Developmental Biology Program, Sloan Kettering Institute, New York, NY 10065.
Biochemistry, Cell, and Molecular Biology Program, Weill Graduate School of Medical Sciences of Cornell University, New York, NY 10065.
Proc Natl Acad Sci U S A. 2018 Mar 27;115(13):3392-3397. doi: 10.1073/pnas.1717815115. Epub 2018 Mar 12.
The main cell of origin of the Sonic hedgehog (SHH) subgroup of medulloblastoma (MB) is granule cell precursors (GCPs), a SHH-dependent transient amplifying population in the developing cerebellum. SHH-MBs can be further subdivided based on molecular and clinical parameters, as well as location because SHH-MBs occur preferentially in the lateral cerebellum (hemispheres). Our analysis of adult patient data suggests that tumors with Smoothened () mutations form more specifically in the hemispheres than those with Patched 1 () mutations. Using sporadic mouse models of SHH-MB with the two mutations commonly seen in adult MB, constitutive activation of () or loss-of-, we found that regardless of timing of induction or type of mutation, tumors developed primarily in the hemispheres, with -mutants indeed showing a stronger specificity. We further uncovered that GCPs in the hemispheres are more susceptible to high-level SHH signaling compared with GCPs in the medial cerebellum (vermis), as more or -mutant hemisphere cells remain undifferentiated and show increased tumorigenicity when transplanted. Finally, we identified location-specific GCP gene-expression profiles, and found that deletion of the genes most highly expressed in the hemispheres () or vermis (Engrailed1) showed opposing effects on GCP differentiation. Our studies thus provide insights into intrinsic differences within GCPs that impact on SHH-MB progression.
Sonic 刺猬(SHH)亚组髓母细胞瘤(MB)的主要起源细胞是颗粒细胞前体细胞(GCP),是发育中小脑内依赖 SHH 的短暂扩增群体。SHH-MB 可以根据分子和临床参数以及位置进一步细分,因为 SHH-MB 优先发生在小脑外侧(半球)。我们对成年患者数据的分析表明,具有 Smoothened()突变的肿瘤比具有 Patched1()突变的肿瘤更具体地形成于半球。使用具有成人 MB 中常见的两种突变的 SHH-MB 散发性小鼠模型,即()或()的组成性激活或缺失,我们发现无论诱导的时间或突变的类型如何,肿瘤主要发生在半球,-突变确实显示出更强的特异性。我们进一步发现,与内侧小脑(蚓部)中的 GCP 相比,半球中的 GCP 更易受到高水平 SHH 信号的影响,因为更多的或-突变半球细胞保持未分化状态,并在移植时显示出增加的致瘤性。最后,我们确定了位置特异性的 GCP 基因表达谱,并发现高度表达于半球()或蚓部(Engrailed1)的基因缺失对 GCP 分化表现出相反的影响。因此,我们的研究提供了对影响 SHH-MB 进展的 GCP 内固有差异的深入了解。