Burley S K, David P R, Lipscomb W N
Gibbs Chemical Laboratory, Harvard University, Cambridge, MA 02138.
Proc Natl Acad Sci U S A. 1991 Aug 15;88(16):6916-20. doi: 10.1073/pnas.88.16.6916.
The three-dimensional structures of native bovine lens leucine aminopeptidase (EC 3.4.11.1) and its complex with bestatin, a slow-binding inhibitor, have been solved and exhaustively refined. The mode of binding of bestatin to leucine aminopeptidase may be similar to that of a tetrahedral intermediate that is thought to form during peptide bond hydrolysis. Bestatin binds in the active site with its alpha-amino group and hydroxyl group coordinated to the zinc ion located in the readily exchangeable divalent cation binding site. Its phenylalanyl side chain is stabilized by van der Waals interactions with Met-270, Thr-359, Gly-362, Ala-451, and Met-454, which appear to form a terminal hydrophobic pocket. The leucyl side chain binds in another hydrophobic cleft lined by Asn-330, Ala-333, and Ile-421. Hydrogen bonds involving active site residues Lys-262, Asp-273, Gly-360, and Leu-362 are responsible for stabilizing the backbone nitrogen and oxygen atoms of bestatin. The mode of bestatin inhibition of leucine aminopeptidase is discussed and correlated with biochemical studies of bestatin analogues. In addition, features of a mechanism of catalysis of peptide hydrolysis by leucine aminopeptidase are discussed.
天然牛晶状体亮氨酸氨肽酶(EC 3.4.11.1)及其与慢结合抑制剂贝司他汀形成的复合物的三维结构已得到解析并进行了详尽的优化。贝司他汀与亮氨酸氨肽酶的结合模式可能类似于肽键水解过程中被认为会形成的四面体中间体的结合模式。贝司他汀通过其α-氨基和羟基与位于易于交换的二价阳离子结合位点的锌离子配位,从而结合在活性位点。其苯丙氨酰侧链通过与Met-270、Thr-359、Gly-362、Ala-451和Met-454的范德华相互作用而稳定,这些氨基酸似乎形成了一个末端疏水口袋。亮氨酰侧链结合在另一个由Asn-330、Ala-333和Ile-421排列的疏水裂缝中。涉及活性位点残基Lys-262、Asp-273、Gly-360和Leu-362的氢键负责稳定贝司他汀的主链氮原子和氧原子。文中讨论了贝司他汀对亮氨酸氨肽酶的抑制模式,并将其与贝司他汀类似物的生化研究相关联。此外,还讨论了亮氨酸氨肽酶催化肽水解机制的特点。