Jozwick Lucas M, Bidwai Ashok P
Department of Biology Life Sciences Building, West Virginia University, 53 Campus Drive, Morgantown, WV, 26506-6057, USA.
Mol Cell Biochem. 2023 Apr;478(4):781-790. doi: 10.1007/s11010-022-04539-5. Epub 2022 Sep 10.
Across metazoan animals, the effects of Notch signaling are mediated via the Enhancer of Split (E(spl)/HES) basic Helix-Loop-Helix-Orange (bHLH-O) repressors. Although these repressors are generally conserved, their sequence diversity is, in large part, restricted to the C-terminal domain (CtD), which separates the Orange (O) domain from the penultimate WRPW tetrapeptide motif that binds the obligate co-repressor Groucho. While the kinases CK2 and MAPK target the CtD and regulate Drosophila E(spl)-M8 and mammalian HES6, the generality of this regulation to other E(spl)/HES repressors has remained unknown. To determine the broader impact of phosphorylation on this large family of repressors, we conducted bioinformatics, evolutionary, and biochemical analyses. Our studies identify E(spl)-Mγ as a new target of native CK2 purified from Drosophila embryos, reveal that phosphorylation is specific to CK2 and independent of the regulatory CK2-β subunit, and identify that the site of phosphorylation is juxtaposed to the WRPW motif, a feature unique to and conserved in the Mγ homologues over 50 × 10 years of Drosophila evolution. Thus, a preponderance of E(spl) homologues (four out of seven total) in Drosophila are targets for CK2, and the distinct positioning of the CK2 and MAPK sites raises the prospect that phosphorylation underlies functional diversity of bHLH-O proteins.
在后生动物中,Notch信号的作用是通过分裂增强子(E(spl)/HES)碱性螺旋-环-螺旋-橙(bHLH-O)阻遏物介导的。尽管这些阻遏物通常是保守的,但它们的序列多样性在很大程度上仅限于C末端结构域(CtD),该结构域将橙(O)结构域与结合必需共阻遏物Groucho的倒数第二个WRPW四肽基序分开。虽然激酶CK2和MAPK靶向CtD并调节果蝇的E(spl)-M8和哺乳动物的HES6,但这种调节对其他E(spl)/HES阻遏物的普遍性仍然未知。为了确定磷酸化对这一大类阻遏物的更广泛影响,我们进行了生物信息学、进化和生化分析。我们的研究确定E(spl)-Mγ是从果蝇胚胎中纯化的天然CK2的新靶点,揭示磷酸化对CK2具有特异性且独立于调节性CK2-β亚基,并确定磷酸化位点与WRPW基序相邻,这是果蝇进化50×10年以上Mγ同源物特有的且保守的特征。因此,果蝇中大多数E(spl)同源物(总共七个中的四个)是CK2的靶点,CK2和MAPK位点的独特定位增加了磷酸化是bHLH-O蛋白功能多样性基础的可能性。