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Primary Structure Revision and Active Site Mapping of E. Coli Isoleucyl-tRNA Synthetase by Means of Maldi Mass Spectrometry

机译:马尔代夫质谱法对大肠杆菌异亮氨酰-tRNA合成酶的一级结构进行修改和活性位点图

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摘要

The correct amino acid sequence of E. coli isoleucyl-tRNA synthetase (IleRS) was established by means of peptide mapping by MALDI mass spectrometry, using a set of four endoproteases (trypsin, LysC, AspN and GluC). Thereafter, the active site of IleRS was mapped by affinity labeling with reactive analogs of the substrates. For the ATP binding site, the affinity labeling reagent was pyridoxal 5'-diphospho-5'-adenosine (ADP-PL), whereas periodate-oxidized tRNAIle, the 2',3'-dialdehyde derivative of tRNAIle was used to label the binding site for the 3'-end of tRNA on the synthetase. Incubation of either reagent with IleRS resulted in a rapid loss of both the tRNAIle aminoacylation and isoleucinedependent isotopic ATP-PPi exchange activities. The stoichiometries of IleRS labeling by ADP-PL or tRNAIleox corresponded to 1 mol of reagent incorporated per mol of enzyme. Altogether, the oxidized 3'-end of tRNAIle and the pyridoxal moiety of the ATP analog ADP-PL react with the lysyl residues 601 and 604 of the consensus sequence 601KMSKS605. Identification of the binding site for L-isoleucine or for non cognate amino acids on E. coli IleRS was achieved by qualitative comparative labeling of the synthetase with bromomethyl ketone derivatives of L-isoleucine (IBMK) or of the non-cognate amino acids valine (VBMK), phenylalanine (FBMK) and norleucine (NleBMK). Labeling of the enzyme with IBMK resulted in a complete loss of isoleucine-dependent isotopic [32P]PPi-ATP exchange activity. VBMK, NleBMK and FBMK were also capable of abolishing the activity of IleRS, FBMK being the less efficient in inactivating the synthetase. Analysis by MALDI mass spectrometry designated cysteines-462 and -718 as the target residues of the substrate analog IBMK on E. coli IleRS, whereas VBMK, NleBMK and FBMK labeled in common His-394, His-478 and Cys-718. In addition, VBMK and NleBMK, which are chemically similar to IBMK, were found covalently bound to Cys-462, and VBMK was specifically attached to His-332 (or His-337) of the synthetase. The amino acid residues labeled by the substrate analogs are mainly distributed between three regions in the primary structure of E. coli IleRS: these are segments [325-394], [451-479] and [591-604]. In the 3-D structures of IleRS from T. thermophilus and S. aureus, the [325-394] stretch is part of the editing domain, while fragments [451-479] and [591-604] representing the isoleucine binding domain and the dinucleotide (or Rossmann) fold domain, respectively, are located in the catalytic core. His-332 of E. coli IleRS, that is strictly conserved among all the available IleRS sequences is located in the editing active site of the synthetase. It is proposed that His-332 of E. coli IleRS participates directly in hydrolysis, or helps to deprotonate the hydroxyl group of threonine at the hydrolytic site.
机译:使用一组四个内切蛋白酶(胰蛋白酶,LysC,AspN和GluC)通过MALDI质谱进行肽图分析,确定了大肠杆菌异亮氨酰tRNA合成酶(IleRS)的正确氨基酸序列。此后,通过用底物的反应性类似物进行亲和标记来绘制IleRS的活性位点。对于ATP结合位点,亲和标记试剂为吡ido醛5'-二磷酸-5'-腺苷(ADP-PL),而高碘酸氧化的tRNA Ile 为2',3'-二醛衍生物用tRNA Ile 的标记在合成酶上标记tRNA 3'-末端的结合位点。两种试剂与IleRS一起孵育都会导致tRNA Ile 氨酰化和异亮氨酸依赖性同位素ATP-PPi交换活性迅速丧失。通过ADP-PL或tRNA ox标记的IleRS的化学计量学相当于每摩尔酶掺入1摩尔试剂。总的来说,tRNA Ile 的氧化3'末端和ATP类似物ADP-PL的吡pyr醛部分与共有序列 601 KMSKS的赖氨酰残基601和604反应 605 。通过用L-异亮氨酸(IBMK)的溴甲基酮衍生物或非同源氨基酸的缬氨酸(IBM K)对合成酶进行定性比较标记,可以鉴定大肠杆菌IleRS上L-异亮氨酸或非同源氨基酸的结合位点。 VBMK),苯丙氨酸(FBMK)和正亮氨酸(NleBMK)。用IBMK标记该酶导致完全失去异亮氨酸依赖性同位素[ 32 P] PPi-ATP交换活性。 VBMK,NleBMK和FBMK也能够消除IleRS的活性,而FBMK在使合成酶失活方面效率较低。通过MALDI质谱分析,将半胱氨酸-462和-718指定为大肠杆菌IleRS上底物类似物IBMK的目标残基,而VBMK,NleBMK和FBMK在常见的His-394,His-478和Cys-718中标记。另外,发现化学上类似于IBMK的VBMK和NleBMK共价结合至Cys-462,并且VBMK特异性地附着于合成酶的His-332(或His-337)。底物类似物标记的氨基酸残基主要分布在大肠杆菌IleRS一级结构的三个区域之间:这些是区段[325-394],[451-479]和[591-604]。在嗜热链球菌和金黄色葡萄球菌的IleRS的3-D结构中,[325-394]延伸段是编辑结构域的一部分,而片段[451-479]和[591-604]代表异亮氨酸结合结构域和二核苷酸(或Rossmann)的折叠结构域分别位于催化核中。在所有可用的IleRS序列中严格保守的大肠杆菌IleRS的His-332位于合成酶的编辑活性位点。提出了大肠杆菌IleRS的His-332直接参与水解,或有助于在水解位点使苏氨酸的羟基去质子化。

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