Neuroscience Research Institute, National Institute of Advanced Industrial Science and Technology, AIST Central 6, 1-1-1 Higashi, Tsukuba 305-8566, Japan.
Genes Cells. 2009 May;14(5):583-95. doi: 10.1111/j.1365-2443.2009.01291.x. Epub 2009 Apr 13.
In vertebrates, BMPs are known to induce epidermal fate at the expense of neural fate. To further explore the molecular mechanisms of epidermal differentiation, we have developed an expression cloning system for isolating cDNAs that encode intrinsic proteins with epidermal-inducing activity. Under our conditions, 92.5% of the dissociated animal cap cells treated with the conditioned medium from H(2)O-injected control oocytes differentiated into neural tissue, which developed neural fibers and expressed a neural marker (NCAM). In contrast, when dissociated animal cap cells were treated with the supernatant collected from the culture of BMP-4 mRNA-injected oocytes, the microcultures differentiated into epidermal tissue, which developed cilium. The cells expressed an epidermal marker (keratin), but not NCAM. Using the dissociated animal cap cells in a functional screening system, we cloned a cDNA encoding a novel polypeptide, Xenopus zygote arrest 2 (Xzar2). Over-expression of Xzar2 caused anterior defects and suppressed expressions of the neural markers. The epidermalization-promoting activity of Xzar2 was substantially not affected by over-expression of the BMP signaling antagonists Smad6 and 7, and a dominant negative receptor for BMP (tBR). Our results suggest that Xzar2 is involved in epidermal fate determination mainly through signaling pathways distinct from that of BMP-Smad during early embryogenesis.
在脊椎动物中,已知 BMP 能诱导表皮命运,牺牲神经命运。为了进一步探讨表皮分化的分子机制,我们开发了一种表达克隆系统,用于分离编码具有表皮诱导活性的内在蛋白的 cDNA。在我们的条件下,用 H₂O 注射对照卵母细胞的条件培养基处理的分离动物帽细胞中有 92.5%分化为神经组织,其发育出神经纤维并表达神经标记物(NCAM)。相比之下,当分离的动物帽细胞用 BMP-4 mRNA 注射卵母细胞培养物上清液处理时,微培养物分化为表皮组织,形成纤毛。细胞表达表皮标记物(角蛋白),但不表达 NCAM。我们在功能筛选系统中使用分离的动物帽细胞,克隆了一个编码新型多肽的 cDNA,即 Xenopus zygote arrest 2 (Xzar2)。Xzar2 的过表达导致了前脑缺陷,并抑制了神经标记物的表达。Xzar2 的表皮化促进活性基本上不受 BMP 信号转导拮抗剂 Smad6 和 7 的过表达以及 BMP 受体的显性负突变体(tBR)的影响。我们的结果表明,Xzar2 主要通过与早期胚胎发生中 BMP-Smad 不同的信号通路参与表皮命运决定。