Lennon B W, Williams C H, Ludwig M L
Department of Biological Chemistry, The University of Michigan, Ann Arbor 48109, USA.
Protein Sci. 1999 Nov;8(11):2366-79. doi: 10.1110/ps.8.11.2366.
Catalysis by thioredoxin reductase (TrxR) from Escherichia coli requires alternation between two domain arrangements. One of these conformations has been observed by X-ray crystallography (Waksman G, Krishna TSR, Williams CH Jr, Kuriyan J, 1994, J Mol Biol 236:800-816). This form of TrxR, denoted FO, permits the reaction of enzyme-bound reduced FAD with a redox-active disulfide on TrxR. As part of an investigation of conformational changes and intermediates in catalysis by TrxR, an X-ray structure of the FO form of TrxR with both the FAD and active site disulfide reduced has been determined. Reduction after crystallization resulted in significant local conformation changes. The isoalloxazine ring of the FAD cofactor, which is essentially planar in the oxidized enzyme, assumes a 34 degree "butterfly" bend about the N(5)-N(10) axis in reduced TrxR. Theoretical calculations reported by others predict ring bending of 15-28 degrees for reduced isoalloxazines protonated at N(1). The large bending in reduced TrxR is attributed in part to steric interactions between the isoalloxazine ring and the sulfur of Cys138, formed by reduction of the active site disulfide, and is accompanied by changes in the positions and interactions of several of the ribityl side-chain atoms of FAD. The bending angle in reduced TrxR is larger than that for any flavoprotein in the Protein Data Bank. Distributions of bending angles in published oxidized and reduced flavoenzyme structures are different from those found in studies of free flavins, indicating that the protein environment has a significant effect on bending.
来自大肠杆菌的硫氧还蛋白还原酶(TrxR)的催化作用需要在两种结构域排列之间交替。其中一种构象已通过X射线晶体学观察到(Waksman G,Krishna TSR,Williams CH Jr,Kuriyan J,1994,《分子生物学杂志》236:800 - 816)。这种TrxR形式,记为F0,允许酶结合的还原型FAD与TrxR上的氧化还原活性二硫键发生反应。作为对TrxR催化过程中的构象变化和中间体研究的一部分,已确定了FAD和活性位点二硫键均被还原的TrxR的F0形式的X射线结构。结晶后还原导致了显著的局部构象变化。FAD辅因子的异咯嗪环在氧化酶中基本呈平面状,在还原的TrxR中围绕N(5)-N(10)轴呈现34度的“蝴蝶”弯曲。其他人报道的理论计算预测,在N(1)处质子化的还原型异咯嗪环的弯曲角度为15 - 28度。还原的TrxR中的大弯曲部分归因于异咯嗪环与Cys138的硫之间的空间相互作用,这是由活性位点二硫键的还原形成的,并且伴随着FAD的几个核糖醇侧链原子的位置和相互作用的变化。还原的TrxR中的弯曲角度大于蛋白质数据库中任何黄素蛋白的弯曲角度。已发表的氧化型和还原型黄素酶结构中的弯曲角度分布与游离黄素研究中的不同,表明蛋白质环境对弯曲有显著影响。