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Allosteric Modulation of Intrinsically Disordered Proteins

机译:本质无序蛋白的变构调节

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The allosteric property of globular proteins is applauded as their intrinsic ability to regulate distant sites, and this property further plays a critical role in a wide variety of cellular regulatory mechanisms. Recent advancements and studies have revealed the manifestation of allostery in intrinsically disordered proteins or regions as allosteric sites present within or mediated by IDP/IDRs facilitates the signaling interactions for various biological mechanisms which would otherwise be impossible for globular proteins to regulate. This thematic review has highlighted the biological outcomes that can be achieved by the mechanism of allosteric regulation of intrinsically disordered proteins or regions. The similar mechanism has been implemented on Adenovirus 5 early region 1A and tumor apoptosis protein p53 in correspondence with other partners in binary and ternary complexes, which are the subject of the current review. Both these proteins regulate once they bind to their partners, consequently, forming either a binary or a ternary complex. Allosteric regulation by IDPs is currently a subject undergoing intense study, and the ongoing research work will ensure a better understanding of precision and efficiency of cellular regulation by them. Allosteric regulation mechanism can also be researched by intrinsically disordered protein-specific force field.
机译:球状蛋白的变构特性被鼓掌为调节距离位点的内在能力,并且该性质进一步在各种细胞调节机制中发挥着关键作用。最近的进步和研究揭示了本质上无序的蛋白质或地区的簇生的表现,因为IDP / IDRS内部存在的变构位点有助于各种生物机制的信号相互作用,否则是不可能对球状蛋白质调节的。该主题综述突出了本质上无序蛋白或地区的构​​建调控机制可以实现的生物学结果。在腺病毒5早期区域1A和肿瘤凋亡蛋白P53上实施了类似的机制,其与二元复合物中的其他合作伙伴相对应,这是当前审查的主题。两种蛋白质后,一旦它们与其合作伙伴结合,因此,形成二元或三元复合物。 IDPS的变构规则目前是一个受试者正在进行强烈的研究,正在进行的研究工作将确保更好地了解他们的细胞监管的精度和效率。颠覆性调节机制也可以通过本质无序的蛋白质特异性力场进行研究。

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