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Analysis by systematic deletion of amino acids of the action of the ribotoxin restrictocin

机译:通过氨基酸的系统缺失分析核糖毒素限制酶的作用

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A series of contiguous deletions were made in a cDNA encoding the ribonuclease restrictocin with the purpose of identifying the amino acids that the essential for the cleavage of the phosphodiester bond on the 3' side of G4325 in the α-sarcin/ricin domain of mammalian (rat) 28S rRNA. In all 93 of 149 amino acids, 62% of the residues in restrictocin, were not essential for the action of the toxin. Of the five residues that have been proposed to constitute the active site, three could be deleted without loss of activity if they were part of a deletion of three or five amino acids but not if they were removed singly. It is likely that the loss of these three residues is compensated for by a neighboring residue that occupies the structural space created by the larger amino acid deletions. This was demonstrated to be the case for the active site residue Glu95 which in the deletion mutant △91-95 is replaced by Asp90. Systematic deletion of amino acids is a rapid, cost effective method for identifying the residues in a protein likely to contribute directly to function and, hence, deserving of closer scrutiny. Moreover, a semiquantitative estimate of the contribution of the residue to function can be made. For this reason the method may be useful for functional proteomics.
机译:为了鉴定哺乳动物的α-sarcin/ ricin结构域中G4325 3'侧磷酸二酯键裂解必不可少的氨基酸,在编码核糖核酸酶限制性内切酶的cDNA中进行了一系列连续缺失(大鼠)28S rRNA。在149个氨基酸中的所有93个中,限制性内毒素中的62%残基对于毒素的作用不是必需的。在提议构成活性位点的5个残基中,如果3个或5个氨基酸缺失的一部分,则3个可以删除而不会丧失活性,但如果单独去除,则不能删除。这三个残基的丢失可能被占据较大氨基酸缺失所产生的结构空间的相邻残基所补偿。活性位点残基Glu95被证明是这种情况,其在缺失突变体△91-95中被Asp90替代。氨基酸的系统性删除是一种快速,经济高效的方法,可用于鉴定蛋白质中可能直接影响功能并因此需要进行更深入研究的残基。此外,可以对残基对功能的贡献进行半定量估计。因此,该方法可能对功能蛋白质组学有用。

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