Berthold Catrine L, Toyota Cory G, Richards Nigel G J, Lindqvist Ylva
Department of Medical Biochemistry and Biophysics, Molecular Structural Biology, Karolinska Institutet, Stockholm, Sweden.
J Biol Chem. 2008 Mar 7;283(10):6519-29. doi: 10.1074/jbc.M709353200. Epub 2007 Dec 27.
Formyl-coenzyme A transferase from Oxalobacter formigenes belongs to the Class III coenzyme A transferase family and catalyzes the reversible transfer of a CoA carrier between formyl-CoA and oxalate, forming oxalyl-CoA and formate. Formyl-CoA transferase has a unique three-dimensional fold composed of two interlaced subunits locked together like rings of a chain. We here present an intermediate in the reaction, formyl-CoA transferase containing the covalent beta-aspartyl-CoA thioester, adopting different conformations in the two active sites of the dimer, which was identified through crystallographic freeze-trapping experiments with formyl-CoA and oxalyl-CoA in the absence of acceptor carboxylic acid. The formation of the enzyme-CoA thioester was also confirmed by mass spectrometric data. Further structural data include a trapped aspartyl-formyl anhydride protected by a glycine loop closing down over the active site. In a crystal structure of the beta-aspartyl-CoA thioester of an inactive mutant variant, oxalate was found bound to the open conformation of the glycine loop. Together with hydroxylamine trapping experiments and kinetic as well as mutagenesis data, the structures of these formyl-CoA transferase complexes provide new information on the Class III CoA-transferase family and prompt redefinition of the catalytic steps and the modified reaction mechanism of formyl-CoA transferase proposed here.
来自产甲酸草酸杆菌的甲酰辅酶A转移酶属于III类辅酶A转移酶家族,催化辅酶A载体在甲酰辅酶A和草酸盐之间的可逆转移,形成草酰辅酶A和甲酸盐。甲酰辅酶A转移酶具有独特的三维折叠结构,由两个相互交错的亚基组成,像链环一样锁定在一起。我们在此展示了该反应中的一种中间体,即含有共价β-天冬氨酰辅酶A硫酯的甲酰辅酶A转移酶,它在二聚体的两个活性位点呈现不同构象,这是通过在没有受体羧酸的情况下用甲酰辅酶A和草酰辅酶A进行晶体学冷冻捕获实验鉴定出来的。酶-辅酶A硫酯的形成也得到了质谱数据的证实。进一步的结构数据包括一个被困的天冬氨酰-甲酰酸酐,它受到一个在活性位点上方闭合的甘氨酸环的保护。在一个无活性突变体变体的β-天冬氨酰辅酶A硫酯的晶体结构中,发现草酸盐与甘氨酸环的开放构象结合。结合羟胺捕获实验、动力学以及诱变数据,这些甲酰辅酶A转移酶复合物的结构为III类辅酶A转移酶家族提供了新信息,并促使对这里提出的甲酰辅酶A转移酶的催化步骤和修正反应机制进行重新定义。