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Carboxamide SIRT1 inhibitors block DBC1 binding via an acetylation- independent mechanism

机译:羧酰胺SIRT1抑制剂通过非乙酰化机制阻断DBC1结合

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SIRT1 is an NAD+-dependent deacetylase that counteracts multiple disease states associated with aging and may underlie some of the health benefits of calorie restriction. Understanding how SIRT1 is regulated in vivo could therefore lead to new strategies to treat age-related diseases. SIRT1 forms a stable complex with DBC1, an endogenous inhibitor. Little is known regarding the biochemical nature of SIRT1-DBC1 complex formation, how it is regulated and whether or not it is possible to block this interaction pharmacologically. In this study, we show that critical residues within the catalytic core of SIRT1 mediate binding to DBC1 via its N-terminal region, and that several carboxamide SIRT1 inhibitors, including EX- 527, can completely block this interaction. We identify two acetylation sites on DBC1 that regulate its ability to bind SIRT1 and suppress its activity. Furthermore, we show that DBC1 itself is a substrate for SIRT1. Surprisingly, the effect of EX-527 on SIRT1-DBC1 binding is independent of DBC1 acetylation. Together, these data show that protein acetylation serves as an endogenous regulatory mechanism for SIRT1-DBC1 binding and illuminate a new path to developing small-molecule modulators of SIRT1.
机译:SIRT1是一种NAD +依赖性脱乙酰基酶,可以抵消与衰老相关的多种疾病,并且可能是限制卡路里对健康的好处。因此,了解SIRT1在体内的调控方式可能会导致治疗与年龄有关的疾病的新策略。 SIRT1与内源性抑制剂DBC1形成稳定的复合物。关于SIRT1-DBC1复合物形成的生化性质,如何调控以及是否有可能在药理学上阻止这种相互作用,人们所知甚少。在这项研究中,我们表明SIRT1催化核心内的关键残基通过其N端区域介导与DBC1的结合,并且几种羧酰胺SIRT1抑制剂(包括EX-527)可以完全阻断这种相互作用。我们在DBC1上确定了两个乙酰化位点,它们调节其结合SIRT1的能力并抑制其活性。此外,我们显示DBC1本身是SIRT1的底物。出人意料的是,EX-527对SIRT1-DBC1结合的作用与DBC1乙酰化无关。总之,这些数据表明蛋白质乙酰化是SIRT1-DBC1结合的内源性调节机制,为开发SIRT1的小分子调节剂开辟了一条新途径。

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