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利用扩展遗传密码探究Ras蛋白的结构与机制。

Probing the structure and mechanism of Ras protein with an expanded genetic code.

作者信息

Chung H H, Benson D R, Schultz P G

机构信息

Department of Chemistry, University of California, Berkeley 94720.

出版信息

Science. 1993 Feb 5;259(5096):806-9. doi: 10.1126/science.8430333.

Abstract

Mutations in Ras protein at positions Gly12 and Gly13 (phosphate-binding loop L1) and at positions Ala59, Gly60, and Gln61 (loop L4) are commonly associated with oncogenic activation. The structural and catalytic roles of these residues were probed with a series of unnatural amino acids that have unusual main chain conformations, hydrogen bonding abilities, and steric features. The properties of wild-type and transforming Ras proteins previously thought to be uniquely associated with the structure of a single amino acid at these positions were retained by mutants that contained a variety of unnatural amino acids. This expanded set of functional mutants provides new insight into the role of loop L4 residues in switch function and suggests that loop L1 may participate in the activation of Ras protein by effector molecules.

摘要

Ras蛋白在甘氨酸12和甘氨酸13位置(磷酸结合环L1)以及丙氨酸59、甘氨酸60和谷氨酰胺61位置(环L4)的突变通常与致癌激活有关。利用一系列具有不寻常主链构象、氢键结合能力和空间特征的非天然氨基酸,探究了这些残基的结构和催化作用。以前认为与这些位置单个氨基酸结构独特相关的野生型和转化型Ras蛋白的特性,被含有多种非天然氨基酸的突变体所保留。这组扩展的功能突变体为环L4残基在开关功能中的作用提供了新的见解,并表明环L1可能参与效应分子对Ras蛋白的激活。

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