Singh G, Gourinath S, Sharma S, Paramasivam M, Srinivasan A, Singh T P
Department of Biophysics, All India Institute of Medical Sciences, New Delhi, 110029, India.
J Mol Biol. 2001 Apr 6;307(4):1049-59. doi: 10.1006/jmbi.2001.4550.
This is the first phospholipase A2 (PLA2) structure from the family of kraits. The protein was isolated from Bungarus caeruleus (common krait) and the primary sequence was determined using cDNA approach. Three-dimensional structure of this presynaptic neurotoxic PLA2 from group I has been determined by molecular replacement method using the model of PLA2 component of beta2-bungarotoxin (Bungarus multicinctus) and refined using CNS package to a final R-factor of 20.1 % for all the data in resolution range 20.0-2.4 A. The final refined model comprises 897 protein atoms and 77 water molecules. The overall framework of krait phospholipase A2 with three long helices and two short antiparallel beta-strands is extremely similar to those observed for other group I PLA2s. However, the critical parts of PLA2 folding are concerned with its various functional loops. The conformations of these loops determine the efficiency of enzyme action and presence/absence of various pharmacological functions. In the present structure calcium-binding loop is occupied by a sodium ion with a 7-fold co-ordination. The conformation of loop 55-75 in krait PLA2 corresponds to a very high activity of the enzyme. A comparison of its sequence with multimeric PLA2s clearly shows the absence of critical residues such as Tyr3, Trp61 and Phe64, which are involved in the multimerization of PLA2 molecules. The protein shows anticoagulant and neurotoxic activities.
这是来自金环蛇家族的首个磷脂酶A2(PLA2)结构。该蛋白质是从印度眼镜蛇(普通金环蛇)中分离出来的,其一级序列通过cDNA方法确定。利用β2-银环蛇毒素(多带银环蛇)的PLA2组分模型,通过分子置换法确定了这种I型突触前神经毒性PLA2的三维结构,并使用CNS软件包进行精修,对于分辨率范围在20.0 - 2.4 Å的所有数据,最终R因子为20.1%。最终精修模型包含897个蛋白质原子和77个水分子。金环蛇磷脂酶A2具有三个长螺旋和两条短的反平行β链的整体框架与其他I型PLA2s观察到的结构极为相似。然而,PLA2折叠的关键部分涉及其各种功能环。这些环的构象决定了酶的作用效率以及各种药理功能的有无。在当前结构中,钙结合环被一个具有七重配位的钠离子占据。金环蛇PLA2中55 - 75环的构象对应于该酶的非常高的活性。将其序列与多聚体PLA2s进行比较清楚地表明,不存在参与PLA2分子多聚化的关键残基,如Tyr3、Trp61和Phe64。该蛋白质具有抗凝和神经毒性活性。