Tai Chia-Hui, Rabeh Wael M, Guan Rong, Schnackerz Klaus D, Cook Paul F
Department of Chemical and Materials Engineering, Chenshiu University, No. 840 Chengcing Rd., Kaohsiung, Taiwan, 83347.
Biochim Biophys Acta. 2008 Apr;1784(4):629-37. doi: 10.1016/j.bbapap.2007.12.017. Epub 2008 Jan 16.
O-Acetylserine sulfhydrylase catalyzes the final step of the biosynthesis of L-cysteine, the replacement of the beta-acetoxy group of O-acetyl-L-serine (OAS) by a thiol. The enzyme undergoes a conformational change to close the site upon formation of the external Schiff base (ESB) with OAS. Mutation of K120 to Q was predicted to destabilize the closed form of the ESB and decrease the rate. The K120Q mutant enzyme was prepared and characterized by UV-visible absorbance, fluorescence, visible CD, and 31P NMR spectral studies, as well as steady state and pre-steady state kinetic studies. Spectra suggest a shift in the tautomeric equilibrium toward the neutral enolimine and an increase in the rate of interconversion of the open and closed forms of the enzyme. A decrease in the rate of both half reactions likely reflects the stabilization of the ESB as a result of the increased rate of equilibration of the open and closed forms of the enzyme along the reaction pathway. Data suggest a role of K120 in helping to stabilize the closed conformation by participating in a new hydrogen bond to the backbone carbonyl of A231.
O-乙酰丝氨酸巯基酶催化L-半胱氨酸生物合成的最后一步,即用硫醇取代O-乙酰-L-丝氨酸(OAS)的β-乙酰氧基。该酶在与OAS形成外部席夫碱(ESB)时会发生构象变化以封闭位点。预测K120突变为Q会使ESB的封闭形式不稳定并降低反应速率。制备了K120Q突变酶,并通过紫外可见吸收、荧光、可见圆二色和31P NMR光谱研究以及稳态和预稳态动力学研究对其进行了表征。光谱表明互变异构平衡向中性烯醇亚胺转移,并且酶的开放和封闭形式的相互转化速率增加。两个半反应速率的降低可能反映了由于酶的开放和封闭形式在反应途径上平衡速率增加而导致的ESB的稳定。数据表明K120通过参与与A231主链羰基的新氢键来帮助稳定封闭构象。