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亮氨酰/苯丙氨酰-tRNA-蛋白质转移酶。底物识别、结构域结构和二级结构的过表达及特征分析。

The leucyl/phenylalanyl-tRNA-protein transferase. Overexpression and characterization of substrate recognition, domain structure, and secondary structure.

作者信息

Abramochkin G, Shrader T E

机构信息

Department of Biochemistry and Anatomy, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 1995 Sep 1;270(35):20621-8. doi: 10.1074/jbc.270.35.20621.

Abstract

Previous work has shown that, in the bacterium Escherichia coli, the aat gene is essential for the degradation of proteins bearing amino-terminal Arg and Lys residues via the N-end rule pathway of protein degradation. We now show that the aat gene encodes directly the leucyl/phenylalanyl-tRNA-protein transferase (L/F-transferase). This enzyme catalyzes the transfer of Leu, Phe, and, less efficiently, Met and Trp, from aminoacyl-tRNAs, to the amino terminus of acceptor proteins. We have used the cloned aat gene to overexpress and purify an affinity tagged L/F-transferase. The recombinant L/F-transferase is as active as the previously purified wild type enzyme and contains no detectable RNA component. We have used the recombinant enzyme to demonstrate that both the solubility and substrate specificity, for aminoacyl-tRNA substrates, of the L/F-transferase are dependent on ionic strength conditions and that the modified nucleotides found in natural tRNAs are not essential for recognition by the enzyme. Limited digestion of the L/F-transferase with trypsin removes the proline rich NH2 terminus of the enzyme identifying a globular core, and circular dichroism demonstrates that the L/F-transferase is predominantly alpha-helical. Finally, a region of sequence conservation between the L/F-transferase and the NH2-terminal protein acetylases has been identified.

摘要

先前的研究表明,在大肠杆菌中,aat基因对于通过蛋白质降解的N端规则途径降解带有氨基末端精氨酸和赖氨酸残基的蛋白质至关重要。我们现在表明,aat基因直接编码亮氨酰/苯丙氨酰 - tRNA - 蛋白质转移酶(L/F - 转移酶)。这种酶催化亮氨酸、苯丙氨酸,以及效率较低的甲硫氨酸和色氨酸从氨酰 - tRNA转移到受体蛋白质的氨基末端。我们已经使用克隆的aat基因来过量表达和纯化一种带有亲和标签的L/F - 转移酶。重组L/F - 转移酶与先前纯化的野生型酶一样具有活性,并且不含有可检测到的RNA成分。我们已经使用重组酶证明,L/F - 转移酶对于氨酰 - tRNA底物的溶解度和底物特异性均取决于离子强度条件,并且天然tRNA中发现的修饰核苷酸对于该酶的识别并非必不可少。用胰蛋白酶对L/F - 转移酶进行有限消化可去除该酶富含脯氨酸的NH2末端,从而确定一个球状核心,圆二色性表明L/F - 转移酶主要是α - 螺旋结构。最后,已鉴定出L/F - 转移酶与NH2末端蛋白质乙酰转移酶之间的序列保守区域。

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