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- Title
crystal structure of homoserine dehydrogenase complexed with l -homoserine and NADPH in a closed form.
- Authors
Akai, Shota; Ikushiro, Hiroko; Sawai, Taiki; Yano, Takato; Kamiya, Nobuo; Miyahara, Ikuko
- Abstract
Homoserine dehydrogenase from Thermus thermophilus (Tt HSD) 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 Tt HSD, Tt HSD complexed with l -Hse and NADPH, and Lys99Ala and Lys195Ala mutant Tt HSDs, 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 Tt HSD 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 Tt HSDs 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 Tt HSD, 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.
- Subjects
CRYSTAL structure; HOMOSERINE dehydrogenase; CYSTATHIONINE gamma-lyase; NICOTINAMIDE adenine dinucleotide phosphate; THERMUS thermophilus; ASPARTATE analysis
- Publication
Journal of Biochemistry, 2019, Vol 165, Issue 2, p185
- ISSN
0021-924X
- Publication type
Article
- DOI
10.1093/jb/mvy094