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Authentic interdomain communication in an RNA helicase reconstituted by expressed protein ligation of two helicase domains

机译:通过两个解旋酶结构域的表达蛋白连接重建的RNA解旋酶中的真实域间通讯

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摘要

RNA helicases mediate structural rearrangements of RNA or RNA-protein complexes at the expense of ATP hydrolysis. Members of the DEAD box helicase family consist of two flexibly connected helicase domains. They share nine conserved sequence motifs that are involved in nucleotide binding and hydrolysis, RNA binding, and helicase activity. Most of these motifs line the cleft between the two helicase domains, and extensive communication between them is required for RNA unwinding. The two helicase domains of the Bacillus subtilis RNA helicase YxiN were produced separately as intein fusions, and a functional RNA helicase was generated by expressed protein ligation. The ligated helicase binds adenine nucleotides with very similar affinities to the wild-type protein. Importantly, its intrinsically low ATPase activity is stimulated by RNA, and the Michaelis-Menten parameters are similar to those of the wild-type. Finally, ligated YxiN unwinds a minimal RNA substrate to an extent comparable to that of the wild-type helicase, confirming authentic interdomain communication.
机译:RNA解旋酶介导RNA或RNA-蛋白质复合物的结构重排,但以ATP水解为代价。 DEAD盒解旋酶家族的成员由两个灵活连接的解旋酶域组成。它们共有9个保守的序列基序,涉及核苷酸结合和水解,RNA结合和解旋酶活性。这些基序中的大多数都位于两个解旋酶结构域之间的缝隙中,RNA展开需要它们之间的广泛交流。枯草芽孢杆菌RNA解旋酶YxiN的两个解旋酶结构域分别作为内含肽融合蛋白产生,通过表达的蛋白连接产生功能性RNA解旋酶。连接的解旋酶以与野生型蛋白非常相似的亲和力结合腺嘌呤核苷酸。重要的是,其固有的低ATPase活性受RNA刺激,Michaelis-Menten参数与野生型相似。最后,连接的YxiN展开最小的RNA底物,其程度与野生型解旋酶相当,从而证实了可靠的域间通讯。

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