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Discovery of a new motion mechanism of biomotors similar to the earthrevolving around the sun without rotation

机译:发现一种类似于地球的生物马达的新运动机制绕着太阳旋转而没有旋转

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摘要

Biomotors have been classified into linear and rotational motors. For 35 years, it has been popularly believed that viral dsDNA-packaging apparatuses are pentameric rotation motors. Recently, a third class of hexameric motor has been found in bacteriophage phi29 that utilizes a mechanism of revolution without rotation, friction, coiling, or torque. This review addresses how packaging motors control dsDNA one-way traffic; how four electropositive layers in the channel interact with the electronegative phosphate backbone to generate four steps in translocating one dsDNA helix; how motors resolve the mismatch between 10.5 bases and 12 connector subunits per cycle of revolution; and how ATP regulates sequential action of motor ATPase. Since motors with all number of subunits can utilize the revolution mechanism, this finding helps resolve puzzles and debates concerning the oligomeric nature of packaging motors in many phage systems. This revolution mechanism helps to solve the undesirable dsDNA supercoiling issue involved in rotation.
机译:生物马达已经被分类为线性马达和旋转马达。 35年来,人们普遍认为病毒dsDNA包装设备是五聚体旋转马达。最近,在噬菌体phi29中发现了第三类六聚体马达,其利用旋转机制而没有旋转,摩擦,盘绕或转矩。这篇综述阐述了包装电机如何控制dsDNA单向流量。通道中的四个正电层如何与负电性磷酸骨架相互作用,从而产生四个步骤来转移一个dsDNA螺旋;电机如何解决每个旋转周期10.5个基座和12个连接器子单元之间的不匹配;以及ATP如何调节运动性ATPase的顺序作用。由于具有所有子单元的电动机都可以利用旋转机制,因此这一发现有助于解决有关许多噬菌体系统中包装电动机的低聚性质的困惑和争论。这种革命性的机制有助于解决旋转中不希望出现的dsDNA超螺旋问题。

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