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In vitro evidence of Hsc70 functioning as a molecular chaperone during cold stress.

机译:Hsc70在冷应激期间起分子伴侣作用的体外证据。

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Hsp70 molecular chaperones have been shown to play an important role in helping cells to cope with adverse environments, especially in response to high temperatures. The molecular chaperone function of Hsc70 at low temperature was investigated. A cold-inducible spinach cytosolic Hsc70 was subcloned into a protein expression vector and the recombinant protein was expressed in bacterial cells. Recombinant Hsc70 bound a permanently unfolded substrate: alpha -carboxymethylated lactalbumin (CMLA) in the presence of 3 mM ATP and MgCl2 at low temperature (4 and -4 degrees C). Radiolabeling with 35S-Met and 35S-Cys and immunoprecipitation with cytosolic Hsc70 monoclonal antibodies showed that there were several proteins co-immunoprecipitated at low temperature (4 and -4 degrees C) but not at room temperature. Enhanced co-purification of sHsp17.7 with Hsc70 at low temperature was observed and suggests that co-chaperone interactions can contribute to molecular chaperone function during cold stress. These results suggest that the molecular chaperone Hsc70 may have a functional role in plants during low temperature stress..
机译:Hsp70分子伴侣已被证明在帮助细胞应对不利环境,尤其是对高温的反应中起重要作用。研究了Hsc70在低温下的分子伴侣功能。将可冷诱导的菠菜胞质Hsc70亚克隆到蛋白质表达载体中,并在细菌细胞中表达重组蛋白。重组Hsc70在低温(4和-4摄氏度)下在3 mM ATP和MgCl2存在下结合永久展开的底物:α-羧甲基化乳白蛋白(CMLA)。用35S-Met和35S-Cys进行放射性标记,并用胞质Hsc70单克隆抗体进行免疫沉淀,结果表明在低温(4和-4℃)下有几种蛋白被免疫共沉淀,而在室温下则没有。在低温下观察到增强的sHsp17.7与Hsc70的共纯化,这表明在低温胁迫下共伴侣分子的相互作用可以促进分子伴侣的功能。这些结果表明分子伴侣Hsc70可能在低温胁迫下在植物中发挥功能作用。

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