Holland D R, Clancy L L, Muchmore S W, Ryde T J, Einspahr H M, Finzel B C, Heinrikson R L, Watenpaugh K D
Pharmaceutical Research and Development, Upjohn Company, Kalamazoo, Michigan 49007.
J Biol Chem. 1990 Oct 15;265(29):17649-56. doi: 10.2210/pdb1ppa/pdb.
The crystal structure of a lysine 49 variant phospholipase A2 (K49 PLA2) has been determined at 2.0-A resolution. This particular phospholipase A2, purified from the venom of the eastern cottonmouth (Agkistrodon piscivorus piscivorus), a North American pit viper, differs significantly from others studied crystallographically because of replacement of the aspartate residue at position 49, whose side chain is important in calcium binding, by lysine. The crystallographic analysis of K49 PLA2 was undertaken to assess the structural ramifications of this substitution, particularly as they affect the binding mechanism of both the calcium cofactor and the phospholipid substrate. The protein crystals are tetragonal, space group P4(1)2(1)2, with unit cell dimensions of a = b = 71.7 (1) and c = 57.8 (3) A. Preliminary phases were obtained by molecular replacement techniques with a search model derived from the refined 2.5-A structure of a rattle-snake venom phospholipase A2 (Brunie, S., Bolin, J., Gewirth, D., and Sigler, P. B. (1985) J. Biol. Chem. 260, 9742-9749). The starting model gave an initial crystallographic RF of 0.526 (RF = sigma parallel to Fo /-/ Fc parallel to /sigma/Fo/). The structure was refined against all data to 2.0-A resolution. The final RF is 0.158. The final model includes 150 discrete water molecules. The K49 PLA2 model is composed primarily of alpha-helices joined by loops, some of which are quite extensive. Although dissimilarities are observed in the loop regions, the helical portions are very similar to those in other known phospholipase A2 structures. The proposed catalytic center (His48, Tyr73, and Asp99) is also structurally conserved. The region in K49 PLA2 corresponding to the calcium-binding site in other phospholipases A2 is occupied by the epsilon-amino group of lysine 49.
已确定一种赖氨酸49变体磷脂酶A2(K49 PLA2)的晶体结构,分辨率为2.0埃。这种特殊的磷脂酶A2是从北美蝰蛇东部棉口蛇(Agkistrodon piscivorus piscivorus)的毒液中纯化得到的,由于49位的天冬氨酸残基被赖氨酸取代,其与其他经晶体学研究的磷脂酶A2有显著差异,49位天冬氨酸的侧链对钙结合很重要。对K49 PLA2进行晶体学分析以评估这种取代的结构影响,特别是它们对钙辅因子和磷脂底物结合机制的影响。蛋白质晶体为四方晶系,空间群P4(1)2(1)2,晶胞参数a = b = 71.7 (1) 埃,c = 57.8 (3) 埃。通过分子置换技术,利用从响尾蛇毒液磷脂酶A2的2.5埃精细结构(Brunie, S., Bolin, J., Gewirth, D., and Sigler, P. B. (1985) J. Biol. Chem. 260, 9742 - 9749)推导而来的搜索模型获得了初步相位。起始模型的初始晶体学R因子为0.526(R因子 = ∑|Fo| - |Fc| / ∑|Fo|)。结构针对所有数据精修至2.0埃分辨率。最终R因子为0.158。最终模型包含150个离散水分子。K49 PLA2模型主要由通过环连接的α螺旋组成,其中一些环相当长。尽管在环区域观察到差异,但螺旋部分与其他已知磷脂酶A2结构中的螺旋部分非常相似。所提出的催化中心(His48、Tyr73和Asp99)在结构上也保守。K49 PLA2中对应于其他磷脂酶A2钙结合位点的区域被赖氨酸49的ε - 氨基占据。