Thompson S, Mayerl F, Peoples O P, Masamune S, Sinskey A J, Walsh C T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.
Biochemistry. 1989 Jul 11;28(14):5735-42. doi: 10.1021/bi00440a006.
Thiolase proceeds via covalent catalysis involving an acetyl-S-enzyme. The active-site thiol nucleophile is identified as Cys89 by acetylation with [14C]acetyl-CoA, rapid denaturation, tryptic digestion, and sequencing of the labeled peptide. The native acetyl enzyme is labile to hydrolytic decomposition with t 1/2 of 2 min at pH 7, 25 degrees C. Cys89 has been converted to the alternate nucleophile Ser89 by mutagenesis and the C89S enzyme overproduced, purified, and assessed for activity. The Ser89 enzyme retains 1% of the Vmax of the Cys89 enzyme in the direction of acetoacetyl-CoA thiolytic cleavage and 0.05% of the Vmax in the condensation of two acetyl-CoA molecules. A covalent acetyl-O-enzyme intermediate is detected on incubation with [14C]acetyl-CoA and isolation of the labeled Ser89-containing tryptic peptide. Comparisons of the Cys89 and Ser89 enzymes have been made for kinetic and thermodynamic stability of the acetyl enzyme intermediates both by isolation and by analysis of [32P]CoASH/acetyl-CoA partial reactions and for rate-limiting steps in catalysis with trideuterioacetyl-CoA.
硫解酶通过涉及乙酰 - S - 酶的共价催化作用进行反应。通过用[¹⁴C]乙酰辅酶A进行乙酰化、快速变性、胰蛋白酶消化以及对标记肽段进行测序,确定活性位点硫醇亲核试剂为半胱氨酸89(Cys89)。天然的乙酰化酶在pH 7、25℃条件下对水解分解不稳定,半衰期为2分钟。通过诱变将Cys89转化为替代亲核试剂丝氨酸89(Ser89),并过量表达、纯化C89S酶并评估其活性。在乙酰乙酰辅酶A硫解裂解方向上,Ser89酶保留了Cys89酶最大反应速度(Vmax)的1%,在两个乙酰辅酶A分子缩合反应中保留了Vmax的0.05%。在与[¹⁴C]乙酰辅酶A孵育并分离出标记的含Ser89的胰蛋白酶肽段后,检测到共价乙酰 - O - 酶中间体。通过分离以及对[³²P]辅酶A/乙酰辅酶A部分反应的分析,对Cys89和Ser89酶的乙酰化酶中间体的动力学和热力学稳定性进行了比较,并使用氘代乙酰辅酶A对催化过程中的限速步骤进行了比较。