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Ultrastable pRNA hexameric ring gearing hexameric phi29 DNA-packaging motor by revolving without rotating and coiling

机译:通过旋转而不旋转和盘绕的超稳定pRNA六聚环齿轮六聚phi29 DNA包装电机

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摘要

Biomotors have previously been classified into two categories: linear and rotational motors. It has long been popularly believed that viral DNA packaging motors are rotation motors. We have recently found that the DNA-packaging motor of bacteriophage phi29 uses a third mechanism: revolution without rotation. phi29 motor consists of three-coaxial rings of hexameric RNA, a hexameric ATPase, and a dodecameric channel. The motor uses six ATP to revolve one helical turn of dsDNA around the hexameric ring of ATPase gp16. Each dodecameric segment tilts at a 30 degrees-angle and runs anti-parallel to the dsDNA helix to facilitate translation in one direction. The negatively charged phosphate backbone interacts with four positively charged lysine rings, resulting in four steps of transition. This review will discuss how the novel pRNA meets motor requirements for translocation concerning structure, stoichiometry, and thermostability; how pRNA studies have led to the generation of the concept of RNA nanotechnology; and how pRNA is fabricated into nanoparticles to deliver siRNA, miRNA, and ribozymes to cancer and virus-infected cells.
机译:以前,生物电动机已分为两类:线性电动机和旋转电动机。长期以来,人们普遍认为病毒DNA包装马达是旋转马达。我们最近发现,噬菌体phi29的DNA包装电机采用了第三种机制:无旋转的旋转。 phi29电机由六聚体RNA,六聚体ATPase和十二聚体通道的三同轴环组成。该马达使用六个ATP使dsDNA绕螺旋旋转一圈,旋转ATPase gp16的六聚环。每个十二聚体片段以30度角倾斜,并与dsDNA螺旋反平行延伸,以促进在一个方向上的翻译。带负电荷的磷酸骨架与四个带正电荷的赖氨酸环相互作用,导致四个过渡步骤。这篇综述将讨论新型pRNA如何满足有关结构,化学计量和热稳定性的转运要求。 pRNA研究如何导致RNA纳米技术概念的产生;以及如何将pRNA制成纳米颗粒,以将siRNA,miRNA和核酶传递给癌症和病毒感染的细胞。

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