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肉碱代谢中III型辅酶A转移酶CaiB的晶体结构。

Crystal structure of CaiB, a type-III CoA transferase in carnitine metabolism.

作者信息

Stenmark Pål, Gurmu Daniel, Nordlund Pär

机构信息

Department of Biochemistry and Biophysics, Stockholm University, Roslagstullsbacken 15, Albanova University Center, SE-10691 Stockholm, Sweden.

出版信息

Biochemistry. 2004 Nov 9;43(44):13996-4003. doi: 10.1021/bi048481c.

Abstract

Carnitine is an important molecule in human metabolism, mainly because of its role in the transport of long-chain fatty acids across the inner mitochondrial membrane. Escherichia coli uses carnitine as a terminal electron acceptor during anaerobic metabolism. Bacteria present in our large intestine break down carnitine that is not absorbed in the small intestine. One part of this catabolic pathway is reversible and can be utilized for bioproduction of large amounts of stereochemically pure L-carnitine, which is used medically for the treatment of a variety of human diseases. Here, we present the crystal structure of the E. coli protein CaiB, which is a member of the recently identified type-III coenzyme A (CoA) transferase family and catalyzes the transfer of the CoA moiety between gamma-butyrobetaine-CoA and carnitine forming carnityl-CoA and gamma-butyrobetaine. This is the first protein from the carnitine metabolic pathway to be structurally characterized. The structure of CaiB reveals a spectacular fold where two monomers are interlaced to form an interlocked dimer. A molecule of the crystallization buffer bis-(2-hydroxyethyl)imino-tris(hydroxymethyl)methane (bis-tris) is bound in a large pocket located primarily in the small domain, and we propose that this pocket constitutes the binding site for both substrate moieties participating in the CaiB transfer reaction. The binding of CoA to CaiB induces a domain movement that closes the active site of the protein. This is the first observation of a domain movement in the type-III CoA transferase family and can play an important role in coupling substrate binding to initiation of the catalytic reaction.

摘要

肉碱是人体新陈代谢中的一种重要分子,主要是因为它在长链脂肪酸穿过线粒体内膜的运输过程中发挥作用。大肠杆菌在厌氧代谢过程中把肉碱用作末端电子受体。我们大肠内存在的细菌会分解在小肠中未被吸收的肉碱。这条分解代谢途径的一部分是可逆的,可用于生物生产大量立体化学纯的L-肉碱,L-肉碱在医学上用于治疗多种人类疾病。在此,我们展示了大肠杆菌蛋白CaiB的晶体结构,它是最近鉴定出的III型辅酶A(CoA)转移酶家族的成员,催化CoA部分在γ-丁酸甜菜碱-CoA和肉碱之间转移,形成肉碱-CoA和γ-丁酸甜菜碱。这是肉碱代谢途径中首个得到结构表征的蛋白质。CaiB的结构呈现出一种引人注目的折叠,两个单体相互交织形成一个互锁的二聚体。结晶缓冲液双(2-羟乙基)亚氨基三(羟甲基)甲烷(双三羟甲基氨基甲烷,bis-tris)的一个分子结合在一个主要位于小结构域的大口袋中,我们推测这个口袋构成了参与CaiB转移反应的两个底物部分的结合位点。CoA与CaiB的结合会诱导结构域移动,从而关闭蛋白质的活性位点。这是III型CoA转移酶家族中首次观察到结构域移动,它可能在将底物结合与催化反应起始相偶联方面发挥重要作用。

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