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本文引用的文献

1
Enzymatic and transcriptional regulation of the cytoplasmic acetyl-CoA hydrolase ACOT12.细胞质乙酰辅酶 A 水解酶 ACOT12 的酶促和转录调控。
J Lipid Res. 2013 Aug;54(8):2049-2059. doi: 10.1194/jlr.M030163. Epub 2013 May 24.
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CAVER 3.0: a tool for the analysis of transport pathways in dynamic protein structures.CAVER 3.0:用于分析动态蛋白质结构中输运途径的工具。
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Functional characterization of thioesterase superfamily member 1/Acyl-CoA thioesterase 11: implications for metabolic regulation.硫酯酶超家族成员 1/酰基辅酶 A 硫酯酶 11 的功能特征:对代谢调节的影响。
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Towards automated crystallographic structure refinement with phenix.refine.利用phenix.refine实现自动化晶体学结构精修
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Ligand-induced conformational changes within a hexameric Acyl-CoA thioesterase.配体诱导六聚体酰基辅酶 A 硫酯酶的构象变化。
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Comparative structural analysis of lipid binding START domains.脂质结合 START 结构域的比较结构分析。
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ThYme: a database for thioester-active enzymes.胸腺:硫酯活性酶数据库。
Nucleic Acids Res. 2011 Jan;39(Database issue):D342-6. doi: 10.1093/nar/gkq1072. Epub 2010 Nov 2.
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Thioesterases: a new perspective based on their primary and tertiary structures.硫酯酶:基于其一级和三级结构的新视角。
Protein Sci. 2010 Jul;19(7):1281-95. doi: 10.1002/pro.417.
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Features and development of Coot.Coot的特点与发展
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XDS.XDS.(这个词如果没有更多背景信息,很难准确翻译出更有意义的内容,直接保留原文是一种处理方式,或者音译为“克斯达斯”之类,但感觉都不太符合常规翻译场景,你可以补充更多关于这个词的信息以便我更准确翻译 )
Acta Crystallogr D Biol Crystallogr. 2010 Feb;66(Pt 2):125-32. doi: 10.1107/S0907444909047337. Epub 2010 Jan 22.

人类乙酰辅酶A硫酯酶12调控的结构基础及其与类固醇生成急性调节蛋白相关脂质转运(START)结构域的相互作用

Structural basis for regulation of the human acetyl-CoA thioesterase 12 and interactions with the steroidogenic acute regulatory protein-related lipid transfer (START) domain.

作者信息

Swarbrick Crystall M D, Roman Noelia, Cowieson Nathan, Patterson Edward I, Nanson Jeffrey, Siponen Marina I, Berglund Helena, Lehtiö Lari, Forwood Jade K

机构信息

From the School of Biomedical Sciences, Charles Sturt University, Wagga Wagga, New South Wales 2678, Australia.

the Australian Synchrotron, Clayton, Victoria 3168, Australia, and.

出版信息

J Biol Chem. 2014 Aug 29;289(35):24263-74. doi: 10.1074/jbc.M114.589408. Epub 2014 Jul 7.

DOI:10.1074/jbc.M114.589408
PMID:25002576
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4148856/
Abstract

Acetyl-CoA plays a fundamental role in cell signaling and metabolic pathways, with its cellular levels tightly controlled through reciprocal regulation of enzymes that mediate its synthesis and catabolism. ACOT12, the primary acetyl-CoA thioesterase in the liver of human, mouse, and rat, is responsible for cleavage of the thioester bond within acetyl-CoA, producing acetate and coenzyme A for a range of cellular processes. The enzyme is regulated by ADP and ATP, which is believed to be mediated through the ligand-induced oligomerization of the thioesterase domains, whereby ATP induces active dimers and tetramers, whereas apo- and ADP-bound ACOT12 are monomeric and inactive. Here, using a range of structural and biophysical techniques, it is demonstrated that ACOT12 is a trimer rather than a tetramer and that neither ADP nor ATP exert their regulatory effects by altering the oligomeric status of the enzyme. Rather, the binding site and mechanism of ADP regulation have been determined to occur through two novel regulatory regions, one involving a large loop that links the thioesterase domains (Phe(154)-Thr(178)), defined here as RegLoop1, and a second region involving the C terminus of thioesterase domain 2 (Gln(304)-Gly(326)), designated RegLoop2. Mutagenesis confirmed that Arg(312) and Arg(313) are crucial for this mode of regulation, and novel interactions with the START domain are presented together with insights into domain swapping within eukaryotic thioesterases for substrate recognition. In summary, these experiments provide the first structural insights into the regulation of this enzyme family, revealing an alternate hypothesis likely to be conserved throughout evolution.

摘要

乙酰辅酶A在细胞信号传导和代谢途径中发挥着重要作用,其细胞水平通过介导其合成和分解代谢的酶的相互调节而受到严格控制。ACOT12是人类、小鼠和大鼠肝脏中的主要乙酰辅酶A硫酯酶,负责裂解乙酰辅酶A中的硫酯键,产生乙酸盐和辅酶A用于一系列细胞过程。该酶受ADP和ATP调节,据信这是通过硫酯酶结构域的配体诱导寡聚化介导的,其中ATP诱导活性二聚体和四聚体,而无apo和结合ADP的ACOT12是单体且无活性。在这里,使用一系列结构和生物物理技术,证明ACOT12是三聚体而非四聚体,并且ADP和ATP都不会通过改变酶的寡聚状态来发挥其调节作用。相反,已确定ADP调节的结合位点和机制是通过两个新的调节区域发生的,一个涉及连接硫酯酶结构域的大环(Phe(154)-Thr(178)),在此定义为RegLoop1,另一个区域涉及硫酯酶结构域2的C末端(Gln(304)-Gly(326)),指定为RegLoop2。诱变证实Arg(312)和Arg(313)对于这种调节模式至关重要,并展示了与START结构域的新相互作用以及对真核硫酯酶内结构域交换以识别底物的见解。总之,这些实验提供了对该酶家族调节的首次结构见解,揭示了一个可能在整个进化过程中保守的替代假说。