Graduate School of Science, Osaka City University, Osaka, Japan.
Depertment of Biochemistry, Faculty of Medicine, Osaka Medical College, Osaka, Japan.
J Biochem. 2019 Feb 1;165(2):185-195. doi: 10.1093/jb/mvy094.
Homoserine dehydrogenase from Thermus thermophilus (TtHSD) is a key enzyme in the aspartate pathway that catalyses the reversible conversion of l-aspartate-β-semialdehyde to l-homoserine (l-Hse) with NAD(P)H. We determined the crystal structures of unliganded TtHSD, TtHSD complexed with l-Hse and NADPH, and Lys99Ala and Lys195Ala mutant TtHSDs, which have no enzymatic activity, complexed with l-Hse and NADP+ at 1.83, 2.00, 1.87 and 1.93 Å resolutions, respectively. Binding of l-Hse and NADPH induced the conformational changes of TtHSD from an open to a closed form: the mobile loop containing Glu180 approached to fix l-Hse and NADPH, and both Lys99 and Lys195 could make hydrogen bonds with the hydroxy group of l-Hse. The ternary complex of TtHSDs in the closed form mimicked a Michaelis complex better than the previously reported open form structures from other species. In the crystal structure of Lys99Ala TtHSD, the productive geometry of the ternary complex was almost preserved with one new water molecule taking over the hydrogen bonds associated with Lys99, while the positions of Lys195 and l-Hse were significantly retained with those of the wild-type enzyme. These results propose new possibilities that Lys99 is the acid-base catalytic residue of HSDs.
嗜热栖热菌(Thermus thermophilus)的高丝氨酸脱氢酶(TtHSD)是天冬氨酸途径中的关键酶,它可以催化 l-天冬氨酸-β-半醛可逆转化为 l-高丝氨酸(l-Hse),并同时消耗 NAD(P)H。我们解析了未结合配体的 TtHSD、与 l-Hse 和 NADPH 结合的 TtHSD、以及没有酶活性的 Lys99Ala 和 Lys195Ala 突变体 TtHSD 分别与 l-Hse 和 NADP+形成的复合物的晶体结构,分辨率分别为 1.83、2.00、1.87 和 1.93 Å。l-Hse 和 NADPH 的结合诱导 TtHSD 从开放构象转变为闭合构象:含有 Glu180 的可移动环接近固定 l-Hse 和 NADPH,同时 Lys99 和 Lys195 都可以与 l-Hse 的羟基形成氢键。与先前报道的其他物种的开放构象结构相比,TtHSDs 闭合构象的三元复合物更能模拟 Michaelis 复合物。在 Lys99Ala TtHSD 的晶体结构中,三元复合物的产性几何形状几乎得以保留,一个新的水分子取代了与 Lys99 相关的氢键,而 Lys195 和 l-Hse 的位置与野生型酶的位置也得到了显著保留。这些结果提出了新的可能性,即 Lys99 是 HSDs 的酸碱催化残基。