Wen Wen, Pillai-Kastoori Lakshmi, Wilson Stephen G, Morris Ann C
Department of Biology, University of Kentucky, Lexington, KY 40506-0225, USA.
Department of Biology, University of Kentucky, Lexington, KY 40506-0225, USA.
Dev Biol. 2015 Mar 1;399(1):139-153. doi: 10.1016/j.ydbio.2014.12.026. Epub 2014 Dec 31.
SoxC transcription factors play critical roles in many developmental processes, including neurogenesis, cardiac formation, and skeletal differentiation. In vitro and in vivo loss-of-function studies have suggested that SoxC genes are required for oculogenesis; however the mechanism was poorly understood. Here, we have explored the function of the SoxC factor Sox4 during zebrafish eye development. We show that sox4a and sox4b are expressed in the forebrain and periocular mesenchyme adjacent to the optic stalk during early eye development. Knockdown of sox4 in zebrafish resulted in coloboma, a structural malformation of the eye that is a significant cause of pediatric visual impairment in humans, in which the choroid fissure fails to close. Sox4 morphants displayed altered proximo-distal patterning of the optic vesicle, including expanded pax2 expression in the optic stalk, as well as ectopic cell proliferation in the retina. We show that the abnormal ocular morphogenesis observed in Sox4-deficient zebrafish is caused by elevated Hedgehog (Hh) signaling, and this is due to increased expression of the Hh pathway ligand Indian Hedgehog b (ihhb). Consistent with these results, coloboma in sox4 morphants could be rescued by pharmacological treatment with the Hh inhibitor cyclopamine, or by co-knockdown of ihhb. Conversely, overexpression of sox4 reduced Hh signaling and ihhb expression, resulting in cyclopia. Finally, we demonstrate that sox4 and sox11 have overlapping, but not completely redundant, functions in regulating ocular morphogenesis. Taken together, our data demonstrate that Sox4 is required to limit the extent of Hh signaling during eye development, and suggest that mutations in SoxC factors could contribute to the development of coloboma.
SoxC转录因子在许多发育过程中发挥关键作用,包括神经发生、心脏形成和骨骼分化。体外和体内功能丧失研究表明,SoxC基因是眼发育所必需的;然而,其机制尚不清楚。在这里,我们探讨了SoxC因子Sox4在斑马鱼眼睛发育过程中的功能。我们发现,在眼睛发育早期,sox4a和sox4b在前脑和与视柄相邻的眼周间充质中表达。在斑马鱼中敲低sox4会导致脉络膜缺损,这是一种眼睛结构畸形,是人类儿童视力损害的重要原因,其中脉络膜裂未能闭合。Sox4突变体显示视泡的近端-远端模式改变,包括视柄中pax2表达的扩展,以及视网膜中的异位细胞增殖。我们表明,在Sox4缺陷的斑马鱼中观察到的异常眼形态发生是由刺猬信号通路(Hh)信号升高引起的,这是由于Hh信号通路配体印度刺猬b(ihhb)的表达增加。与这些结果一致,Sox4突变体中的脉络膜缺损可以通过用Hh抑制剂环杷明进行药物治疗,或通过共敲低ihhb来挽救。相反,sox4的过表达降低了Hh信号和ihhb表达,导致独眼畸形。最后,我们证明sox4和sox11在调节眼形态发生方面具有重叠但并非完全冗余的功能。综上所述,我们的数据表明,Sox4是限制眼睛发育过程中Hh信号通路程度所必需的,并表明SoxC因子的突变可能导致脉络膜缺损的发生。