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来自大肠杆菌的缬氨酰 - tRNA合成酶:用活性氨基酸类似物进行定性比较标记后,对L - 缬氨酸或非同源氨基酸结合位点的基质辅助激光解吸电离质谱鉴定

Valyl-tRNA synthetase from Escherichia coli MALDI-MS identification of the binding sites for L-valine or for noncognate amino acids upon qualitative comparative labeling with reactive amino-acid analogs.

作者信息

Hountondji C, Beauvallet C, Dessen P, Hoang-Naudin C, Schmitter J M, Pernollet J C, Blanquet S

机构信息

Laboratoire de Biochimie (CNRS UMR 7654), Ecole Polytechnique, Palaiseau, France.

出版信息

Eur J Biochem. 2000 Aug;267(15):4789-98. doi: 10.1046/j.1432-1327.2000.01535.x.

Abstract

Bromomethyl ketone derivatives of L-valine (VBMK), L-isoleucine (IBMK), L-norleucine (NleBMK) and L-phenylalanine (FBMK) were synthesized. These reagents were used for qualitative comparative labeling of Escherichia coli valyl-tRNA synthetase (ValRS), an enzyme with Val/Ile editing activity, in order to identify the binding sites for L-valine or noncognate amino acids. Labeling of E. coli ValRS with the substrate analog valyl-bromomethyl ketone (VBMK) resulted in a complete loss of valine-dependent isotopic [32P]PPi-ATP exchange activity. L-Valine protected the enzyme against inactivation. Noncognate amino acids analogs isoleucyl-, norleucyl- and phenylalanyl-bromomethyl ketones (IBMK, NleBMK and FBMK) were also capable of abolishing the activity of ValRS, FBMK being less efficient in inactivating the synthetase. Matrix-assisted laser desorption-ionization mass spectrometry designated cysteines 424 and 829 as the target residues of the substrate analog VBMK on E. coli ValRS, whereas, altogether, IBMK, NleBMK and FBMK labeled His266, Cys275, His282, His433 and Cys829, of which Cys275, His282 and His433 were labeled in common by all three noncognate amino-acid-derived bromomethyl ketones. With the exception of Cys829, which was most likely unspecifically labeled, the amino-acid residues labeled by the reagents derived from noncognate amino acids were distributed between two fragments 259-291 and 419-434 in the primary structure of E. coli ValRS. In fragment 419-434, Cys424 was specifically labeled by the substrate analog VBMK, while His433 was labeled in common by all the used bromomethyl ketone derivatives of noncognate amino acids, suggesting that the synthetic site where aminoacyl adenylate formation takes place on E. coli ValRS is built up of two subsites. One subsite containing Cys424 might represent the catalytic locus of the active center where specific L-valine activation takes place. The second subsite containing His433 might represent the binding site for noncognate amino acids. The fact that Cys275 and His282, fragment 259-291, were labeled by IBMK, NleBMK and FBMK, but not by the substrate analog VBMK, suggests that these residues might be located at or near the editing site of E. coli ValRS. Comparison of fragment 259-291 with all the available ValRS amino-acid sequences revealed that His282 is strictly conserved, with the exception of its replacement by a glycine in a subgroup corresponding to the archaebacteria. Because a nucleophile is needed in the editing site to achieve hydrolysis of an undesired product at the level of the carbonyl group thereof, it is proposed that the conserved His282 of E. coli ValRS is involved in editing.

摘要

合成了L-缬氨酸(VBMK)、L-异亮氨酸(IBMK)、L-正亮氨酸(NleBMK)和L-苯丙氨酸(FBMK)的溴甲基酮衍生物。这些试剂用于对具有Val/Ile编辑活性的大肠杆菌缬氨酰-tRNA合成酶(ValRS)进行定性比较标记,以确定L-缬氨酸或非同源氨基酸的结合位点。用底物类似物缬氨酰-溴甲基酮(VBMK)标记大肠杆菌ValRS导致缬氨酸依赖性同位素[32P]PPi-ATP交换活性完全丧失。L-缬氨酸可保护该酶不被灭活。非同源氨基酸类似物异亮氨酰、正亮氨酰和苯丙氨酰溴甲基酮(IBMK、NleBMK和FBMK)也能够消除ValRS的活性,FBMK使合成酶失活的效率较低。基质辅助激光解吸电离质谱法确定半胱氨酸424和829是大肠杆菌ValRS上底物类似物VBMK的靶标残基,而IBMK、NleBMK和FBMK总共标记了His266、Cys275、His282、His433和Cys829,其中Cys275、His282和His433被所有三种非同源氨基酸衍生的溴甲基酮共同标记。除了最有可能被非特异性标记的Cys829外,由非同源氨基酸衍生的试剂标记的氨基酸残基分布在大肠杆菌ValRS一级结构的两个片段259 - 291和419 - 434之间。在片段419 - 434中,半胱氨酸424被底物类似物VBMK特异性标记,而His433被所有使用的非同源氨基酸溴甲基酮衍生物共同标记,这表明大肠杆菌ValRS上发生氨酰腺苷酸形成的合成位点由两个亚位点组成。一个包含半胱氨酸424的亚位点可能代表活性中心的催化位点,在该位点发生特定L-缬氨酸的活化。第二个包含His433的亚位点可能代表非同源氨基酸的结合位点。Cys275和His282(片段259 - 291)被IBMK、NleBMK和FBMK标记,但未被底物类似物VBMK标记,这一事实表明这些残基可能位于大肠杆菌ValRS的编辑位点或其附近。将片段259 - 291与所有可用的ValRS氨基酸序列进行比较发现,His282严格保守,在对应古细菌的一个亚组中被甘氨酸取代的情况除外。因为在编辑位点需要一个亲核试剂来实现不需要的产物在其羰基水平的水解,所以有人提出大肠杆菌ValRS中保守的His282参与编辑。

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