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Design of protein switches based on an ensemble model of allostery

机译:基于变构整体模型的蛋白质开关设计

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摘要

Switchable proteins that can be regulated through exogenous or endogenous inputs have a broad range of biotechnological and biomedical applications. Here we describe the design of switchable enzymes based on an ensemble allosteric model. First, we insert an enzyme domain into an effector-binding domain such that both domains remained functionally intact. Second, we induce the fusion to behave as a switch through the introduction of conditional conformational flexibility designed to increase the conformational entropy of the enzyme domain in a temperature- or pH-dependent fashion. We confirm the switching behaviour in vitro and in vivo. Structural and thermodynamic studies support the hypothesis that switching result from an increase in conformational entropy of the enzyme domain in the absence of effector. These results support the ensemble model of allostery and embody a strategy for the design of protein switches.
机译:可以通过外源或内源输入进行调节的可转换蛋白质具有广泛的生物技术和生物医学应用。在这里,我们描述了基于整体变构模型的可转换酶的设计。首先,我们将酶结构域插入效应子结合结构域,以使两个结构域都保持功能完整。其次,我们通过引入条件构象柔韧性来诱导融合物充当开关,该条件构象柔韧性旨在以温度或pH依赖性方式增加酶结构域的构象熵。我们证实了体外和体内的转换行为。结构和热力学研究支持以下假设:转换是由于在没有效应子的情况下酶结构域的构象熵增加所致。这些结果支持变构的整体模型,并体现了蛋白质开关设计的策略。

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