Yang Zhiru, Zhang Hailong, Hung Hui-Chi, Kuo Chen-Chin, Tsai Li-Chu, Yuan Hanna S, Chou Wei-Yuan, Chang Gu-Gang, Tong Liang
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Protein Sci. 2002 Feb;11(2):332-41. doi: 10.1110/ps.38002.
Malic enzymes are widely distributed in nature, and have important biological functions. They catalyze the oxidative decarboxylation of malate to produce pyruvate and CO(2) in the presence of divalent cations (Mg(2+), Mn(2+)). Most malic enzymes have a clear selectivity for the dinucleotide cofactor, being able to use either NAD(+) or NADP(+), but not both. Structural studies of the human mitochondrial NAD(+)-dependent malic enzyme established that malic enzymes belong to a new class of oxidative decarboxylases. Here we report the crystal structure of the pigeon cytosolic NADP(+)-dependent malic enzyme, in a closed form, in a quaternary complex with NADP(+), Mn(2+), and oxalate. This represents the first structural information on an NADP(+)-dependent malic enzyme. Despite the sequence conservation, there are large differences in several regions of the pigeon enzyme structure compared to the human enzyme. One region of such differences is at the binding site for the 2'-phosphate group of the NADP(+) cofactor, which helps define the cofactor selectivity of the enzymes. Specifically, the structural information suggests Lys362 may have an important role in the NADP(+) selectivity of the pigeon enzyme, confirming our earlier kinetic observations on the K362A mutant. Our structural studies also revealed differences in the organization of the tetramer between the pigeon and the human enzymes, although the pigeon enzyme still obeys 222 symmetry.
苹果酸酶在自然界中广泛分布,并具有重要的生物学功能。它们在二价阳离子(Mg(2+)、Mn(2+))存在的情况下催化苹果酸的氧化脱羧反应,生成丙酮酸和CO(2)。大多数苹果酸酶对二核苷酸辅因子具有明确的选择性,能够使用NAD(+)或NADP(+),但不能同时使用两者。人类线粒体NAD(+)依赖性苹果酸酶的结构研究表明,苹果酸酶属于一类新型的氧化脱羧酶。在此,我们报道了家鸽胞质NADP(+)依赖性苹果酸酶的晶体结构,其处于封闭形式,与NADP(+)、Mn(2+)和草酸盐形成四聚体复合物。这代表了关于NADP(+)依赖性苹果酸酶的首个结构信息。尽管序列保守,但与人类酶相比,家鸽酶结构的几个区域存在很大差异。其中一个差异区域位于NADP(+)辅因子2'-磷酸基团的结合位点,这有助于确定酶的辅因子选择性。具体而言,结构信息表明Lys362可能在家鸽酶的NADP(+)选择性中起重要作用,这证实了我们早期对K362A突变体的动力学观察结果。我们的结构研究还揭示了家鸽酶和人类酶之间四聚体组织的差异,尽管家鸽酶仍遵循222对称性。