Yu Kewei, Ramkumar Niveditha, Wong Kenneth Kin Lam, Tettweiler Gritta, Verheyen Esther M
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC, Canada.
Centre for Cell Biology, Development and Disease, Simon Fraser University, Burnaby, BC, Canada.
Front Cell Dev Biol. 2023 Oct 3;11:1214539. doi: 10.3389/fcell.2023.1214539. eCollection 2023.
Homeodomain-interacting protein kinases (Hipks) regulate cell proliferation, apoptosis, and tissue development. Overexpression of Hipk in causes tumorigenic phenotypes in larval imaginal discs. We find that depletion of Salt-inducible kinases Sik2 or Sik3 can suppress Hipk-induced overgrowth. Furthermore, co-expression of constitutively active forms of Sik2 or Sik3 with Hipk caused significant tissue hyperplasia and tissue distortion, indicating that both Sik2 and Sik3 can synergize with Hipk to promote tumorous phenotypes, accompanied by elevated dMyc, Armadillo/β-catenin, and the Yorkie target gene . Larvae expressing these hyperplastic growths also display an extended larval phase, characteristic of other tumour models. Examination of total protein levels from fly tissues showed that Hipk proteins were reduced when Siks were depleted through RNAi, suggesting that Siks may regulate Hipk protein stability and/or activity. Conversely, expression of constitutively active Siks with Hipk leads to increased Hipk protein levels. Furthermore, Hipk can interact with Sik2 and Sik3 by co-immunoprecipitation. Co-expression of both proteins leads to a mobility shift of Hipk protein, suggesting it is post-translationally modified. In summary, our research demonstrates a novel function of Siks in synergizing with Hipk to promote tumour growth.
同源结构域相互作用蛋白激酶(Hipks)调节细胞增殖、凋亡和组织发育。Hipk在幼虫成虫盘中的过表达会导致致瘤表型。我们发现,盐诱导激酶Sik2或Sik3的缺失可以抑制Hipk诱导的过度生长。此外,将Sik2或Sik3的组成型活性形式与Hipk共表达会导致显著的组织增生和组织变形,这表明Sik2和Sik3都可以与Hipk协同作用以促进肿瘤表型,同时伴随着dMyc、犰狳蛋白/β-连环蛋白以及Yorkie靶基因的升高。表达这些增生性生长的幼虫也表现出延长的幼虫期,这是其他肿瘤模型的特征。对果蝇组织总蛋白水平的检测表明,当通过RNA干扰使Siks缺失时,Hipk蛋白水平降低,这表明Siks可能调节Hipk蛋白的稳定性和/或活性。相反,将组成型活性Siks与Hipk一起表达会导致Hipk蛋白水平升高。此外,通过免疫共沉淀法发现Hipk可以与Sik2和Sik3相互作用。两种蛋白的共表达会导致Hipk蛋白的迁移率发生变化,这表明它发生了翻译后修饰。总之,我们的研究证明了Siks在与Hipk协同促进肿瘤生长方面具有新功能。