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Structural Basis of m(7)GpppG Binding to Poly(A)-Specific Ribonuclease

机译:m(7)GpppG结合Poly(A)特异性核糖核酸酶的结构基础

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摘要

Poly(A)-specific ribonuclease (PARN) is a homodimeric, processive, and cap-interacting 3' exoribonuclease that efficiently degrades eukaryotic mRNA poly(A) tails. The crystal structure of a C-terminally truncated PARN in complex with m(7) GpppG reveals that, in one subunit, m(7) GpppG binds to a cavity formed by the RRM domain and the nuclease domain, whereas in the other subunit, it binds almost exclusively to the RRM domain. Importantly, our structural and competition data show that the cap-binding site overlaps with the active site in the nuclease domain. Mutational analysis demonstrates that residues involved in m(7)G recognition are crucial for cap-stimulated deadenylation activity, and those involved in both cap and poly(A) binding are important for catalysis. A modeled PARN, which shows that the RRM domain from one subunit and the R3H domain from the other subunit enclose the active site, provides a structural foundation for further studies to elucidate the mechanism of PARN-mediated deadenylation.
机译:聚(A)特异性核糖核酸酶(PARN)是同二聚体,进行性和帽互动3'exoribonuclease,有效地降解真核mRNA聚(A)尾巴。与m(7)GpppG复杂的C末端截短的PARN的晶体结构表明,在一个亚基中,m(7)GpppG结合由RRM域和核酸酶域形成的空腔,而在另一个亚基中,它几乎只绑定到RRM域。重要的是,我们的结构和竞争数据表明,帽结合位点与核酸酶结构域中的活性位点重叠。突变分析表明,参与m(7)G识别的残基对于帽刺激的去烯基化活性至关重要,而参与帽和poly(A)结合的残基对于催化也很重要。建模的PARN显示来自一个亚基的RRM结构域和来自另一亚基的R3H结构域包围了活性位点,为进一步研究阐明PARN介导的腺苷酸化机制提供了结构基础。

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