Govindasamy Lakshmanan, Pedersen Brenda, Lian Wei, Kukar Thomas, Gu Yunrong, Jin Shouguang, Agbandje-McKenna Mavis, Wu Donghai, McKenna Robert
Department of Biochemistry and Molecular Biology, McKnight Brain Institute and University of Florida, Gainesville, FL 32610, USA.
J Struct Biol. 2004 Nov;148(2):226-35. doi: 10.1016/j.jsb.2004.06.005.
The biosynthetic enzyme for the neurotransmitter acetylcholine, choline acetyltransferase (ChAT) (E.C. 2.3.1.6), is essential for the development and neuronal activities of cholinergic systems involved in many fundamental brain functions. ChAT catalyzes the transfer of an acetyl group from acetyl-coenzyme A to choline to form the neurotransmitter acetylcholine. Since its discovery more than 60 years ago much research has been devoted to the kinetic studies of this enzyme. For the first time we report the crystal structure of rat ChAT (rChAT) to 1.55 A resolution. The structure of rChAT is a monomer and consists of two domains with an interfacial active site tunnel. This structure, with the modeled substrate binding, provides critical insights into the molecular basis for the production of acetylcholine and may further our understanding of disease causing mutations.
神经递质乙酰胆碱的生物合成酶——胆碱乙酰转移酶(ChAT)(酶学委员会编号:2.3.1.6),对于参与多种基本脑功能的胆碱能系统的发育和神经元活动至关重要。ChAT催化将乙酰辅酶A上的乙酰基转移至胆碱,以形成神经递质乙酰胆碱。自60多年前被发现以来,已有大量研究致力于该酶的动力学研究。我们首次报道了大鼠ChAT(rChAT)分辨率达1.55埃的晶体结构。rChAT的结构为单体,由两个结构域组成,中间有一个界面活性位点通道。该结构结合模拟的底物结合情况,为乙酰胆碱生成的分子基础提供了关键见解,并可能增进我们对致病突变的理解。