首页> 外文期刊>Journal of Plant Biology >Development of in vitro HSP90 Foldase Chaperone Assay using a GST-fused Real-substrate, ZTL (ZEITLUPE)
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Development of in vitro HSP90 Foldase Chaperone Assay using a GST-fused Real-substrate, ZTL (ZEITLUPE)

机译:使用GST融合的真实底物ZTL(ZEITLUPE)开发体外HSP90折叠酶伴侣检测

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Protein folding is one of the essential and fundamental processes involved in all living organisms wherein Heat-Shock Protein 90 (HSP90) served as a chaperone which plays important function in protein folding and further promotes refolding of denatured proteins. There are over six hundred identified substrates of HSP90 at present; however, there is a need to develop a specific folding assay method to test its in vitro foldase activity in case of difficulty in substrate activity measurement in vitro. In previous studies, it has been reported that HSP90 is necessary for the stabilization of ZEITLUPE (ZTL) which plays in the circadian clock and photomorphogenesis in Arabidopsis (Kim et al. 2011). Rhythmic oscillations of ZTL protein might be caused by denaturation and stabilization, thus, refolding activity of HSP90 is possibly involved in the oscillations of ZTL protein. However, the question whether HSP90 indeed promotes refolding of ZTL or not has not yet identified and therefore needs to be investigated. Recombinant glutathione-S transferase (GST) fused-ZTL in bacteria was produced and purified as the soluble GST-ZTL through treatments of both sarkosyl and Triton-X100 as ionic and nonionic detergents, respectively. Upon heat (45 degrees C) treatment, the GST activity of GST-ZTL decreased significantly. After the 3 h heat-induced denaturation of GST-ZTL, the refolding of denatured GST-ZTL was enhanced upon addition of HSP90 in a dose-dependent manner. The results from this study showed that recombinant GST-fused protein can be possibly used for in vitro protein refolding assay method. Moreover, results revealed that Arabidopsis HSP90 can efficiently refolds the denatured GST-ZTL in vitro.
机译:蛋白质折叠是所有活生物体中必不可少的基本过程之一,其中热休克蛋白90(HSP90)作为分子伴侣,在蛋白质折叠中起重要作用,并进一步促进变性蛋白质的重新折叠。目前,已鉴定出HSP90的底物超过600种。然而,在难以进行体外底物活性测量的情况下,需要开发一种特定的折叠测定方法以测试其体外折叠酶活性。在以前的研究中,已经报道了HSP90对于稳定ZEITLUPE(ZTL)是必需的,而ZEITLUPE(ZTL)在昼夜节律中发挥作用并在拟南芥中有光形态发生(Kim et al。2011)。 ZTL蛋白的节律性振荡可能是由于变性和稳定作用引起的,因此HSP90的重折叠活性可能与ZTL蛋白的振荡有关。但是,尚未确定HSP90是否确实促进ZTL的折叠的问题,因此需要进行调查。通过分别将sarkosyl和Triton-X100分别作为离子型和非离子型去污剂进行处理,生产并纯化了细菌中的重组谷胱甘肽-S转移酶(GST)融合-ZTL,并将其纯化为可溶性GST-ZTL。加热(45摄氏度)后,GST-ZTL的GST活性显着下降。在3 h热诱导的GST-ZTL变性后,通过添加HSP90以剂量依赖的方式增强了变性的GST-ZTL的重折叠。这项研究的结果表明,重组GST融合蛋白可以用于体外蛋白重折叠测定方法。此外,结果显示拟南芥HSP90可以在体外有效地折叠变性的GST-ZTL。

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