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Crystal Structures of Human SIRT3 Displaying Substrate-induced Conformational Changes

机译:人类SIRT3的晶体结构显示底物引起的构象变化

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摘要

SIRT3 is a major mitochondrial NAD+-dependent protein deacetylase playing important roles in regulating mitochondrial metabolism and energy production and has been linked to the beneficial effects of exercise and caloric restriction. SIRT3 is emerging as a potential therapeutic target to treat metabolic and neurological diseases. We report the first sets of crystal structures of human SIRT3, an apo-structure with no substrate, a structure with a peptide containing acetyl lysine of its natural substrate acetyl-CoA synthetase 2, a reaction intermediate structure trapped by a thioacetyl peptide, and a structure with the dethioacetylated peptide bound. These structures provide insights into the conformational changes induced by the two substrates required for the reaction, the acetylated substrate peptide and NAD+. In addition, the binding study by isothermal titration calorimetry suggests that the acetylated peptide is the first substrate to bind to SIRT3, before NAD+. These structures and biophysical studies provide key insight into the structural and functional relationship of the SIRT3 deacetylation activity.
机译:SIRT3是主要的线粒体NAD + 依赖性蛋白脱乙酰基酶,在调节线粒体的代谢和能量产生中起重要作用,并与运动和热量限制的有益作用有关。 SIRT3逐渐成为治疗代谢和神经疾病的潜在治疗靶标。我们报告了人类SIRT3的第一组晶体结构,无底物的脱辅基结构,具有天然底物乙酰辅酶A合成酶2的含乙酰赖氨酸的肽的结构,被硫代乙酰肽捕获的反应中间结构以及结构与脱硫乙酰化肽结合。这些结构提供了由反应所需的两种底物(乙酰化底物肽和NAD + )诱导的构象变化的见解。另外,通过等温滴定量热法进行的结合研究表明,在NAD + 之前,乙酰化肽是第一个与SIRT3结合的底物。这些结构和生物物理研究为SIRT3脱乙酰活性的结构和功能关系提供了重要的见识。

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