Fukunaga Ryuya, Fukai Shuya, Ishitani Ryuichiro, Nureki Osamu, Yokoyama Shigeyuki
Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Biol Chem. 2004 Feb 27;279(9):8396-402. doi: 10.1074/jbc.M312830200. Epub 2003 Dec 12.
Isoleucyl-tRNA synthetase (IleRS) links tRNA(Ile) with not only its cognate isoleucine but also the nearly cognate valine. The CP1 domain of IleRS deacylates, or edits, the mischarged Val-tRNA(Ile). We determined the crystal structures of the Thermus thermophilus IleRS CP1 domain alone, and in its complex with valine at 1.8- and 2.0-A resolutions, respectively. In the complex structure, the Asp(328) residue, which was shown to be critical for the editing reaction against Val-tRNA(Ile) by a previous mutational analysis, recognizes the valine NH(3)(+) group. The valine side chain binding pocket is only large enough to accommodate valine, and the placement of an isoleucine model in this location revealed that the additional methylene group of isoleucine would clash with His(319). The H319A mutant of Escherichia coli IleRS reportedly deacylates the cognate Ile-tRNA(Ile) in addition to Val-tRNA(Ile), indicating that the valine-binding mode found in this study represents that in the Val-tRNA(Ile) editing reaction. Analyses of the Val-tRNA(Ile) editing activities of T. thermophilus IleRS mutants revealed the importance of Thr(228), Thr(229), Thr(230), and Asp(328), which are coordinated with water molecules in the present structure. The structural model for the Val-adenosine moiety of Val-tRNA(Ile) bound in the IleRS editing site revealed some interesting differences in the substrate binding and recognizing mechanisms between IleRS and T. thermophilus leucyl-tRNA synthetase. For example, the carbonyl oxygens of the amino acids are located opposite to each other, relative to the adenosine ribose ring, and are differently recognized.
异亮氨酰 - tRNA合成酶(IleRS)不仅将tRNA(Ile)与它的同源异亮氨酸连接起来,还能与近同源的缬氨酸连接。IleRS的CP1结构域能使错误负载的Val - tRNA(Ile)脱酰基,即进行编辑。我们分别以1.8埃和2.0埃的分辨率测定了嗜热栖热菌IleRS CP1结构域单独的晶体结构及其与缬氨酸复合物的晶体结构。在复合物结构中,先前的突变分析表明对针对Val - tRNA(Ile)的编辑反应至关重要的Asp(328)残基识别缬氨酸的NH₃⁺基团。缬氨酸侧链结合口袋仅足够容纳缬氨酸,在此位置放置异亮氨酸模型表明异亮氨酸额外的亚甲基会与His(319)发生冲突。据报道,大肠杆菌IleRS的H319A突变体除了能使Val - tRNA(Ile)脱酰基外,还能使同源的Ile - tRNA(Ile)脱酰基,这表明本研究中发现的缬氨酸结合模式代表了Val - tRNA(Ile)编辑反应中的结合模式。对嗜热栖热菌IleRS突变体的Val - tRNA(Ile)编辑活性分析揭示了Thr(228)、Thr(229)、Thr(230)和Asp(328)的重要性,它们在当前结构中与水分子配位。结合在IleRS编辑位点的Val - tRNA(Ile)的Val - 腺苷部分的结构模型揭示了IleRS与嗜热栖热菌亮氨酰 - tRNA合成酶在底物结合和识别机制上的一些有趣差异。例如,氨基酸的羰基氧相对于腺苷核糖环彼此相对,并且识别方式不同。