Department of Developmental and Cell Biology, School of Biological Sciences, University of California Irvine, Irvine, California, United States of America.
PLoS One. 2012;7(9):e44009. doi: 10.1371/journal.pone.0044009. Epub 2012 Sep 11.
Insights into Bone morphogenetic protein (Bmp) functions during forebrain development have been limited by a lack of Bmp signaling readouts. Here we used a novel Bmp signaling reporter ("BRE-gal" mice) to study Bmp signaling in the dorsal telencephalon. At early stages, BRE-gal expression was restricted to the dorsal telencephalic midline. At later stages, strong BRE-gal expression occurred in neurons of the marginal zone and dentate gyrus. Comparisons to nuclear phospho-Smad1/5/8 (pSmad) and Msx1 indicated that BRE-gal expression occurred exclusively in neural cells with high-level Bmp signaling. BRE-gal responsiveness to Bmps was confirmed in reporter-negative cortical cells cultured with Bmp4, and both in vivo and in vitro, BRE-gal expression was switch-like, or ultrasensitive. In the early dorsal telencephalon, BRE-gal expression negatively correlated with the cortical selector gene Lhx2, indicating a BRE-gal expression border that coincides with the cortex-hem boundary. However, in Lhx2 null chimeras, neither BRE-gal nor nuclear pSmad increases were observed in ectopic hem cells. These findings establish BRE-gal as an ultrasensitive reporter of Bmp signaling in the dorsal telencephalon, imply that hem fate can be specified at different Bmp signaling intensities, and suggest that Lhx2 primarily regulates the responses to--rather than the intensity of--Bmp signaling in dorsal telencephalic cells.
骨形态发生蛋白(Bmp)在大脑前脑发育中的作用的研究受到缺乏 Bmp 信号转导检测的限制。在这里,我们使用一种新的 Bmp 信号报告基因(“BRE-gal”小鼠)来研究背侧端脑的 Bmp 信号。在早期,BRE-gal 表达局限于背侧端脑的中线。在后期,强烈的 BRE-gal 表达发生在边缘带和齿状回的神经元中。与核磷酸化 Smad1/5/8(pSmad)和 Msx1 的比较表明,BRE-gal 表达仅发生在具有高水平 Bmp 信号的神经细胞中。BRE-gal 对 Bmp4 的反应性在与 Bmp4 共培养的报告基因阴性皮质细胞中得到了证实,无论是在体内还是体外,BRE-gal 表达都是开关样的或超敏的。在早期的背侧端脑,BRE-gal 表达与皮质选择基因 Lhx2 呈负相关,表明 BRE-gal 表达边界与皮质-半球边界一致。然而,在 Lhx2 缺失嵌合体中,在异位半球细胞中既没有观察到 BRE-gal 也没有核 pSmad 的增加。这些发现确立了 BRE-gal 作为背侧端脑 Bmp 信号的超敏报告基因,暗示半球命运可以在不同的 Bmp 信号强度下被指定,并且表明 Lhx2 主要调节对 Bmp 信号的反应,而不是背侧端脑细胞中 Bmp 信号的强度。