National Brain Research Centre, Manesar, India.
Stem Cells Dev. 2012 May 1;21(7):1059-68. doi: 10.1089/scd.2011.0206. Epub 2011 Aug 24.
The regulation of cell proliferation in the external granular layer (EGL) of the developing cerebellum is important for its normal patterning. An important signal that regulates EGL cell proliferation is Sonic hedgehog (Shh). Shh is secreted by the Purkinje cells (PC) and has a mitogenic effect on the granule cell precursors of the EGL. Deregulation of Shh signaling has been associated with abnormal development, and been implicated in medulloblastomas, which are tumors that arise from the cerebellum. Given the importance of the Shh pathway in cerebellum development and disease, there has been no systematic study of its expression pattern during human cerebellum development. In this study, we describe the expression pattern of Shh, its receptor patched, smoothened, and its effectors that belong to the Gli family of transcription factors, during normal human cerebellum development from 10 weeks of gestational age, and in medulloblastomas that represents a case of abnormal cell proliferation in the cerebellum. This expression pattern is compared to equivalent stages in the normal development of cerebellum in mouse, as well as in tumors. Important differences between human and mouse that reflect differences in the normal developmental program between the 2 species are observed. First, in humans there appears to be a stage of Shh signaling within the EGL, when the PC are not yet the source of Shh. Second, unlike in the postnatal mouse cerebellum, expression of Shh in the PC in the postnatal human cerebellum is downregulated. Finally, medulloblastomas in the human but not in patched heterozygote mouse express Shh. These results highlight cross-species differences in the regulation of the Shh signaling pathway.
小脑外颗粒层(EGL)中细胞增殖的调节对于其正常发育模式非常重要。调节 EGL 细胞增殖的一个重要信号是 Sonic hedgehog(Shh)。Shh 由浦肯野细胞(PC)分泌,对 EGL 的颗粒细胞前体细胞具有促有丝分裂作用。Shh 信号转导的失调与异常发育有关,并与髓母细胞瘤有关,髓母细胞瘤是起源于小脑的肿瘤。鉴于 Shh 途径在小脑发育和疾病中的重要性,目前还没有对其在人类小脑发育过程中的表达模式进行系统研究。在这项研究中,我们描述了 Shh 及其受体 patched、smoothened 及其属于 Gli 家族转录因子的效应物在从妊娠 10 周的正常人类小脑发育过程中的表达模式,以及在代表小脑异常细胞增殖的髓母细胞瘤中的表达模式。将此表达模式与小鼠中正常小脑发育以及肿瘤中的等效阶段进行比较。观察到人类和小鼠之间的重要差异,这些差异反映了两个物种之间正常发育程序的差异。首先,在人类中,似乎存在一个 Shh 信号在 EGL 内的阶段,此时 PC 尚未成为 Shh 的来源。其次,与出生后小鼠小脑不同,出生后人类小脑 PC 中的 Shh 表达下调。最后,人类的髓母细胞瘤但在 patched 杂合子小鼠中不表达 Shh。这些结果突出了 Shh 信号通路调节中的种间差异。