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利用有限蛋白酶解定位G-肌动蛋白中紧密结合的二价阳离子依赖性和核苷酸依赖性构象变化。

Localization of the tightly bound divalent-cation-dependent and nucleotide-dependent conformation changes in G-actin using limited proteolytic digestion.

作者信息

Strzelecka-Gołaszewska H, Moraczewska J, Khaitlina S Y, Mossakowska M

机构信息

Department of Muscle Biochemistry, Nencki Institute of Experimental Biology, Warszawa, Poland.

出版信息

Eur J Biochem. 1993 Feb 1;211(3):731-42. doi: 10.1111/j.1432-1033.1993.tb17603.x.

DOI:10.1111/j.1432-1033.1993.tb17603.x
PMID:8436131
Abstract

Using proteolytic susceptibility as a probe, we have identified four regions of the actin polypeptide chain where structural rearrangements, dependent on the nature of the tightly bound metal ion and/or nucleotide, take place. Replacement of the tightly bound Ca2+ by Mg2+ in ATP-actin strongly affected the regions around Arg26 and Lys68, as judged from nearly complete inhibition of tryptic cleavages of the polypeptide chain at these residues. It also significantly diminished the rates of splitting by trypsin of the peptide bonds involving carbonyl groups of Arg372 and of Lys373 in the C-terminal segment. Conversion of ATP-actin to ADP-actin (with Mg2+ as the tightly bound cation) abolished the protective effect of Mg2+ on specific tryptic cleavage and, in contrast, largely inhibited proteolysis at specific sites for subtilisin and for a novel protease from Escherichia coli A2 strain within a surface loop of residues 39-51. We also examined the effect of proteolytic cleavage or chemical modification at certain sites on the kinetics of proteolysis at other sites of the molecule. These experiments demonstrated structural relationships between loop 39-51 and regions involving Lys61 and Lys68. It is suggested that the conformational transitions reflected in the observed changes in proteolytic susceptibility may underlie the known influence of the nature of the tightly bound cation and nucleotide on the kinetics of actin polymerization and stability of the polymer.

摘要

以蛋白水解敏感性为探针,我们已鉴定出肌动蛋白多肽链的四个区域,在这些区域会发生依赖于紧密结合的金属离子和/或核苷酸性质的结构重排。在ATP - 肌动蛋白中,用Mg2 +取代紧密结合的Ca2 +对Arg26和Lys68周围的区域有强烈影响,从多肽链在这些残基处的胰蛋白酶切割几乎完全被抑制可以判断。它还显著降低了胰蛋白酶对C末端片段中涉及Arg372和Lys373羰基的肽键的切割速率。将ATP - 肌动蛋白转化为ADP - 肌动蛋白(以Mg2 +作为紧密结合的阳离子)消除了Mg2 +对特定胰蛋白酶切割的保护作用,相反,在枯草杆菌蛋白酶和来自大肠杆菌A2菌株的一种新型蛋白酶在39 - 51残基表面环内的特定位点处的蛋白水解受到很大抑制。我们还研究了在分子的某些位点进行蛋白水解切割或化学修饰对其他位点蛋白水解动力学的影响。这些实验证明了39 - 51环与涉及Lys61和Lys68的区域之间的结构关系。有人提出,蛋白水解敏感性观察到的变化所反映的构象转变可能是紧密结合的阳离子和核苷酸性质对肌动蛋白聚合动力学和聚合物稳定性已知影响的基础。

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