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Unraveling helicase mechanisms one molecule at a time

机译:一次解开解旋酶机制一个分子

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摘要

Recent years have seen an increasing number of biological applications of single molecule techniques, evolving from a proof of principle type to the more sophisticated studies. Here we compare the capabilities and limitations of different single molecule techniques in studying the activities of helicases. Helicases share a common catalytic activity but present a high variability in kinetic and phenomenological behavior, making their studies ideal in exemplifying the use of the new single molecule techniques to answer biological questions. Unexpected phenomena have also been observed from individual molecules suggesting extended or alternative functionality of helicases in vivo.
机译:近年来,单分子技术的生物学应用越来越多,从原理类型的证明发展到更为复杂的研究。在这里,我们比较了不同的单分子技术在研究解旋酶活性方面的能力和局限性。解旋酶具有共同的催化活性,但在动力学和现象学行为方面表现出高度的可变性,使其研究成为举例说明使用新的单分子技术回答生物学问题的理想方法。还从单个分子中观察到意外现象,表明解旋酶在体内具有扩展或替代的功能。

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