Matallanas David, Arozarena Imanol, Berciano Maria T, Aaronson David S, Pellicer Angel, Lafarga Miguel, Crespo Piero
Departamentos de Biología Molecular, Universidad de Cantabria, Santander 39011, Spain.
J Biol Chem. 2003 Feb 14;278(7):4572-81. doi: 10.1074/jbc.M209807200. Epub 2002 Nov 27.
Ras GTPases include the isoforms H-Ras, K-Ras, and N-Ras. Despite their great biochemical and biological similarities, evidence is mounting suggesting that Ras proteins may not be functionally redundant. A widespread strategy for studying small GTPases is the utilization of dominant inhibitory mutants that specifically block the activation of their respective wild-type proteins. As such, H-Ras N17 has proved to be extremely valuable as a tool to probe Ras functions. However, a comparative study on the inhibitory specificities of H-, K-, and N-Ras N17 mutants has not been approached thus far. Herein, we demonstrate that H-, K-, and N-Ras N17 mutants exhibit markedly distinct inhibitory effects toward H-, K-, and N-Ras. H-Ras N17 can effectively inhibit the activation of all three isoforms. K-Ras N17 completely blocks the activation of K-Ras and is only slightly inhibitory on H-Ras. N-Ras N17 can mainly inhibit N-Ras activation. In light of the recent data on the compartmentalization of H-Ras and K-Ras in the plasma membrane, here we present for the first time a description of N-Ras cellular microlocalization. Overall, our results on Ras N17 mutants specificities exhibit a marked correlation with the localization of the Ras isoforms to distinct membrane microdomains.
Ras GTP酶包括H-Ras、K-Ras和N-Ras等亚型。尽管它们在生化和生物学方面有很大的相似性,但越来越多的证据表明Ras蛋白在功能上可能并非冗余。研究小GTP酶的一种广泛策略是利用显性抑制突变体,这些突变体可特异性阻断其各自野生型蛋白的激活。因此,H-Ras N17已被证明作为一种探究Ras功能的工具极具价值。然而,迄今为止尚未对H-Ras、K-Ras和N-Ras N17突变体的抑制特异性进行比较研究。在此,我们证明H-Ras、K-Ras和N-Ras N17突变体对H-Ras、K-Ras和N-Ras表现出明显不同的抑制作用。H-Ras N17可有效抑制所有三种亚型的激活。K-Ras N17完全阻断K-Ras的激活,对H-Ras仅有轻微抑制作用。N-Ras N17主要抑制N-Ras的激活。鉴于最近有关H-Ras和K-Ras在质膜中分隔化的数据,在此我们首次描述了N-Ras在细胞内的微定位。总体而言,我们关于Ras N17突变体特异性的结果与Ras亚型在不同膜微区的定位呈现出显著相关性。