Chen Y L, Huang T F, Chen S W, Tsai I H
Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan, Republic of China.
Biochem J. 1995 Jan 15;305 ( Pt 2)(Pt 2):513-20. doi: 10.1042/bj3050513.
Two new variants of short disintegrins were purified from the venom of Echis carinatus leakeyi and named echistatin beta and gamma. These proteins were found to be about 85% similar in amino acid sequence to echistatin alpha which has been well studied. The disulphide pattern of echistatin gamma appeared to be identical with that of echistatin alpha. They all contain the adhesive recognition sequence Arg-Gly-Asp (RGD) but inhibit the aggregation of platelets from human and other mammals with different potencies. Echistatin beta and alpha are far more effective on platelets from humans and guinea pigs than those from rabbits and rats whereas echistatin gamma is less discriminating of the platelets of the species tested. This species-dependent platelet sensitivity to echistatin beta and gamma could be attributed to the variations in residues 15, 21, 22 and 27, which are close to or within the RGD loop, rather than to the C-terminal variations after residue 46. Taking advantage of the presence of methionine residues flanking both sides of the ARGDDM motif in echistatin gamma, we deleted this hexapeptide by CNBr cleavage to produce des-(23-28)-echistatin gamma. The modified protein showed c.d. and fluorescent spectra grossly similar to the intact echistatin but its antiplatelet potency decreased more than 200-fold. We thus propose that a favourable conformation of the RGD region is responsible mainly for the high-affinity binding of echistatin to the platelet glycoprotein IIb-IIIa as shown previously for the binding of medium-size disintegrin.
从东非绿曼巴蛇(Echis carinatus leakeyi)毒液中纯化出两种新型短链去整合素,分别命名为echistatin beta和gamma。发现这些蛋白质的氨基酸序列与已得到充分研究的echistatin alpha约85%相似。echistatin gamma的二硫键模式似乎与echistatin alpha相同。它们都含有黏附识别序列精氨酸-甘氨酸-天冬氨酸(Arg-Gly-Asp,RGD),但对人和其他哺乳动物血小板聚集的抑制作用效力不同。Echistatin beta和alpha对人和豚鼠血小板的作用远比兔和大鼠血小板更有效,而echistatin gamma对所测试物种的血小板的区分度较小。这种物种依赖性的血小板对echistatin beta和gamma的敏感性可归因于靠近RGD环或在RGD环内的第15、21、22和27位残基的变异,而不是46位残基之后的C端变异。利用echistatin gamma中ARGDDM基序两侧存在甲硫氨酸残基这一特点,我们通过溴化氰裂解删除了这个六肽,从而产生去(23 - 28)-echistatin gamma。修饰后的蛋白质的圆二色光谱和荧光光谱与完整的echistatin大致相似,但其抗血小板效力下降了200多倍。因此我们提出,RGD区域的有利构象主要负责echistatin与血小板糖蛋白IIb-IIIa的高亲和力结合,如先前对中等大小去整合素结合所显示的那样。