Instituto de Biomedicina de Valencia, C.S.I.C., Jaume Roig 11, 46010 Valencia, Spain.
Toxicon. 2012 Sep 15;60(4):665-75. doi: 10.1016/j.toxicon.2012.05.010. Epub 2012 Jun 4.
The requirements to transform a short disintegrin of the RGD clade into an RTS disintegrin, were investigated through the generation of recombinant mutants of ocellatusin in which the RGD tripeptide was substituted for RTS in different positions along the integrin-specificity loop. Any attempt to create an active integrin α(1)β(1) inhibitory motif within the specificity loop of ocellatusin was unsuccessful. Replacing the whole RGD-loop of ocellatusin by the RTS-loop of jerdostatin was neither sufficient for confering α(1)β(1) binding specificity to this ocellatusin-RTS Frankenstein(2) mutant. Factors other than the integrin-binding loop sequence per se are thus required to transform a disintegrin scaffold from the RGD clade into another scaffold from the RTS/KTS clade. Moreover, our results provide evidences, that the RTS/KTS short disintegrins have potentially been recruited into the venom gland of Eurasian vipers independently from the canonical neofunctionalization pathway of the RGD disintegrins. PCR-amplifications of jerdostatin-like sequences from a number of taxa across reptiles, including snakes (Crotalinae, Viperinae, and Elapidae taxa) and lizards (Lacertidae and Iguanidae) clearly showed that genes coding for RTS/KTS disintegrins existed long before the split of Lacertidae and Iguania, thus predating the recruitment of the SVMP precursors of disintegrins, providing strong support for the view of an independent evolutionary history of the RTS/KTS and the RGD clades of short disintegrins.
为了将短整联蛋白的 RGD 族转变为 RTS 整联蛋白,我们通过在整合素特异性环中不同位置用 RTS 取代 ocellatusin 中的 RGD 三肽来生成重组突变体来研究其要求。在 ocellatusin 的特异性环内创建具有活性的整合素 α(1)β(1)抑制基序的任何尝试均未成功。用 jerdostatin 的 RTS 环替换 ocellatusin 的整个 RGD 环也不足以使该 ocellatusin-RTS Frankenstein(2)突变体赋予与 α(1)β(1)结合的特异性。因此,除了整合素结合环序列本身之外,还有其他因素需要将整联蛋白骨架从 RGD 族转变为 RTS/KTS 族的另一个骨架。此外,我们的结果提供了证据,表明 RTS/KTS 短整联蛋白已经从 RGD 整联蛋白的经典新功能化途径中独立地被招募到欧亚毒蛇的毒液腺中。从包括蛇(Crotalinae、Viperinae 和 Elapidae 类群)和蜥蜴(Lacertidae 和 Iguanidae)在内的爬行动物的许多分类群中扩增 jerdostatin 样序列的 PCR 扩增清楚地表明,编码 RTS/KTS 整联蛋白的基因在 Lacertidae 和 Iguania 分裂之前就已经存在,因此早于整联蛋白 SVMP 前体的招募,为 RTS/KTS 和 RGD 族短整联蛋白的独立进化历史提供了有力支持。