Sträter N, Lipscomb W N
Gibbs Chemical Laboratory, Harvard University, Cambridge, Massachusetts 02138, USA.
Biochemistry. 1995 Nov 14;34(45):14792-800. doi: 10.1021/bi00045a021.
The three-dimensional structures of bovine lens leucine aminopeptidase (blLAP) complexed with L-leucinal and of the unliganded enzyme have been determined at crystallographic resolutions of 1.9 and 1.6 A, respectively. Leucinal binds as a hydrated gem-diol to the active site of b1LAP), resembling the presumed gem-diolated intermediate in the catalytic pathway. One hydroxyl group bridges the two active site metal ions, and the other OH group is coordinated to Zn1. The high-resolution structure of the unliganded enzyme reveals one metal-bound water ligand, which is bridging both zinc ions. Together, these structures support a mechanism in which the bridging water ligand is the attacking hydroxide ion nucleophile. The gem-diolate intermediate is probably stabilized by four coordinating bonds to the dizinc center and by interaction with Lys-262 and Arg-336. In the mechanism, Lys-262 polarizes the peptide carbonyl group, which is also coordinated to Zn1. The Arg-336 side chain interacts with the substrate and the gem-diolate intermediate via water molecules. Near Arg-336 in the b1LAP-leucinal structure, an unusually short hydrogen bond is found between two active site water molecules.
已分别在1.9埃和1.6埃的晶体学分辨率下测定了与L-亮氨醛复合的牛晶状体亮氨酸氨肽酶(blLAP)的三维结构以及未结合配体的酶的三维结构。亮氨醛以水合偕二醇的形式结合到b1LAP的活性位点,类似于催化途径中假定的偕二醇化中间体。一个羟基桥连两个活性位点金属离子,另一个OH基团与Zn1配位。未结合配体的酶的高分辨率结构揭示了一个与金属结合的水配体,它桥连两个锌离子。这些结构共同支持了一种机制,即桥连水配体是进攻性的氢氧根离子亲核试剂。偕二醇中间体可能通过与双锌中心的四个配位键以及与Lys-262和Arg-336的相互作用而稳定。在该机制中,Lys-262使肽羰基极化,该羰基也与Zn1配位。Arg-336侧链通过水分子与底物和偕二醇中间体相互作用。在b1LAP-亮氨醛结构中靠近Arg-336的位置,在两个活性位点水分子之间发现了一个异常短的氢键。