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Crystal structure of the human CNOT6L nuclease domain reveals strict poly(A) substrate specificity

机译:人类CNOT6L核酸酶结构域的晶体结构揭示了严格的poly(A)底物特异性

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摘要

CCR4, an evolutionarily conserved member of the CCR4–NOT complex, is the main cytoplasmic deadenylase. It contains a C-terminal nuclease domain with homology to the endonuclease-exonuclease-phosphatase (EEP) family of enzymes. We have determined the high-resolution three-dimensional structure of the nuclease domain of CNOT6L, a human homologue of CCR4, by X-ray crystallography using the single-wavelength anomalous dispersion method. This first structure of a deadenylase belonging to the EEP family adopts a complete α/β sandwich fold typical of hydrolases with highly conserved active site residues similar to APE1. The active site of CNOT6L should recognize the RNA substrate through its negatively charged surface. In vitro deadenylase assays confirm the critical active site residues and show that the nuclease domain of CNOT6L exhibits full Mg2+-dependent deadenylase activity with strict poly(A) RNA substrate specificity. To understand the structural basis for poly(A) RNA substrate binding, crystal structures of the CNOT6L nuclease domain have also been determined in complex with AMP and poly(A) DNA. The resulting structures suggest a molecular deadenylase mechanism involving a pentacovalent phosphate transition.
机译:CCR4是CCR4–NOT复合物的进化保守成员,是主要的胞质腺苷酸酶。它包含一个C端核酸酶结构域,与核酸内切酶-核酸外切酶-磷酸酶(EEP)家族具有同源性。我们已经通过使用单波长异常分散方法的X射线晶体学确定了CNOT6L的核酸酶结构域的高分辨率三维结构,该结构是CCR4的人类同源物。属于EEP家族的甲腺苷酸酶的第一个结构采用水解酶的典型α/β夹心折叠结构,具有高度保守的类似于APE1的活性位点残基。 CNOT6L的活性位点应通过带负电荷的表面识别RNA底物。体外腺苷酸酶测定证实了关键的活性位点残基,并表明CNOT6L的核酸酶结构域具有完整的Mg 2 + 依赖性腺苷酸酶活性,并具有严格的poly(A)RNA底物特异性。为了理解聚(A)RNA底物结合的结构基础,CNOT6L核酸酶结构域的晶体结构也已与AMP和聚(A)DNA结合确定。产生的结构表明涉及五价磷酸酯过渡的分子降烯基化酶机理。

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