Arur Swathi, Ohmachi Mitsue, Nayak Sudhir, Hayes Matthew, Miranda Alejandro, Hay Amanda, Golden Andy, Schedl Tim
Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110, USA.
Proc Natl Acad Sci U S A. 2009 Mar 24;106(12):4776-81. doi: 10.1073/pnas.0812285106. Epub 2009 Mar 5.
RAS-extracellular signal regulated kinase (ERK) signaling governs multiple aspects of cell fate specification, cellular transitions, and growth by regulating downstream substrates through phosphorylation. Understanding how perturbations to the ERK signaling pathway lead to developmental disorders and cancer hinges critically on identification of the substrates. Yet, only a limited number of substrates have been identified that function in vivo to execute ERK-regulated processes. The Caenorhabditis elegans germ line utilizes the well-conserved RAS-ERK signaling pathway in multiple different contexts. Here, we present an integrated functional genomic approach that identified 30 ERK substrates, each of which functions to regulate one or more of seven distinct biological processes during C. elegans germ-line development. Our results provide evidence for three themes that underlie the robustness and specificity of biological outcomes controlled by ERK signaling in C. elegans that are likely relevant to ERK signaling in other organisms: (i) multiple diverse ERK substrates function to control each individual biological process; (ii) different combinations of substrates function to control distinct biological processes; and (iii) regulatory feedback loops between ERK and its substrates help reinforce or attenuate ERK activation. Substrates identified here have conserved orthologs in humans, suggesting that insights from these studies will contribute to our understanding of human diseases involving deregulated ERK activity.
RAS-细胞外信号调节激酶(ERK)信号传导通过磷酸化调节下游底物,从而控制细胞命运决定、细胞转变和生长的多个方面。了解ERK信号通路的扰动如何导致发育障碍和癌症,关键在于确定底物。然而,在体内发挥作用以执行ERK调节过程的底物数量有限。秀丽隐杆线虫的生殖系在多种不同情况下利用高度保守的RAS-ERK信号通路。在这里,我们提出了一种综合功能基因组学方法,该方法确定了30种ERK底物,每种底物在秀丽隐杆线虫生殖系发育过程中调节七个不同生物学过程中的一个或多个。我们的结果为三个主题提供了证据,这些主题是秀丽隐杆线虫中ERK信号控制生物学结果的稳健性和特异性的基础,可能与其他生物体中的ERK信号传导相关:(i)多种不同的ERK底物发挥作用来控制每个单独的生物学过程;(ii)底物的不同组合发挥作用来控制不同的生物学过程;(iii)ERK与其底物之间的调节反馈回路有助于增强或减弱ERK激活。这里确定的底物在人类中有保守的直系同源物,这表明这些研究的见解将有助于我们理解涉及ERK活性失调的人类疾病。