Behesti Hourinaz, Holt James K L, Sowden Jane C
Developmental Biology Unit, Institute of Child Health, University College London, 30 Guilford Street, London, WC1N 1EH, UK.
BMC Dev Biol. 2006 Dec 15;6:62. doi: 10.1186/1471-213X-6-62.
Polarised gene expression is thought to lead to the graded distribution of signaling molecules providing a patterning mechanism across the embryonic eye. Bone morphogenetic protein 4 (Bmp4) is expressed in the dorsal optic vesicle as it transforms into the optic cup. Bmp4 deletions in human and mouse result in failure of eye development, but little attempt has been made to investigate mammalian targets of BMP4 signaling. In chick, retroviral gene overexpression studies indicate that Bmp4 activates the dorsally expressed Tbx5 gene, which represses ventrally expressed cVax. It is not known whether the Tbx5 related genes, Tbx2 and Tbx3, are BMP4 targets in the mammalian retina and whether BMP4 acts at a distance from its site of expression. Although it is established that Drosophila Dpp (homologue of vertebrate Bmp4) acts as a morphogen, there is little evidence that BMP4 gradients are interpreted to create domains of BMP4 target gene expression in the mouse.
Our data show that the level of BMP4 signaling is critical for the regulation of distinct Tbx2, Tbx3, Tbx5 and Vax2 gene expression domains along the dorso-ventral axis of the mouse optic cup. BMP4 signaling gradients were manipulated in whole mouse embryo cultures during optic cup development, by implantation of beads soaked in BMP4, or the BMP antagonist Noggin, to provide a local signaling source. Tbx2, Tbx3 and Tbx5, showed a differential response to alterations in the level of BMP4 along the entire dorso-ventral axis of the optic cup, suggesting that BMP4 acts across a distance. Increased levels of BMP4 caused expansion of Tbx2 and Tbx3, but not Tbx5, into the ventral retina and repression of the ventral marker Vax2. Conversely, Noggin abolished Tbx5 expression but only shifted Tbx2 expression dorsally. Increased levels of BMP4 signaling caused decreased proliferation, reduced retinal volume and altered the shape of the optic cup.
Our findings suggest the existence of a dorsal-high, ventral-low BMP4 signaling gradient across which distinct domains of Tbx2, Tbx3, Tbx5 and Vax2 transcription factor gene expression are set up. Furthermore we show that the correct level of BMP4 signaling is critical for normal growth of the mammalian embryonic eye.
极化基因表达被认为会导致信号分子的梯度分布,从而为整个胚胎眼提供一种模式形成机制。骨形态发生蛋白4(Bmp4)在背侧视泡转变为视杯时表达。人类和小鼠中的Bmp4缺失会导致眼睛发育失败,但很少有人尝试研究BMP4信号传导的哺乳动物靶点。在鸡中,逆转录病毒基因过表达研究表明,Bmp4激活背侧表达的Tbx5基因,而Tbx5基因会抑制腹侧表达的cVax。目前尚不清楚Tbx5相关基因Tbx2和Tbx3是否为哺乳动物视网膜中的BMP4靶点,以及BMP4是否在远离其表达位点的位置发挥作用。尽管已经确定果蝇Dpp(脊椎动物Bmp4的同源物)作为一种形态发生素起作用,但几乎没有证据表明BMP4梯度在小鼠中被解读以创建BMP4靶基因表达的区域。
我们的数据表明,BMP4信号传导水平对于沿小鼠视杯背腹轴调节不同的Tbx2、Tbx3、Tbx5和Vax2基因表达域至关重要。在视杯发育过程中,通过植入浸泡有BMP4或BMP拮抗剂Noggin的珠子,在全小鼠胚胎培养物中操纵BMP4信号传导梯度,以提供局部信号源。Tbx2、Tbx3和Tbx5对视杯整个背腹轴上BMP4水平的变化表现出不同的反应,这表明BMP4在一定距离外发挥作用。BMP4水平的升高导致Tbx2和Tbx3扩展到腹侧视网膜,但Tbx5没有,同时腹侧标记物Vax2受到抑制。相反,Noggin消除了Tbx5的表达,但仅使Tbx2的表达向背侧移动。BMP4信号传导水平的升高导致增殖减少、视网膜体积减小并改变视杯形状。
我们的研究结果表明,存在一个背高、腹低的BMP4信号梯度,沿着这个梯度建立了Tbx2、Tbx3、Tbx5和Vax2转录因子基因表达的不同区域。此外,我们表明正确水平的BMP4信号传导对于哺乳动物胚胎眼的正常生长至关重要。