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关于T4溶菌酶代谢稳定性与热力学稳定性之间的关系。在大肠杆菌中的测量。

On the relationship between the metabolic and thermodynamic stabilities of T4 lysozymes. Measurements in Escherichia coli.

作者信息

Inoue I, Rechsteiner M

机构信息

Department of Biochemistry, University of Utah School of Medicine, Salt Lake City 84132.

出版信息

J Biol Chem. 1994 Nov 18;269(46):29241-6.

PMID:7961892
Abstract

Escherichia coli cells were transformed with plasmids encoding 12 site-specific variants of T4 lysozyme, and pulse-chase protocols were used to measure the metabolic stability of each protein. The resulting half-lives ranged from 1 h to more than 50 h. Although the metabolic half-lives of T4 lysozymes correlated roughly with their thermal stabilities, three mutant enzymes were clear exceptions. A reasonably temperature-resistant variant, G156D, exhibited a half-life of 1 h. By contrast, two temperature-sensitive variants, T157I and I3G, were as metabolically stable as wild-type T4 lysozyme. Degradation of two short lived variants, L91P and G156P, required ATP both in vivo and in vitro. Degradation of variant and wild-type enzymes was unimpaired in cells lacking the Lon protease, Clp A or Clp P. However, degradation of L91P and G156D was inhibited in Clp B-cells. Decreased proteolysis of L91P was accompanied by its accumulation in inclusion bodies, indicating that Clp B prevents accumulation of aggregated protein either by preventing aggregation of misfolded polypeptides or solubilizing aggregates.

摘要

用编码12种T4溶菌酶位点特异性变体的质粒转化大肠杆菌细胞,并采用脉冲追踪实验方案来测量每种蛋白质的代谢稳定性。所得半衰期范围从1小时到超过50小时。尽管T4溶菌酶的代谢半衰期与其热稳定性大致相关,但有三种突变酶明显例外。一种具有相当耐温性的变体G156D,其半衰期为1小时。相比之下,两种温度敏感变体T157I和I3G,其代谢稳定性与野生型T4溶菌酶一样。两种短寿命变体L91P和G156P的降解在体内和体外都需要ATP。在缺乏Lon蛋白酶、Clp A或Clp P的细胞中,变体酶和野生型酶的降解未受影响。然而,在Clp B缺陷型细胞中,L91P和G156D的降解受到抑制。L91P蛋白水解减少伴随着其在包涵体中的积累,这表明Clp B通过防止错误折叠多肽的聚集或溶解聚集体来阻止聚集蛋白的积累。

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