MRC Protein Phosphorylation and Ubiquitylation Unit, University of Dundee, Dow St., Dundee DD1 5EH, UK.
Open Biol. 2014 Feb 19;4(2):130210. doi: 10.1098/rsob.130210.
Bone morphogenetic proteins (BMPs) control multiple cellular processes in embryos and adult tissues. BMPs signal through the activation of type I BMP receptor kinases, which then phosphorylate SMADs 1/5/8. In the canonical pathway, this triggers the association of these SMADs with SMAD4 and their translocation to the nucleus, where they regulate gene expression. BMPs can also signal independently of SMAD4, but this pathway is poorly understood. Here, we report the discovery and characterization of PAWS1/FAM83G as a novel SMAD1 interactor. PAWS1 forms a complex with SMAD1 in a SMAD4-independent manner, and BMP signalling induces the phosphorylation of PAWS1 through BMPR1A. The phosphorylation of PAWS1 in response to BMP is essential for activation of the SMAD4-independent BMP target genes NEDD9 and ASNS. Our findings identify PAWS1 as the first non-SMAD substrate for type I BMP receptor kinases and as a novel player in the BMP pathway. We also demonstrate that PAWS1 regulates the expression of several non-BMP target genes, suggesting roles for PAWS1 beyond the BMP pathway.
骨形态发生蛋白(BMPs)在胚胎和成人组织中控制着多种细胞过程。BMP 通过激活 I 型 BMP 受体激酶来传递信号,然后磷酸化 SMADs1/5/8。在经典途径中,这会触发这些 SMAD 与 SMAD4 的结合,并将其转位到细胞核中,在细胞核中它们调节基因表达。BMP 也可以独立于 SMAD4 信号传递,但该途径尚未得到很好的理解。在这里,我们报告了 PAWS1/FAM83G 作为一种新型 SMAD1 相互作用蛋白的发现和特性。PAWS1 以不依赖于 SMAD4 的方式与 SMAD1 形成复合物,并且 BMP 信号通过 BMPR1A 诱导 PAWS1 的磷酸化。BMP 对 PAWS1 的磷酸化对于激活非 SMAD4 依赖性 BMP 靶基因 NEDD9 和 ASNS 是必不可少的。我们的研究结果确定 PAWS1 是 I 型 BMP 受体激酶的第一个非 SMAD 底物,也是 BMP 途径中的一个新成员。我们还证明 PAWS1 调节几个非 BMP 靶基因的表达,这表明 PAWS1 在 BMP 途径之外具有作用。