...
首页> 外文期刊>BMC research notes >Evolution of the eukaryotic ARP2/3 activators of the WASP family: WASP, WAVE, WASH, and WHAMM, and the proposed new family members WAWH and WAML
【24h】

Evolution of the eukaryotic ARP2/3 activators of the WASP family: WASP, WAVE, WASH, and WHAMM, and the proposed new family members WAWH and WAML

机译:WASP家族的真核ARP2 / 3激活剂的进化:WASP,WAVE,WASH和WHAMM,以及拟议的新家族成员WAWH和WAML

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background WASP family proteins stimulate the actin-nucleating activity of the ARP2/3 complex. They include members of the well-known WASP and WAVE/Scar proteins, and the recently identified WASH and WHAMM proteins. WASP family proteins contain family specific N-terminal domains followed by proline-rich regions and C-terminal VCA domains that harbour the ARP2/3-activating regions. Results To reveal the evolution of ARP2/3 activation by WASP family proteins we performed a "holistic" analysis by manually assembling and annotating all homologs in most of the eukaryotic genomes available. We have identified two new families: the WAML proteins (WASP and MIM like), which combine the membrane-deforming and actin bundling functions of the IMD domains with the ARP2/3-activating VCA regions, and the WAWH protein (WASP without WH1 domain) that have been identified in amoebae, Apusozoa, and the anole lizard. Surprisingly, with one exception we did not identify any alternative splice forms for WASP family proteins, which is in strong contrast to other actin-binding proteins like Ena/VASP , MIM, or NHS proteins that share domains with WASP proteins. Conclusions Our analysis showed that the last common ancestor of the eukaryotes must have contained a homolog of WASP, WAVE, and WASH. Specific families have subsequently been lost in many taxa like the WASPs in plants, algae, Stramenopiles, and Euglenozoa , and the WASH proteins in fungi. The WHAMM proteins are metazoa specific and have most probably been invented by the Eumetazoa. The diversity of WASP family proteins has strongly been increased by many species- and taxon-specific gene duplications and multimerisations. All data is freely accessible via http://www.cymobase.org .
机译:背景WASP家族蛋白刺激ARP2 / 3复合物的肌动蛋白成核活性。它们包括著名的WASP和WAVE / Scar蛋白以及最近鉴定的WASH和WHAMM蛋白的成员。 WASP家族蛋白包含家族特异性的N末端结构域,其后是富含脯氨酸的区域和带有ARP2 / 3激活区域的C末端VCA结构域。结果为了揭示WASP家族蛋白激活ARP2 / 3的进化,我们通过手工组装和注释大多数可用的真核基因组中的所有同源物,进行了“整体”分析。我们已经确定了两个新的家族:WAML蛋白(类似WASP和MIM),它们结合了IMD域的膜变形和肌动蛋白捆绑功能以及ARP2 / 3激活的VCA区,以及WAWH蛋白(没有WH1域的WASP) )已在变形虫,Apusozoa和蜥蜴蜥蜴中发现。令人惊讶的是,除了一个例外,我们没有发现WASP家族蛋白的任何其他剪接形式,这与其他肌动蛋白结合蛋白(例如Ena / VASP,MIM或NHS蛋白,与WASP蛋白共享结构域)形成强烈反差。结论我们的分析表明,真核生物的最后共同祖先必须含有WASP,WAVE和WASH的同源物。随后,许多类群中失去了特定的家族,例如植物中的WASP,藻类,Stramenopiles和Euglenozoa,以及真菌中的WASH蛋白。 WHAMM蛋白具有后生特异性,并且很可能是由Eumetazoa发明的。许多物种和分类群特异性的基因重复和多聚化作用极大地提高了WASP家族蛋白的多样性。所有数据均可通过http://www.cymobase.org免费访问。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号