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基于未调控催化亚基的晶体结构对天冬氨酸转氨甲酰酶变构机制的评估。

Assessment of the allosteric mechanism of aspartate transcarbamoylase based on the crystalline structure of the unregulated catalytic subunit.

作者信息

Beernink P T, Endrizzi J A, Alber T, Schachman H K

机构信息

Department of Molecular and Cell Biology and Virus Laboratory, University of California, Berkeley, CA 94720-3206, USA.

出版信息

Proc Natl Acad Sci U S A. 1999 May 11;96(10):5388-93. doi: 10.1073/pnas.96.10.5388.

Abstract

The lack of knowledge of the three-dimensional structure of the trimeric, catalytic (C) subunit of aspartate transcarbamoylase (ATCase) has impeded understanding of the allosteric regulation of this enzyme and left unresolved the mechanism by which the active, unregulated C trimers are inactivated on incorporation into the unliganded (taut or T state) holoenzyme. Surprisingly, the isolated C trimer, based on the 1.9-A crystal structure reported here, resembles more closely the trimers in the T state enzyme than in the holoenzyme:bisubstrate-analog complex, which has been considered as the active, relaxed (R) state enzyme. Unlike the C trimer in either the T state or bisubstrate-analog-bound holoenzyme, the isolated C trimer lacks 3-fold symmetry, and the active sites are partially disordered. The flexibility of the C trimer, contrasted to the highly constrained T state ATCase, suggests that regulation of the holoenzyme involves modulating the potential for conformational changes essential for catalysis. Large differences in structure between the active C trimer and the holoenzyme:bisubstrate-analog complex call into question the view that this complex represents the activated R state of ATCase.

摘要

对天冬氨酸转氨甲酰酶(ATCase)三聚体催化(C)亚基三维结构的缺乏了解,阻碍了对该酶变构调节的理解,并且尚未解决活性、未受调节的C三聚体在掺入无配体(紧张或T态)全酶时如何失活的机制问题。令人惊讶的是,基于本文报道的1.9埃晶体结构,分离出的C三聚体与T态酶中的三聚体更为相似,而不是与全酶:双底物类似物复合物中的三聚体相似,后者被认为是活性、松弛(R)态酶。与T态或结合双底物类似物的全酶中的C三聚体不同,分离出的C三聚体缺乏三重对称性,并且活性位点部分无序。与高度受限的T态ATCase相比,C三聚体的灵活性表明全酶的调节涉及调节对催化至关重要的构象变化的可能性。活性C三聚体与全酶:双底物类似物复合物之间在结构上的巨大差异,对这种复合物代表ATCase活化R态的观点提出了质疑。

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