Austen B M, Haberland M E, Smith E L
J Biol Chem. 1980 Aug 25;255(16):8001-4.
From the amino acid sequences of the three known fragments of the NAD-specific glutamate dehydrogenase of Neurospora crassa, the secondary structures have been predicted from the rules of Chou and Fasman (Chou, P.Y., and Fasman, G.D. (1979) Biophys. J. 26, 367-384). Comparison of these structures with those calculated for bovine glutamate dehydrogenase has shown that in the regions of homologous sequences containing identified functional regions, there is considerable homology of structure. From these predictions, it has been possible to identify a putative coenzyme-binding domain in the COOH-terminal part of the molecule similar to those of various NAD-specific dehydrogenases. Residues whose modification alters coenzyme binding are located in the putative coenzyme binding domain. The major sites of tryptic cleavage of the native enzyme, described in an accompanying paper (Haberland, M.E., Chen, C.-W., and Smith, E.L. (1980) J. Biol. Chem. 255, 7993-8000), are in regions of random coil structure.
根据粗糙脉孢菌NAD特异性谷氨酸脱氢酶三个已知片段的氨基酸序列,利用周和法斯曼的规则(周,P.Y.,和法斯曼,G.D.(1979年)《生物物理杂志》26卷,367 - 384页)预测了二级结构。将这些结构与为牛谷氨酸脱氢酶计算的结构进行比较表明,在含有已确定功能区域的同源序列区域,结构有相当大的同源性。从这些预测结果中,有可能在分子的COOH末端部分鉴定出一个类似各种NAD特异性脱氢酶的假定辅酶结合结构域。其修饰会改变辅酶结合的残基位于假定的辅酶结合结构域中。在一篇配套论文(哈伯兰,M.E.,陈,C.-W.,和史密斯,E.L.(1980年)《生物化学杂志》255卷,7993 - 8000页)中描述的天然酶胰蛋白酶切割的主要位点,位于无规卷曲结构区域。