School of Molecular and Biomedical Science, University of Adelaide, Adelaide, Australia.
PLoS One. 2012;7(1):e29041. doi: 10.1371/journal.pone.0029041. Epub 2012 Jan 26.
Congenital hydrocephalus (CH) is a life-threatening medical condition in which excessive accumulation of CSF leads to ventricular expansion and increased intracranial pressure. Stenosis (blockage) of the Sylvian aqueduct (Aq; the narrow passageway that connects the third and fourth ventricles) is a common form of CH in humans, although the genetic basis of this condition is unknown. Mouse models of CH indicate that Aq stenosis is associated with abnormal development of the subcommmissural organ (SCO) a small secretory organ located at the dorsal midline of the caudal diencephalon. Glycoproteins secreted by the SCO generate Reissner's fibre (RF), a thread-like structure that descends into the Aq and is thought to maintain its patency. However, despite the importance of SCO function in CSF homeostasis, the genetic program that controls SCO development is poorly understood. Here, we show that the X-linked transcription factor SOX3 is expressed in the murine SCO throughout its development and in the mature organ. Importantly, overexpression of Sox3 in the dorsal diencephalic midline of transgenic mice induces CH via a dose-dependent mechanism. Histological, gene expression and cellular proliferation studies indicate that Sox3 overexpression disrupts the development of the SCO primordium through inhibition of diencephalic roof plate identity without inducing programmed cell death. This study provides further evidence that SCO function is essential for the prevention of hydrocephalus and indicates that overexpression of Sox3 in the dorsal midline alters progenitor cell differentiation in a dose-dependent manner.
先天性脑积水 (CH) 是一种危及生命的医学病症,其特征是脑脊液的过度积累导致脑室扩张和颅内压升高。尽管这种情况的遗传基础尚不清楚,但 Sylvian 导水管 (Aq; 连接第三和第四脑室的狭窄通道) 狭窄是人类 CH 的一种常见形式。CH 的小鼠模型表明,Aq 狭窄与位于尾侧后脑背中线的小分泌器官——次室下器官 (SCO) 的异常发育有关。SCO 分泌的糖蛋白生成 Reissner's 纤维 (RF),这是一种线状结构,下降到 Aq 中,被认为维持其通畅。然而,尽管 SCO 功能对 CSF 动态平衡很重要,但控制 SCO 发育的遗传程序仍知之甚少。在这里,我们表明 X 连锁转录因子 SOX3 在其发育过程中和成熟器官中均在鼠 SCO 中表达。重要的是,转基因小鼠背侧间脑中线 Sox3 的过表达通过依赖于剂量的机制诱导 CH。组织学、基因表达和细胞增殖研究表明,Sox3 的过表达通过抑制间脑顶盖身份而破坏 SCO 原基的发育,而不诱导细胞程序性死亡。这项研究进一步证明了 SCO 功能对于预防脑积水是必不可少的,并表明 Sox3 在背中线的过表达以剂量依赖的方式改变祖细胞的分化。