Coker Shu-Fen, Lloyd Adrian J, Mitchell Edward, Lewis Gareth R, Coker Alun R, Shoolingin-Jordan Peter M
Center for Amyloidosis and Acute Phase Proteins, Division of Medicine (Royal Free Campus), University College London, London, England.
Acta Crystallogr D Biol Crystallogr. 2010 Jul;66(Pt 7):797-805. doi: 10.1107/S0907444910018366. Epub 2010 Jun 19.
The enzyme succinyl-CoA:3-oxoacid coenzyme A transferase (SCOT) participates in the metabolism of ketone bodies in extrahepatic tissues. It catalyses the transfer of coenzyme A (CoA) from succinyl-CoA to acetoacetate with a classical ping-pong mechanism. There is biochemical evidence that the enzyme undergoes conformational changes during the reaction, but no domain movements have been reported in the available crystal structures. Here, a structure of pig heart SCOT refined at 1.5 A resolution is presented, showing that one of the four enzyme subunits in the crystallographic asymmetric unit has a molecule of glycerol bound in the active site; the glycerol molecule is hydrogen bonded to the conserved catalytic glutamate residue and is likely to occupy the cosubstrate-binding site. The binding of glycerol is associated with a substantial relative movement (a 13 degrees rotation) of two previously undefined domains that close around the substrate-binding site. The binding orientation of one of the cosubstrates, acetoacetate, is suggested based on the glycerol binding and the possibility that this dynamic domain movement is of functional importance is discussed.
琥珀酰辅酶A:3-氧代酸辅酶A转移酶(SCOT)参与肝外组织中酮体的代谢。它通过经典的乒乓机制催化辅酶A(CoA)从琥珀酰辅酶A转移至乙酰乙酸。有生化证据表明该酶在反应过程中会发生构象变化,但在现有的晶体结构中尚未报道有结构域运动。本文给出了猪心SCOT在1.5埃分辨率下的精制结构,显示晶体学不对称单元中的四个酶亚基之一在活性位点结合有一个甘油分子;甘油分子通过氢键与保守的催化谷氨酸残基相连,且可能占据了共底物结合位点。甘油的结合与两个先前未定义的结构域的显著相对运动(13度旋转)相关,这两个结构域围绕底物结合位点闭合。基于甘油结合情况推测了共底物之一乙酰乙酸的结合方向,并讨论了这种动态结构域运动具有功能重要性的可能性。