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具有两个催化位点的酶结构,用于对底物进行双筛选择。

Enzyme structure with two catalytic sites for double-sieve selection of substrate.

作者信息

Nureki O, Vassylyev D G, Tateno M, Shimada A, Nakama T, Fukai S, Konno M, Hendrickson T L, Schimmel P, Yokoyama S

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113, Japan.

出版信息

Science. 1998 Apr 24;280(5363):578-82. doi: 10.1126/science.280.5363.578.

Abstract

High-fidelity transfers of genetic information in the central dogma can be achieved by a reaction called editing. The crystal structure of an enzyme with editing activity in translation is presented here at 2.5 angstroms resolution. The enzyme, isoleucyl-transfer RNA synthetase, activates not only the cognate substrate L-isoleucine but also the minimally distinct L-valine in the first, aminoacylation step. Then, in a second, "editing" step, the synthetase itself rapidly hydrolyzes only the valylated products. For this two-step substrate selection, a "double-sieve" mechanism has already been proposed. The present crystal structures of the synthetase in complexes with L-isoleucine and L-valine demonstrate that the first sieve is on the aminoacylation domain containing the Rossmann fold, whereas the second, editing sieve exists on a globular beta-barrel domain that protrudes from the aminoacylation domain.

摘要

通过一种称为编辑的反应,可以在中心法则中实现遗传信息的高保真传递。本文展示了一种在翻译中具有编辑活性的酶的晶体结构,分辨率为2.5埃。该酶异亮氨酰 - 转移RNA合成酶,在第一步氨酰化反应中,不仅激活同源底物L - 异亮氨酸,还激活仅有微小差异的L - 缬氨酸。然后,在第二步“编辑”步骤中,合成酶自身仅快速水解缬氨酰化产物。对于这种两步底物选择,已经提出了一种“双筛”机制。目前该合成酶与L - 异亮氨酸和L - 缬氨酸复合物的晶体结构表明,第一个筛存在于包含Rossmann折叠的氨酰化结构域上,而第二个编辑筛存在于从氨酰化结构域突出的球状β - 桶结构域上。

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