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High degree of coordination and division of labor among subunits in a homomeric ring ATPase

机译:同源环ATPase中亚基之间的高度协调和分工

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Ring NTPases of the ASCE superfamily perform a variety of cellular functions. An important question about the operation of these molecular machines is how the ring subunits coordinate their chemical and mechanical transitions. Here, we present a comprehensive mechanochemical characterization of a homomeric ring ATPase - the bacteriophage 29 packaging motor - a homopentamer that translocates double-stranded DNA in cycles composed of alternating dwells and bursts. We use high-resolution optical tweezers to determine the effect of nucleotide analogs on the cycle. We find that ATP hydrolysis occurs sequentially during the burst and that ADP release is interlaced with ATP binding during the dwell, revealing a high degree of coordination among ring subunits. Moreover, we show that the motor displays an unexpected division of labor: although all subunits of the homopentamer bind and hydrolyze ATP during each cycle, only four participate in translocation, whereas the remaining subunit plays an ATP-dependent regulatory role.
机译:ASCE超家族的环状NTPase具有多种细胞功能。关于这些分子机器的操作的一个重要问题是环亚基如何协调其化学和机械转变。在这里,我们介绍了同型环ATPase-噬菌体29包装马达-一种在交替的驻留和爆发组成的循环中转移双链DNA的均戊烯的全面机械化学表征。我们使用高分辨率的光镊来确定核苷酸类似物对循环的影响。我们发现,ATP水解在爆裂过程中顺序发生,并且ADP释放在驻留过程中与ATP结合交错,从而揭示了环亚基之间的高度协调性。此外,我们显示出马达表现出意想不到的工作分工:尽管在每个循环中均五聚体的所有亚基都结合并水解ATP,但只有四个参与易位,而其余亚基则具有ATP依赖性调节作用。

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