Holden H M, Matthews B W
Institute of Molecular Biology, University of Oregon, Eugene 97403.
J Biol Chem. 1988 Mar 5;263(7):3256-60. doi: 10.2210/pdb3tmn/pdb.
Crystallographic analysis of the binding of mercaptoacetyl-L-valyl-L-tryptophan to thermolysin suggests that this inhibitor is hydrolyzed by the crystalline enzyme. The apparent product of hydrolysis, L-valyl-L-tryptophan (Val-Trp), occupies the S1'-S2' subsites of the active site, not the S1-S1' subsites as observed previously for the dipeptide L-alanyl-L-phenylalanine (Ala-Phe). The difference in binding of Val-Trp and Ala-Phe is consistent with the specificity requirements and preferences of thermolysin. The binding of Val-Trp illustrates the mode of interaction of one of the products of peptide hydrolysis. High resolution crystallographic refinement indicates that the valyl amino group makes three hydrogen bonds to the enzyme and to solvent and, in addition, is 2.8 A from the carboxylate of Glu-143. This is the first instance in which a direct interaction has been observed between Glu-143 and the scissile nitrogen. As such, the study directly supports the mechanism of action for thermolysin proposed by Hangauer et al. (Hangauer, D. G., Monzingo, A. F., and Matthews, B. W. (1984) Biochemistry 23, 5730-5741) and, by analogy, indirectly supports the similar mechanism proposed for carboxypeptidase A (Monzingo, A. F., and Matthews, B. W. (1984) Biochemistry 23, 5724-5729).
巯基乙酰 -L-缬氨酰 -L-色氨酸与嗜热菌蛋白酶结合的晶体学分析表明,这种抑制剂会被晶体酶水解。水解的表观产物L-缬氨酰 -L-色氨酸(Val-Trp)占据活性位点的S1'-S2'亚位点,而不像之前观察到的二肽L-丙氨酰 -L-苯丙氨酸(Ala-Phe)那样占据S1-S1'亚位点。Val-Trp和Ala-Phe结合方式的差异与嗜热菌蛋白酶的特异性要求和偏好一致。Val-Trp的结合说明了肽水解产物之一的相互作用模式。高分辨率晶体学精修表明,缬氨酰氨基与酶和溶剂形成三个氢键,此外,它距离Glu-143的羧酸盐2.8埃。这是首次观察到Glu-143与可裂解氮之间的直接相互作用。因此,该研究直接支持了Hangauer等人提出的嗜热菌蛋白酶的作用机制(Hangauer, D. G., Monzingo, A. F., and Matthews, B. W. (1984) Biochemistry 23, 5730 - 5741),并且类推地间接支持了为羧肽酶A提出的类似机制(Monzingo, A. F., and Matthews, B. W. (1984) Biochemistry 23, 5724 - 5729)。