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嗜热栖热菌亮氨酰-tRNA合成酶的晶体结构揭示了一种新的编辑结构域取向。

Crystal structure of leucyl-tRNA synthetase from the archaeon Pyrococcus horikoshii reveals a novel editing domain orientation.

作者信息

Fukunaga Ryuya, Yokoyama Shigeyuki

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Japan.

出版信息

J Mol Biol. 2005 Feb 11;346(1):57-71. doi: 10.1016/j.jmb.2004.11.060. Epub 2004 Dec 19.

Abstract

The editing domains of the closely homologous leucyl, isoleucyl, and valyl-tRNA synthetases (LeuRS, IleRS, and ValRS, respectively) contribute to accurate aminoacylation, by hydrolyzing misformed non-cognate aminoacyl-tRNAs. The editing domain is inserted at the same point of the sequence in IleRS, ValRS, and the archaeal/eukaryal LeuRS, but at a distinct point in the bacterial LeuRS. Here, we showed that LeuRS from the archaeon Pyrococcus horikoshii has editing activity against the nearly cognate isoleucine. The conserved Asp332 in the editing domain is crucial for this activity. A deletion mutant lacking the C-terminal region has only negligible aminoacylation activity, but retains the full activity of adenylate synthesis and editing. We determined the crystal structure of this editing-active, truncated form of P.horikoshii LeuRS at 2.1 A resolution. The structure revealed that it has a novel editing domain orientation. The editing domain of P.horikoshii LeuRS is rotated by approximately 180 degrees (rotational state II), with the two-beta-stranded linker untwisted by a half-turn, as compared to those in IleRS and ValRS (rotational state I). This editing domain rotational state in the archaeal LeuRS is similar to that in the bacterial LeuRS. However, because of the insertion point difference, the orientation of the editing domain relative to the enzyme core in the archaeal LeuRS differs completely from that in the bacterial LeuRS. An insertion region specific to the archaeal/eukaryal LeuRS editing domains interacts with the enzyme core and stabilizes the unique orientation. Thus, we established that there are three types of editing domain orientations relative to the enzyme core, depending on the combination of the editing domain insertion point (i or ii) and the rotational state (I or II): [i, I] for IleRS and ValRS, [ii, II] for the bacterial LeuRS, and now [i, II] for the archaeal/eukaryal LeuRS.

摘要

密切同源的亮氨酰、异亮氨酰和缬氨酰 - tRNA合成酶(分别为LeuRS、IleRS和ValRS)的编辑结构域,通过水解错误形成的非同源氨酰 - tRNA,有助于实现准确的氨酰化。IleRS、ValRS以及古菌/真核生物LeuRS的编辑结构域插入序列的相同位置,但在细菌LeuRS中插入位置不同。在此,我们表明来自嗜热栖热菌的LeuRS对近同源的异亮氨酸具有编辑活性。编辑结构域中保守的Asp332对该活性至关重要。一个缺失C末端区域的缺失突变体仅具有可忽略不计的氨酰化活性,但保留了腺苷酸合成和编辑的全部活性。我们以2.1 Å的分辨率确定了这种具有编辑活性的嗜热栖热菌LeuRS截短形式的晶体结构。该结构表明它具有一种新颖的编辑结构域取向。与IleRS和ValRS(旋转状态I)相比,嗜热栖热菌LeuRS的编辑结构域旋转了约180度(旋转状态II),两条β链连接体解开了半圈。古菌LeuRS中的这种编辑结构域旋转状态与细菌LeuRS中的相似。然而,由于插入点的差异,古菌LeuRS中编辑结构域相对于酶核心的取向与细菌LeuRS中的完全不同。古菌/真核生物LeuRS编辑结构域特有的插入区域与酶核心相互作用并稳定独特的取向。因此,我们确定相对于酶核心存在三种类型的编辑结构域取向,这取决于编辑结构域插入点(i或ii)和旋转状态(I或II)的组合:IleRS和ValRS为[i, I],细菌LeuRS为[ii, II],现在古菌/真核生物LeuRS为[i, II]。

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