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根据EF-Tu多肽链的三维结构考虑其特定改变。

Specific alterations of the EF-Tu polypeptide chain considered in the light of its three-dimensional structure.

作者信息

Duisterwinkel F J, Kraal B, De Graaf J M, Talens A, Bosch L, Swart G W, Parmeggiani A, La Cour T F, Nyborg J, Clark B F

出版信息

EMBO J. 1984 Jan;3(1):113-20. doi: 10.1002/j.1460-2075.1984.tb01770.x.

Abstract

Specific alterations of the elongation factor Tu (EF-Tu) polypeptide chain have been identified in a number of mutant species of this elongation factor. In two species, Ala-375, located on domain II, was found by amino acid analysis to be replaced by Thr and Val, respectively. These replacements substantially lower the affinity of EF-Tu.GDP for the antibiotic kirromycin. Since kirromycin can be cross-linked to Lys-357, also located on domain II but structurally very far from Ala-375, these data suggest that the replacements alter the relative position of domains I and II. The Ala-375 replacements also lower the dissociation rates of the binary complexes EF-Tu.GTP and the binding constants for EF-Tu.GTP and Phe-tRNA. It is conceivable that these effects are also mediated by movements of domains I and II relative to each other. Replacement of Gly-222 by Asp has been found in another mutant by DNA sequence analysis of the cloned tufB gene, coding for this mutant EF-Tu. Gly-222 is part of a structural domain, characteristic for a variety of nucleotide binding enzymes. Its replacement by Asp does not abolish the ability of EF-Tu to sustain protein synthesis. It increases the dissociation rate of EF-Tu.GTP by approximately 30%. In the presence of kirromycin this mutant species of EF-Tu.GDP does not bind to the ribosome, in contrast to its wild-type counterpart. A possible explanation is now open for experimental verification.

摘要

在延伸因子Tu(EF-Tu)的多个突变物种中,已鉴定出该延伸因子多肽链的特定改变。在两个物种中,通过氨基酸分析发现位于结构域II上的丙氨酸-375分别被苏氨酸和缬氨酸取代。这些取代显著降低了EF-Tu.GDP对抗生素奇霉素的亲和力。由于奇霉素可与同样位于结构域II但在结构上与丙氨酸-375相距甚远的赖氨酸-357交联,这些数据表明这些取代改变了结构域I和II的相对位置。丙氨酸-375的取代还降低了二元复合物EF-Tu.GTP的解离速率以及EF-Tu.GTP和苯丙氨酰-tRNA的结合常数。可以想象,这些效应也由结构域I和II相对于彼此的移动介导。通过对编码该突变EF-Tu的克隆tufB基因进行DNA序列分析,在另一个突变体中发现天冬氨酸取代了甘氨酸-222。甘氨酸-222是多种核苷酸结合酶特有的一个结构域的一部分。它被天冬氨酸取代并不消除EF-Tu维持蛋白质合成的能力。它使EF-Tu.GTP的解离速率增加了约30%。与野生型对应物相比,在奇霉素存在的情况下,这种EF-Tu.GDP突变物种不与核糖体结合。现在有一个可能的解释可供实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2040/557306/5db3bc70f422/emboj00305-0111-a.jpg

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