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首页> 外文期刊>The Journal of biological chemistry >Binding of G-quadruplexes to the N-terminal Recognition Domain of the RNA Helicase Associated with AU-rich Element (RHAU)
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Binding of G-quadruplexes to the N-terminal Recognition Domain of the RNA Helicase Associated with AU-rich Element (RHAU)

机译:G-quadruperes与与Au-Rich元素(Rhau)相关的RNA螺旋酶的N-末端识别结构域的结合

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摘要

Polynucleotides containing consecutive tracts of guanines can adopt an intramolecular G-quadruplex structure where multiple planar tetrads of hydrogen-bound guanines stack on top of each other. Remodeling of G-quadruplexes impacts numerous aspects of nucleotide biology including transcriptional and translational control. RNA helicase associated with AU-rich element (RHAU), a member of the ATP-dependent DEX(H/D) family of RNA helicases, has been established as a major cellular quadruplex resolvase. RHAU contains a core helicase domain responsible for ATP binding/hydrolysis/helicase activity and is flanked on either side by N- and C-terminal extensions. The N-terminal extension is required for quadruplex recognition, and we have previously demonstrated complex formation between this domain and a quadruplex from human telomerase RNA. Here we used an integrated approach that includes small angle x-ray scattering, nuclear magnetic resonance spectroscopy, circular dichroism, and dynamic light scattering methods to demonstrate the recognition of G-quadruplexes by the N-terminal domain of RHAU. Based on our results, we conclude that (i) quadruplex from the human telomerase RNA and its DNA analog both adopt a disc shape in solution, (ii) RHAU53–105 adopts a defined and extended conformation in solution, and (iii) the N-terminal domain mediates an interaction with a guanine tetrad face of quadruplexes. Together, these data form the foundation for understanding the recognition of quadruplexes by the N-terminal domain of RHAU.
机译:含有连续的舌苔的多核苷酸可以采用分子内的G-quadflex结构,其中多个平坦的氢结合的鸟嘌呤堆叠在彼此之上。 G-Quadruplees的重塑会影响核苷酸生物学的许多方面,包括转录和平移控制。已经建立了与富含Au富含元素(Rhau)的RNA直升酶,ATP依赖性DEX(H / D)的RNA螺旋酶系列的成员,作为主要的细胞Quadrupleats酶。 Rhau含有负责ATP粘合/水解/螺旋酶活性的核心旋光域结构域,并且在任一侧通过N-和C末端延伸部分。四末端扩展是四逆转录识别所必需的,并且我们之前已经在该结构域和来自人端粒酶RNA的四溴双链之间表现出复杂的形成。在这里,我们使用了一种综合方法,该综合方法包括小角度X射线散射,核磁共振光谱,圆形二色性和动态光散射方法,以证明RAAU的N-末端域的识别G-quadrepses。基于我们的结果,我们得出结论(i)从人端粒酶RNA的Quadreplex,其DNA类似物在溶液中采用圆盘形状,(ii)rhau53-105采用溶液中的定义和延伸构象,(iii) - 脊髓域介导与四翻石的鸟嘌呤四面面的相互作用。这些数据在一起形成了理解RAAA的N末端域的识别Quadrupleases的基础。

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