Huberts Daphne H E W, Venselaar Hanka, Vriend Gert, Veenhuis Marten, van der Klei Ida J
Department of Molecular Cell Biology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), Kluyver Centre for Genomics of Industrial Fermentation, University of Groningen, NL-9750 AA Haren, The Netherlands.
Biochim Biophys Acta. 2010 Sep;1803(9):1038-42. doi: 10.1016/j.bbamcr.2010.03.018. Epub 2010 Mar 30.
Pyruvate carboxylase is a highly conserved enzyme that functions in replenishing the tricarboxylic acid cycle with oxaloacetate. In the yeast Hansenulapolymorpha, the pyruvate carboxylase protein is also required for import and assembly of the peroxisomal enzyme alcohol oxidase. This additional role, which is unrelated to the enzyme activity, represents an example of a special form of multifunctionality called moonlighting. We have performed a detailed site-directed mutagenesis approach to elucidate which region(s) of H. polymorpha pyruvate carboxylase are involved in its second function. This resulted in the identification of three amino acids that are essential for the moonlighting function. Mutating these residues in a single mutant protein fully inactivated the moonlighting function, but not the enzyme activity of pyruvate carboxylase because the strain was prototrophic. A 3D homology model revealed that all three residues are positioned at the side of a TIM barrel where the N-terminal ends of the beta-strands are located. This is a novel observation as the TIM barrel proteins invariably are enzymes and have their catalytic side at the C-terminal end of the beta-sheets. Our finding implies that a TIM barrel fold can also fulfill a non-enzymatic function and that this function can reside at the N-terminal end of the barrel.
丙酮酸羧化酶是一种高度保守的酶,其功能是用草酰乙酸补充三羧酸循环。在多形汉逊酵母中,过氧化物酶体酶乙醇氧化酶的导入和组装也需要丙酮酸羧化酶蛋白。这种与酶活性无关的额外作用代表了一种称为兼职的特殊多功能形式的例子。我们进行了详细的定点诱变方法,以阐明多形汉逊酵母丙酮酸羧化酶的哪些区域参与其第二种功能。这导致鉴定出对兼职功能至关重要的三个氨基酸。在单个突变蛋白中突变这些残基会完全使兼职功能失活,但不会使丙酮酸羧化酶的酶活性失活,因为该菌株是原养型的。三维同源模型显示,所有三个残基都位于TIM桶的一侧,β链的N末端位于该侧。这是一个新的观察结果,因为TIM桶蛋白总是酶,并且它们的催化位点位于β折叠的C末端。我们的发现意味着TIM桶折叠也可以履行非酶功能,并且该功能可以位于桶的N末端。