Fishman R, Ankilova V, Moor N, Safro M
Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
Acta Crystallogr D Biol Crystallogr. 2001 Nov;57(Pt 11):1534-44. doi: 10.1107/s090744490101321x. Epub 2001 Oct 25.
The crystal structure of phenylalanyl-tRNA synthetase (PheRS) from Thermus thermophilus, a class II aminoacyl-tRNA synthetase, complexed with phenylalanyl-adenylate (Phe-AMP) was determined at 2.6 A resolution. Crystals of native PheRS were soaked in a solution containing phenylalanine and ATP in the presence of Mn(2+) ions. The first step of the aminoacylation reaction proceeds within the crystals, resulting in Phe-AMP formation at the active site. Specific recognition of the phenylalanine portion of the Phe-AMP is achieved by interactions of the phenyl ring of Phe-AMP with two neighbouring residues, Phealpha258 and Phealpha260. No manganese ions were observed within the active site; their role in the formation of the transition state may be assigned to a number of polar residues and water molecules. In the anomalous Fourier difference map, a divalent metal ion was detected at the interface of the alpha- and beta-subunits at a short distance from motif 3 residues participating in the substrate binding. A sulfate ion, which was identified on the protein surface, may mediate the interactions of PheRS with DNA. Visible conformational changes were detected in the active-site area adjacent to the position of the Phe-AMP, compared with the structure of PheRS complexed with a synthetic adenylate analogue (phenylalaninyl-adenylate). Based on the known structures of the substrate-free enzyme and its complexes with various ligands, a general scheme for the phenylalanylation mechanism is proposed.
嗜热栖热菌苯丙氨酰 - tRNA合成酶(PheRS,一种II类氨酰 - tRNA合成酶)与苯丙氨酰 - 腺苷酸(Phe - AMP)复合物的晶体结构在2.6埃分辨率下得以确定。天然PheRS晶体在含有苯丙氨酸和ATP且存在锰离子(Mn(2+))的溶液中浸泡。氨酰化反应的第一步在晶体内进行,导致活性位点处形成Phe - AMP。Phe - AMP中苯丙氨酸部分的特异性识别是通过Phe - AMP的苯环与两个相邻残基Pheα258和Pheα260的相互作用实现的。在活性位点内未观察到锰离子;它们在过渡态形成中的作用可能归因于一些极性残基和水分子。在反常傅里叶差值图中,在α亚基和β亚基的界面处,距离参与底物结合的模体3残基较近的位置检测到一个二价金属离子。在蛋白质表面鉴定出的一个硫酸根离子可能介导PheRS与DNA的相互作用。与PheRS与合成腺苷酸类似物(苯丙氨酰 - 腺苷酸)复合物的结构相比,在与Phe - AMP位置相邻的活性位点区域检测到明显的构象变化。基于无底物酶及其与各种配体复合物的已知结构,提出了苯丙氨酰化机制的一般方案。