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首页> 外文期刊>Protein and peptide letters >In Vitro Holdase Activity of E. coli Small Heat-Shock Proteins IbpA, IbpB and IbpAB: A Biophysical Study with Some Unconventional Techniques
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In Vitro Holdase Activity of E. coli Small Heat-Shock Proteins IbpA, IbpB and IbpAB: A Biophysical Study with Some Unconventional Techniques

机译:大肠杆菌小热休克蛋白IbpA,IbpB和IbpAB的体外Holdase活性:一些非常规技术的生物物理研究

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E. coli small heat shock proteins IbpA and IbpB (inclusion body binding proteins A and B) are known to act as holding chaperones on denaturing, aggregate-prone proteins. But, there is no clear understanding about which of the IbpA and IbpB has more holdase activity and how the holdase activity of one was influenced by the presence of the other. This study was conducted to resolve the questions, using some uncommon physical techniques like dynamic light scattering, micro-viscometry and atomic force microscopy in addition to the common techniques of spectrophotometry and spectrofluorimetry. The holdase activity was investigated on the heat-denatured L-lactate dehydrogenase (LDH) of rabbit muscle. LDH was found to be deactivated completely without any aggregation at 52°C and with transient aggregation at 60°C; molecular dynamics simulation also revealed that at 52°C, denaturation occurred only at the active site of LDH. When LDH was allowed to be deactivated in the presence of IbpA, IbpB or (IbpA + IbpB), partial inhibition of i) denaturation at 52°C and ii) aggregation at 60°C were observed. The results further demonstrated that the holdase activity of IbpB was higher than that of IbpA and their combined effect was higher than their individual one.
机译:众所周知,大肠杆菌小分子热激蛋白IbpA和IbpB(包含体结合蛋白A和B)在变性,易聚集的蛋白上起分子伴侣的作用。但是,对于哪个IbpA和IbpB具有更多的保持酶活性,以及​​其中一个的保持酶活性如何受到另一个的影响,目前尚无明确的了解。这项研究是通过使用一些不常见的物理技术(例如动态光散射,显微粘度测定法和原子力显微镜)以及分光光度法和荧光光谱法的常用技术来解决这些问题的。对兔肌肉的热变性L-乳酸脱氢酶(LDH)进行了保持酶活性的研究。发现LDH在52°C时完全失活,没有任何聚集,而在60°C时有短暂的聚集。分子动力学模拟还显示,在52°C下,变性仅发生在LDH的活性位点。当在IbpA,IbpB或(IbpA + IbpB)存在的情况下使LDH失活时,观察到i)52°C变性和ii)60°C聚集的部分抑制。结果进一步证明,IbpB的保持酶活性高于IbpA,并且它们的联合作用高于其单个的。

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