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Gears-In-Motion: The Interplay of WW and PPIase Domains in Pin1

机译:运动中的齿轮:Pin1中的WW和PPIase域的相互作用

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摘要

Pin1 belongs to the family of the peptidyl-prolyl cis-trans isomerase (PPIase), which is a class of enzymes that catalyze the cis/trans isomerization of the Proline residue. Pin1 is unique and only catalyzes the phosphorylated Serine/Threonine-Proline (S/T-P) motifs of a subset of proteins. Since the discovery of Pin1 as a key protein in cell cycle regulation, it has been implicated in numerous diseases, ranging from cancer to neurodegenerative diseases. The main features of Pin1 lies in its two main domains: the WW (two conserved tryptophan) domain and the PPIase domain. Despite extensive studies trying to understand the mechanisms of Pin1 functions, how these two domains contribute to the biological roles of Pin1 in cellular signaling requires more investigations. The WW domain of Pin1 is known to have a higher affinity to its substrate than that of the PPIase domain. Yet, the WW domain seems to prefer the trans configuration of phosphorylated S/T-P motif, while the PPIase catalyzes the cis to trans isomerasion. Such contradicting information has generated much confusion as to the actual mechanism of Pin1 function. In addition, dynamic allostery has been suggested to be important for Pin1 function. Henceforth, in this review, we will be looking at the progress made in understanding the function of Pin1, and how these understandings can aid us in overcoming the diseases implicated by Pin1 such as cancer during drug development.
机译:Pin1属于肽基-脯氨酰基顺反异构酶(PPIase)家族,PPIase是一类催化脯氨酸残基的顺/反异构化的酶。 Pin1是唯一的,并且仅催化一部分蛋白质的磷酸化丝氨酸/苏氨酸-脯氨酸(S / T-P)基序。自从发现Pin1作为细胞周期调控的关键蛋白以来,它已涉及多种疾病,从癌症到神经退行性疾病。 Pin1的主要特征在于其两个主要域:WW(两个保守的色氨酸)域和PPIase域。尽管进行了大量的研究试图了解Pin1功能的机制,但是这两个域如何在细胞信号转导中发挥Pin1的生物学作用仍需要更多的研究。已知Pin1的WW结构域与其底物的亲和力高于PPIase结构域的亲和力。然而,WW结构域似乎更倾向于磷酸化的S / T-P基序的反式构型,而PPIase则催化顺式至反式异构。这种矛盾的信息在Pin1功能的实际机制上引起了很大的混乱。此外,动态变构被认为对Pin1功能很重要。从今以后,在这篇综述中,我们将探讨在了解Pin1的功能方面取得的进展,以及这些理解如何帮助我们克服Pin1所牵涉的疾病,例如药物开发过程中的癌症。

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