 577 amino acids with a calculated molecular weight of 61.25?kDa. Multiple alignments indicated that the deduced amino acid sequences of PtHSP60 shared a high level of identity with invertebrate and vertebrate HSP60 sequence including shrimp, fruit fly, zebrafish, and human. The expression profiles of PtHSP60 at mRNA and protein levels under salinity treatment were investigated by semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) and Western blot analysis, respectively. It was found that the mRNA transcripts of PtHSP60 gene varied among different tissues under normal salinity conditions, and the antennal gland showed the highest expression level among the tissues tested. As for low salinity challenge, the mRNA expression of PtHSP60 gene was higher in the gill and appendicular muscle compared with other tissues, and gill and hypodermis represented the higher gene expressions during the hyperosmotic stress, which indicated that those tissues were salinity-sensitive tissues. In addition, salinity challenges significantly altered the expression of PtHSP60 at mRNA and protein level in a salinity- and time-dependent manner in P. trituberculatus gill tissue. The results indicate that PtHSP60 played important roles in mediating the salinity stress in P. trituberculatus.
机译:热休克蛋白60(HSP60)是高度保守的多功能分子伴侣,在细胞代谢和应激反应中均起着重要作用。三疣梭子蟹(Portunus trituberculatus)是重要的海洋渔业和水产养殖品种,水盐度条件对其人工繁殖有显着影响。为了研究P. trituberculatus HSP60对渗透压的作用,首先克隆了P. trituberculatus HSP60基因。 PtHSP60的全长cDNA包含1,743个核苷酸,编码577个氨基酸,计算分子量为61.25?kDa。多重比对表明,PtHSP60的推导氨基酸序列与无脊椎动物和脊椎动物HSP60序列(包括虾,果蝇,斑马鱼和人)具有高度同一性。通过半定量逆转录酶-聚合酶链反应(RT-PCR)和蛋白质印迹分析研究了盐度处理下PtHSP60在mRNA和蛋白质水平上的表达情况。结果发现,在正常盐度条件下,PtHSP60基因的mRNA转录物在不同组织之间存在差异,并且触角腺在被测试组织中的表达水平最高。对于低盐度挑战,g和阑尾肌肉中PtHSP60基因的mRNA表达高于其他组织,在高渗胁迫期间g和皮下组织的基因表达较高,这表明这些组织是盐度敏感的组织。此外,盐度挑战以盐度和时间依赖性的方式显着改变了Trituberculatus ill组织中mRNA和蛋白质水平上PtHSP60的表达。结果表明,PtHSP60在介导三疣梭子蟹盐度胁迫中起重要作用。

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