Jin Ye, Weinstein Daniel C
Program in Biology, The Graduate Center, The City University of New York, New York, NY 10016, USA.
Department of Biology, Queens College, The City University of New York, 65-30 Kissena Boulevard, Queens, NY 11367, USA.
Dev Biol. 2018 May 1;437(1):41-49. doi: 10.1016/j.ydbio.2018.03.008. Epub 2018 Mar 9.
The cement gland in Xenopus laevis has long been used as a model to study the interplay of cell signaling and transcription factors during embryogenesis. It has been shown that an intermediate level of Bone Morphogenetic Protein (BMP) signaling is essential for cement gland formation. In addition, several transcription factors have been linked to cement gland development. One of these, the homeodomain-containing protein Pitx1, can generate ectopic cement gland formation; however, the mechanisms underlying this process remain obscure. We report here, for the first time, a requirement for Pitx proteins in cement gland formation, in vivo: knockdown of both pitx1 and the closely related pitx2c inhibit endogenous cement gland formation. Pitx1 transcriptionally activates cement gland differentiation genes through both direct and indirect mechanisms, and functions as a transcriptional activator to inhibit BMP signaling. This inhibition, required for the expression of pitx genes, is partially mediated by Pitx1-dependent follistatin expression. Complete suppression of BMP signaling inhibits induction of cement gland markers by Pitx1; furthermore, we find that Pitx1 physically interacts with Smad1, an intracellular transducer of BMP signaling. We propose a model of cement gland formation in which Pitx1 limits local BMP signaling within the cement gland primordium, and recruits Smad1 to activate direct downstream targets.
非洲爪蟾的水泥腺长期以来一直被用作研究胚胎发育过程中细胞信号传导和转录因子相互作用的模型。研究表明,中等水平的骨形态发生蛋白(BMP)信号传导对于水泥腺的形成至关重要。此外,几种转录因子与水泥腺的发育有关。其中之一,含同源结构域的蛋白Pitx1,可导致异位水泥腺形成;然而,这一过程的潜在机制仍不清楚。我们在此首次报告了体内水泥腺形成过程中对Pitx蛋白的需求:敲低pitx1和密切相关的pitx2c会抑制内源性水泥腺的形成。Pitx1通过直接和间接机制转录激活水泥腺分化基因,并作为转录激活因子抑制BMP信号传导。这种对pitx基因表达所必需的抑制作用部分由Pitx1依赖性卵泡抑素表达介导。完全抑制BMP信号传导会抑制Pitx1对水泥腺标志物的诱导;此外,我们发现Pitx1与BMP信号传导的细胞内转导器Smad1发生物理相互作用。我们提出了一个水泥腺形成的模型,其中Pitx1限制了水泥腺原基内的局部BMP信号传导,并招募Smad1来激活直接下游靶点。