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首页> 外文期刊>Physical review letters >Allosteric Control through Mechanical Tension
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Allosteric Control through Mechanical Tension

机译:通过机械张力进行变构控制

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摘要

Conformational changes of proteins modulate their function. In allosteric control, the conformational change is induced by the binding of a signaling molecule. Here we insert a "molecular spring" on the enzyme guanylate kinase, to control the conformation of this protein. The stiffness of the spring can be varied externally, which allows one to exert a controlled mechanical tension between the two points on the protein's surface where the spring is attached. We show that by applying and releasing the tension we can reversibly turn the enzyme off and on.
机译:蛋白质的构象变化调节其功能。在变构控制中,构象变化是由信号分子的结合诱导的。在这里,我们在鸟苷酸激酶上插入一个“分子弹簧”,以控制该蛋白的构象。弹簧的刚度可以从外部改变,这可以使弹簧在附着弹簧的蛋白质表面的两个点之间施加受控的机械张力。我们表明,通过施加和释放张力,我们可以可逆地打开和关闭酶。

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