Physical Chemistry I, Biophysical Chemistry, Faculty of Chemistry, TU Dortmund University, Otto-Hahn-Str. 6, 44227, Dortmund, Germany.
Eur Biophys J. 2012 Oct;41(10):801-13. doi: 10.1007/s00249-012-0841-5. Epub 2012 Aug 1.
Ras proteins are proto-oncogenes that function as molecular switches linking extracellular stimuli with an overlapping but distinctive range of biological outcomes. Although modulatable interactions between the membrane and the Ras C-terminal hypervariable region (HVR) harbouring the membrane anchor motifs enable signalling specificity to be determined by their location, it is becoming clear that the spatial orientation of different Ras proteins is also crucial for their functions. To reveal the orientation of the G-domain at membranes, we conducted an extensive study on different Ras isoforms anchored to model raft membranes. The results show that the G-domain mediates the Ras-membrane interaction by inducing different sets of preferred orientations in the active and inactive states with largely parallel orientation relative to the membrane of most of the helices. The distinct locations of the different isoforms, exposing them to different effectors and regulators, coupled with different G-domain-membrane orientation, suggests synergy between this type of recognition motif and the specificity conferred by the HVR, thereby validating the concept of isoform specificity in Ras.
Ras 蛋白是原癌基因,作为分子开关,将细胞外刺激与重叠但独特的一系列生物效应联系起来。虽然膜与 Ras C 端超变区(HVR)之间可调节的相互作用,其中包含膜锚定基序,使信号特异性能够通过其位置来确定,但越来越清楚的是,不同 Ras 蛋白的空间取向对于它们的功能也是至关重要的。为了揭示 G 结构域在膜上的取向,我们对锚定在模型筏状膜上的不同 Ras 同工型进行了广泛的研究。结果表明,G 结构域通过在活性和非活性状态下诱导不同的优选取向来介导 Ras-膜相互作用,大多数螺旋与膜之间的取向基本平行。不同同工型的不同位置,使它们与不同的效应物和调节剂接触,再加上 G 结构域-膜的不同取向,表明这种识别基序与 HVR 赋予的特异性之间存在协同作用,从而验证了 Ras 中同工型特异性的概念。