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A novel dimerization motif in the C-terminal domain of the Thermus thermophilus DEAD box helicase Hera confers substantial flexibility

机译:嗜热栖热菌DEAD盒解旋酶Hera的C末端结构域中的新型二聚化基序赋予了极大的灵活性

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摘要

DEAD box helicases are involved in nearly all aspects of RNA metabolism. They share a common helicase core, and may comprise additional domains that contribute to RNA binding. The Thermus thermophilus helicase Hera is the first dimeric DEAD box helicase. Crystal structures of Hera fragments reveal a bipartite C-terminal domain with a novel dimerization motif and an RNA-binding module. We provide a first glimpse on the additional RNA-binding module outside the Hera helicase core. The dimerization and RNA-binding domains are connected to the C-terminal RecA domain by a hinge region that confers exceptional flexibility onto the helicase, allowing for different juxtapositions of the RecA-domains in the dimer. Combination of the previously determined N-terminal Hera structure with the C-terminal Hera structures allows generation of a model for the entire Hera dimer, where two helicase cores can work in conjunction on large RNA substrates
机译:DEAD盒解旋酶几乎涉及RNA代谢的所有方面。它们共享一个共同的解旋酶核心,并且可能包含有助于RNA结合的其他域。嗜热栖热菌解旋酶Hera是第一个二聚体DEAD盒解旋酶。 Hera片段的晶体结构揭示了一个具有新二聚化基序和RNA结合模块的二分体C末端结构域。我们提供了Hera解旋酶核心以外的其他RNA结合模块的第一印象。二聚化和RNA结合结构域通过铰链区与C端RecA结构域相连,该铰链区赋予解旋酶以极大的灵活性,从而允许二聚体中RecA结构域的不同并置。先前确定的N端Hera结构与C端Hera结构的结合可生成整个Hera二聚体的模型,其中两个解旋酶核心可在大型RNA底物上协同工作

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