Studer Remo, Dahinden Pius, Wang Wei-Wu, Auchli Yolanda, Li Xiao-Dan, Dimroth Peter
Biomolecular Research, Paul Scherrer Institut, CH-5232 Villigen, Switzerland.
J Mol Biol. 2007 Mar 23;367(2):547-57. doi: 10.1016/j.jmb.2006.12.035. Epub 2006 Dec 19.
Oxaloacetate decarboxylase is a membrane-bound multiprotein complex that couples oxaloacetate decarboxylation to sodium ion transport across the membrane. The initial reaction catalyzed by this enzyme machinery is the carboxyl transfer from oxaloacetate to the prosthetic biotin group. The crystal structure of the carboxyltransferase at 1.7 A resolution shows a dimer of alpha(8)beta(8) barrels with an active site metal ion, identified spectroscopically as Zn(2+), at the bottom of a deep cleft. The enzyme is completely inactivated by specific mutagenesis of Asp17, His207 and His209, which serve as ligands for the Zn(2+) metal ion, or by Lys178 near the active site, suggesting that Zn(2+) as well as Lys178 are essential for the catalysis. In the present structure this lysine residue is hydrogen-bonded to Cys148. A potential role of Lys178 as initial acceptor of the carboxyl group from oxaloacetate is discussed.
草酰乙酸脱羧酶是一种膜结合多蛋白复合物,它将草酰乙酸脱羧作用与钠离子跨膜运输偶联起来。这种酶机制催化的初始反应是草酰乙酸的羧基转移到辅基生物素基团上。羧基转移酶在1.7埃分辨率下的晶体结构显示为α(8)β(8)桶状二聚体,在一个深裂隙底部有一个活性位点金属离子,经光谱鉴定为Zn(2+)。通过对作为Zn(2+)金属离子配体的Asp17、His207和His209进行特异性诱变,或通过活性位点附近的Lys178进行诱变,该酶会完全失活,这表明Zn(2+)以及Lys178对催化作用至关重要。在当前结构中,这个赖氨酸残基与Cys148形成氢键。本文讨论了Lys178作为草酰乙酸羧基初始受体的潜在作用。