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Structure-based cleavage mechanism of Thermus thermophilus Argonaute DNA guide strand-mediated DNA target cleavage

机译:嗜热栖热菌Argonaute DNA导向链介导的DNA靶标裂解的基于结构的裂解机理

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摘要

We report on crystal structures of ternary Thermus thermophilus Argonaute (TtAgo) complexes with 5′-phosphorylated guide DNA and a series of DNA targets. These ternary complex structures of cleavage-incompatible, cleavage-compatible, and postcleavage states solved at improved resolution up to 2.2 Å have provided molecular insights into the orchestrated positioning of catalytic residues, a pair of Mg2+ cations, and the putative water nucleophile positioned for in-line attack on the cleavable phosphate for TtAgo-mediated target cleavage by a RNase H-type mechanism. In addition, these ternary complex structures have provided insights into protein and DNA conformational changes that facilitate transition between cleavage-incompatible and cleavage-compatible states, including the role of a Glu finger in generating a cleavage-competent catalytic Asp-Glu-Asp-Asp tetrad. Following cleavage, the seed segment forms a stable duplex with the complementary segment of the target strand.
机译:我们报告与5'-磷酸化的指导DNA和一系列DNA靶的三元嗜热栖热Argonaute(TtAgo)配合物的晶体结构。这些裂解不相容,裂解相容和裂解后状态的三元复合结构,分辨率提高至2.2Å,为分子对催化残基(一对Mg 2 + 阳离子)的位置进行了分子定位。 ,并且推定的水亲核试剂位于通过RNase H型机制对TtAgo介导的靶标裂解的可裂解磷酸进行在线攻击的位置。此外,这些三元复合结构还提供了蛋白质和DNA构象变化的见解,这些变化促进了裂解不相容状态和裂解相容状态之间的过渡,包括Glu指在产生裂解型催化性Asp-Glu-Asp-Asp中的作用。四元组切割后,种子区段与靶链的互补区段形成稳定的双链体。

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