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首页> 外文期刊>Biochemical and Biophysical Research Communications >The intertidal copepod Tigriopus japonicus small heat shock protein 20 gene (Hsp20) enhances thermotolerance of transformed Escherichia coli.
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The intertidal copepod Tigriopus japonicus small heat shock protein 20 gene (Hsp20) enhances thermotolerance of transformed Escherichia coli.

机译:潮间co足类日本小爪哇小热激蛋白20基因(Hsp20)增强了转化大肠杆菌的耐热性。

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摘要

To understand the role of the Tigriopus japonicus Hsp20 gene, we isolated this gene from a whole body cDNA library and found two heat shock factor elements at the 5'-UTR. The transformed bacteria containing Tigriopus Hsp20 showed thermotolerance against heat shock (54 degrees C) with different ranges of time. The Tigriopus Hsp20 gene is comprised of 174 amino acid residues and shows similarity to Caenorhabditis elegans (27% identity), silkworm (24.1% identity), moth (24.1% identity), Mexican tetra (19.5% identity), zebrafish (19.5% identity), and spiny dogfish (17.2% identity) genes, but shows more similarity in the C-terminal region that contains an alpha-crystallin domain. Protein motifs such as an N-glycosylation site (67-70 NKSE) and a casein kinase II phosphorylation site were found in Tigriopus Hsp20. The genomic structure of the Tigriopus Hsp20 gene did not contain introns. To characterize the biochemical characteristics of the Tigriopus Hsp20 protein, we expressed Tigriopus Hsp20 in Escherichiacoli and purified the soluble protein via 6x His-tag chromatography. To analyze the gene expression of Tigriopus Hsp20 against environmental stresses (e.g., water temperature and salinity), we performed a semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR). On exposure to different salinities, significant change in the expression of Tigriopus Hsp20 was not observed. However, upon heat shock (30 degrees C), Tigriopus Hsp20 expression was significantly increased, but in the case of cold shock (4 or 10 degrees C), expression was likely downregulated. These findings provide a better understanding of cellular protection mechanisms against environmental stress such as heat shock.
机译:为了了解日本老虎(Tigriopus japonicus)Hsp20基因的作用,我们从全身cDNA文库中分离了该基因,并在5'-UTR处发现了两个热激因子元件。含有Tigriopus Hsp20的转化细菌在不同的时间范围内表现出对热冲击的耐热性(54摄氏度)。 Tigriopus Hsp20基因由174个氨基酸残基组成,与秀丽隐杆线虫(27%身份),蚕(24.1%身份),蛾(24.1%身份),墨西哥四(19.5%身份),斑马鱼(19.5%身份)相似。 )和多刺的fish鱼(17.2%的同一性)基因,但在包含α-晶状蛋白结构域的C端区域显示出更多相似性。在Tigriopus Hsp20中发现了蛋白质基序,例如N-糖基化位点(67-70 NKSE)和酪蛋白激酶II磷酸化位点。 Tigriopus Hsp20基因的基因组结构不包含内含子。为了表征Tigriopus Hsp20蛋白的生化特性,我们在大肠杆菌中表达了Tigriopus Hsp20,并通过6x His-tag层析纯化了可溶性蛋白。为了分析Tigriopus Hsp20在环境压力(例如水温和盐度)下的基因表达,我们进行了半定量逆转录聚合酶链反应(RT-PCR)。暴露于不同盐度下,未观察到Tigriopus Hsp20表达的显着变化。但是,在热休克(30摄氏度)时,Tigriopus Hsp20表达显着增加,但是在冷休克(4或10摄氏度)的情况下,表达可能会下调。这些发现提供了对细胞保护机制抵抗环境应激(例如热休克)的更好理解。

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