Renetseder R, Brunie S, Dijkstra B W, Drenth J, Sigler P B
J Biol Chem. 1985 Sep 25;260(21):11627-34.
The refined high resolution crystal structure of the bovine phospholipase A2 was compared with its counterpart from the venom of Crotalus atrox, the western diamondbacked rattlesnake. The strong similarity in their backbone conformations forms the basis of a common numbering system for the amino acid sequence. The three common major helices and much of the extended chain form a nearly identical "homologous core" structure. The variations in conformation usually arise from deletions/insertions or en bloc shifts of structural units. The exception to this is part of the highly conserved calcium-binding loop; however, this is to be expected as 1) there is no calcium ion sequestered in the venom dimer as there is in the case of the bovine enzyme and 2) two side chains in that segment form dimer-stabilizing interactions between the subunits of the C. atrox enzyme. The absolutely conserved catalytic network of hydrogen-bonded side chains formed by His 48, Tyr 52, Tyr 73, and Asp 99, as well as the hydrophobic wall that shields it, are virtually superimposable in the two structures. However, the details of the structural relationship between the amino terminus and the catalytic network differ in the two species and the ordered water molecules thought to be either functionally or structurally important in the pancreatic enzymes are not found in the crystal structure of the phospholipase A2 from C. atrox. The most striking difference from a functional standpoint is the fact that the surface depression in the region of the catalytic network that has been commonly considered the active site is shielded substantially in forming the intersubunit contact surface of the dimeric venom enzyme.
将牛磷脂酶A2的精细高分辨率晶体结构与其来自西部菱斑响尾蛇(Crotalus atrox)毒液中的对应物进行了比较。它们主链构象的高度相似性构成了氨基酸序列通用编号系统的基础。三个常见的主要螺旋和大部分延伸链形成了几乎相同的“同源核心”结构。构象的变化通常源于结构单元的缺失/插入或整体移位。唯一的例外是高度保守的钙结合环的一部分;然而,这是可以预料的,因为1)毒液二聚体中没有像牛酶那样螯合钙离子,并且2)该片段中的两个侧链在西部菱斑响尾蛇酶的亚基之间形成了稳定二聚体的相互作用。由His 48、Tyr 52、Tyr 73和Asp 99形成的绝对保守的氢键侧链催化网络,以及保护它的疏水壁,在这两种结构中几乎是重叠的。然而,两种物种中氨基末端与催化网络之间结构关系的细节有所不同,并且在西部菱斑响尾蛇磷脂酶A2的晶体结构中未发现被认为在胰腺酶中具有功能或结构重要性的有序水分子。从功能角度来看,最显著的差异是,在通常被认为是活性位点的催化网络区域中的表面凹陷在形成二聚体毒液酶的亚基间接触表面时基本上被屏蔽了。