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大肠杆菌50S核糖体蛋白与rRNA的光诱导原位共价交联。

Photoinduced convalent crosslinkage, in situ, of Escherichia coli 50 S ribosomal proteins to rRNA.

作者信息

Gorelic L

出版信息

Biochim Biophys Acta. 1975 May 1;390(2):209-25. doi: 10.1016/0005-2787(75)90342-1.

Abstract

Irradiation of aqueous solutions of Escherichia coli 50 S ribosomal subunits with 253.7 nm light results in the covalent crosslinkage of the rRNA and protein components. Neither peptide bond cleavage nor protein-protein crosslinkage accompanies the crosslinkage reactionmin addition, substantial photoinduced modifications in the primary structure of the ribosomal proteins, other than crosslinkage to rRNA, are not detected. The crosslinkage of the ribosomal proteins to the rRNA proroceeds in two discrete, dose-dependent steps. The first step, requires an input of up to 3 with 10-20 Quanta of 253.7nm radiation, and results in the crosslinkage of less than half of the ribosomal proteins to the rRNA. The second step requires an input of greater than 3 with 10-20 Quanta of 253.7 nm radiation, and results in the crosslinkage of the remaining ribosomal proteins to the rRNA. The possible relationship of the nature of the corsslinkage reaction to the spatial orientations of the rRNA and protein molecules in the intact 50 S ribosomal subunits is discussed.

摘要

用253.7纳米的光照射大肠杆菌50S核糖体亚基的水溶液,会导致rRNA和蛋白质成分发生共价交联。交联反应既不伴随肽键断裂,也不伴随蛋白质-蛋白质交联。此外,除了与rRNA交联外,未检测到核糖体蛋白质一级结构有显著的光诱导修饰。核糖体蛋白质与rRNA的交联分两个离散的、剂量依赖性步骤进行。第一步,需要输入多达3×10-20个253.7纳米辐射量子,导致不到一半的核糖体蛋白质与rRNA交联。第二步需要输入大于3×10-20个253.7纳米辐射量子,并导致其余核糖体蛋白质与rRNA交联。本文讨论了交联反应的性质与完整50S核糖体亚基中rRNA和蛋白质分子空间取向之间的可能关系。

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