Lee-Hoeflich Si Tuen, Zhao Xin, Mehra Arun, Attisano Liliana
Department of Medical Biophysics, University of Toronto, Toronto, Ont., Canada.
FEBS Lett. 2005 Aug 29;579(21):4615-21. doi: 10.1016/j.febslet.2005.06.088.
Wishful thinking (Wit) is a Drosophila transforming growth factor-beta (TGFbeta) superfamily type II receptor most related to the mammalian bone morphogenetic protein (BMP) type II receptor, BMPRII. To better understand its function, we undertook a biochemical approach to establish the ligand binding repertoire and downstream signaling pathway. We observed that BMP4 and BMP7, bound to receptor complexes comprised of Wit and the type I receptor thickveins and saxophone to activate a BMP-like signaling pathway. Further we demonstrated that both myoglianin and its most closely related mammalian ligand, myostatin, interacted with a Wit and Baboon (Babo) type II-type I receptor complex to activate TGFbeta/activin-like signaling pathways. These results thereby demonstrate that Wit binds multiple ligands to activate both BMP and TGFbeta-like signaling pathways. Given that myoglianin is expressed in muscle and glial-derived cells, these results also suggest that Wit may mediate myoglianin-dependent signals in the nervous system.
如意算盘(Wit)是一种果蝇转化生长因子-β(TGFβ)超家族II型受体,与哺乳动物骨形态发生蛋白(BMP)II型受体BMPRII最为相关。为了更好地理解其功能,我们采用生化方法来确定配体结合谱和下游信号通路。我们观察到,BMP4和BMP7与由Wit和I型受体粗脉和萨克斯风组成的受体复合物结合,以激活类似BMP的信号通路。此外,我们证明,肌生成抑制素及其最密切相关的哺乳动物配体肌肉生长抑制素,都与Wit和狒狒(Babo)II型-I型受体复合物相互作用,以激活TGFβ/激活素样信号通路。这些结果因此证明,Wit结合多种配体以激活BMP和TGFβ样信号通路。鉴于肌生成抑制素在肌肉和神经胶质衍生细胞中表达,这些结果还表明,Wit可能介导神经系统中依赖肌生成抑制素的信号。