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Slow molecular recognition by RNA

机译:慢慢分子识别RNA

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Molecular recognition is central to biological processes, function, and specificity. Proteins associate with ligands with a wide range of association rate constants, with maximal values matching the theoretical limit set by the rate of diffusional collision. As less is known about RNA association, we compiled association rate constants for all RNA/ligand complexes that we could find in the literature. Like proteins, RNAs exhibit a wide range of association rate constants. However, the fastest RNA association rates are considerably slower than those of the fastest protein associations and fall well below the diffusional limit. The apparently general observation of slow association with RNAs has implications for evolution and for modern-day biology. Our compilation highlights a quantitative molecular property that can contribute to biological understanding and underscores our need to develop a deeper physical understanding of molecular recognition events.
机译:分子识别是生物过程,功能和特异性的核心。 蛋白质与具有多种关联速率常数的配体相关联,最大值与漫射碰撞速率设定的理论限制匹配。 对于RNA协会的较少,我们编制了我们在文献中可以找到的所有RNA /配体复合物的结合率常数。 像蛋白质一样,RNA表现出各种关联率常数。 然而,最快的RNA关联率比最快的蛋白质关联的速率相当慢,并且远低于扩散极限。 与RNA缓慢关联的显然普遍观察对演化和现代生物学的影响有影响。 我们的汇编突出了可以促进生物理解和强调我们对分子识别事件的更深入了解的需求的量化分子特性。

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