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Crystallographic structure of the amino terminal domain of yeast initiation factor 4A, a representative DEAD-box RNA helicase.

机译:酵母起始因子4A(一种代表性的DEAD-box RNA解旋酶)的氨基末端结构域的晶体结构。

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摘要

The eukaryotic translation initiation factor 4A (elF4A) is a representative of the DEAD-box RNA helicase protein family. We have solved the crystallographic structure of the amino-terminal domain (residues 1-223) of yeast elF4A. The domain is built around a core scaffold, a parallel alpha-beta motif with five beta strands, that is found in other RNA and DNA helicases, as well as in the RecA protein. The amino acid sequence motifs that are conserved within the helicase family are localized to the beta strand-->alpha helix junctions within the core. The core of the amino terminal domain of elF4A is amplified with additional structural elements that differ from those of other helicases. The phosphate binding loop (the Walker A motif) is in an unusual closed conformation. The crystallographic structure reveals specific interactions between amino acid residues of the phosphate binding loop, the DEAD motif, and the SAT motif, whose alteration is known to impair coupling between the ATPase cycle and the RNA unwinding activity of elF4A.
机译:真核翻译起始因子4A(eIF4A)是DEAD-box RNA解旋酶蛋白家族的代表。我们已经解决了酵母eIF4A的氨基末端结构域(残基1-223)的晶体学结构。该结构域围绕一个核心支架构建,该骨架是具有5条β链的平行α-β基序,可在其他RNA和DNA解旋酶以及RecA蛋白中找到。解旋酶家族中保守的氨基酸序列基序位于核心内的β链->α螺旋连接处。 eIF4A的氨基末端结构域的核心用不同于其他解旋酶的其他结构元件扩增。磷酸盐结合环(Walker A基序)处于异常闭合的构象中。晶体学结构揭示了磷酸结合环的氨基酸残基,DEAD基序和SAT基序之间的特异性相互作用,已知其改变会削弱ATPase循环与eIF4A的RNA解旋活性之间的偶联。

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