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首页> 外文期刊>Biochemistry >CRYSTAL STRUCTURES OF THREE MISACYLATING MUTANTS OF ESCHERICHIA COLI GLUTAMINYL-TRNA SYNTHETASE COMPLEXED WITH TRNA(GLN) AND ATP
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CRYSTAL STRUCTURES OF THREE MISACYLATING MUTANTS OF ESCHERICHIA COLI GLUTAMINYL-TRNA SYNTHETASE COMPLEXED WITH TRNA(GLN) AND ATP

机译:三种复杂的大肠埃希氏菌谷氨酰胺基-TRNA合成酶与TRNA(GLN)和ATP复合的突变结构

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摘要

Three previously described mutant Escherichia coli glutaminyl-tRNA synthetase (GlnRS) proteins that incorrectly aminoacylate the amber suppressor derived from tRNA(Tyr) (supF) With glutamine were cocrystallized with wild-type tRNA(Gln) and their structures determined. In two of the mutant enzymes studied, Asp235, which contacts base pair G3-C70 in the acceptor stem, has been changed to asparagine in GlnRS7 and to glycine in GlnRS10. These mutations result in changed interactions between Asn235 of GlnRS7 and G3-C70 of the tRNA and an altered water structure between Gly235 of GlnRS10 and base pair G3-C70. These structures suggest how the mutant enzymes can show only small changes in their ability to aminoacylate wild-type cognate tRNA on the one hand and yet show a lack of discrimination against a noncognate U3-A70 base pair on the other. In contrast, the change of Ile129 to Thr in GlnRS15 causes virtually no change in the structure of the complex, and the explanation for its ability to misacylate supF is unclear.
机译:将三个先前描述的突变型大肠杆菌谷氨酰胺基tRNA合成酶(GlnRS)蛋白与野生型tRNA(Gln)共结晶,这些蛋白将谷氨酰胺衍生的tRNA(Tyr)(supF)的琥珀抑制因子错误地氨酰化,并将其结构结晶。在研究的两种突变酶中,与受体茎中的碱基对G3-C70接触的Asp235已被改变为GlnRS7中的天冬酰胺和GlnRS10中的甘氨酸。这些突变导致GlnRS7的Asn235与tRNA的G3-C70之间的相互作用改变,以及GlnRS10的Gly235与碱基对G3-C70之间的水结构改变。这些结构表明,一方面,突变酶如何仅表现出很小的氨基酰化野生型同源tRNA能力的变化,另一方面却缺乏对非同源U3-A70碱基对的区分。相比之下,GlnRS15中Ile129变为Thr几乎不引起复合物结构的改变,并且尚不清楚其对SusF进行酰化的能力的解释。

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