Centro de Biología Molecular "Severo Ochoa", CSIC and Universidad Autónoma de Madrid, Madrid, 28049, Spain.
Centro de Biología Molecular "Severo Ochoa", CSIC and Universidad Autónoma de Madrid, Madrid, 28049, Spain.
Dev Biol. 2020 May 15;461(2):172-183. doi: 10.1016/j.ydbio.2020.02.009. Epub 2020 Feb 14.
Ras1 (Ras85D) and Ras2 (Ras64B) are the Drosophila orthologs of human H-Ras/N-Ras/K-Ras and R-Ras1-3 genes, respectively. The function of Ras1 has been thoroughly characterised during Drosophila embryonic and imaginal development, and it is associated with coupling activated trans-membrane receptors with tyrosine kinase activity to their downstream effectors. In this capacity, Ras1 binds and is required for the activation of Raf. Ras1 can also interact with PI3K, and it is needed to achieve maximal levels of PI3K signalling in specific cellular settings. In contrast, the function of the unique Drosophila R-Ras member (Ras2/Ras64B), which is more closely related to vertebrate R-Ras2/TC21, has been only studied through the use of constitutively activated forms of the protein. This pioneering work identified a variety of phenotypes that were related to those displayed by Ras1, suggesting that Ras1 and Ras2 might have overlapping activities. Here we find that Ras2 can interact with PI3K and Raf and activate their downstream effectors Akt and Erk. However, and in contrast to mutants in Ras1, which are lethal, null alleles of Ras2 are viable in homozygosis and only show a phenotype of reduced wing size and extended life span that might be related to reduced Insulin receptor signalling.
Ras1(Ras85D)和 Ras2(Ras64B)分别是果蝇与人 H-Ras/N-Ras/K-Ras 和 R-Ras1-3 基因的同源物。Ras1 在果蝇胚胎和成虫发育过程中的功能已经得到了深入研究,它与将激活的跨膜受体与酪氨酸激酶活性偶联到其下游效应物有关。在这种情况下,Ras1 与 Raf 结合并被激活。Ras1 还可以与 PI3K 相互作用,并且在特定的细胞环境中需要达到最大水平的 PI3K 信号。相比之下,独特的果蝇 R-Ras 成员(Ras2/Ras64B)的功能仅通过使用该蛋白的组成性激活形式进行了研究,该成员与脊椎动物 R-Ras2/TC21 更为密切相关。这项开创性的工作确定了各种与 Ras1 显示的表型相关的表型,表明 Ras1 和 Ras2 可能具有重叠的活性。在这里,我们发现 Ras2 可以与 PI3K 和 Raf 相互作用并激活它们的下游效应物 Akt 和 Erk。然而,与 Ras1 突变体不同的是,Ras2 的缺失等位基因在纯合子中是存活的,并且仅表现出翅膀尺寸减小和寿命延长的表型,这可能与胰岛素受体信号转导的降低有关。