Aurora-A acts as a tumor suppressor and regulates self-renewal of Drosophila neuroblasts

被引:204
作者
Wang, Hongyan [1 ]
Somers, Gregory W.
Bashirullah, Arash
Heberlein, Ulrike
Yu, Fengwei
Chia, William
机构
[1] Natl Univ Singapore, Temasek Life Sci Lab, Singapore 117604, Singapore
[2] Natl Univ Singapore, Dept Biol Sci, Singapore 117604, Singapore
[3] Univ Calif San Francisco, Dept Anat, San Francisco, CA 94158 USA
[4] Univ Utah, Salt Lake City, UT 84112 USA
关键词
neuroblast; stem cells; asymmetric division; tumor suppressor; self-renewal;
D O I
10.1101/gad.1487506
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The choice of self-renewal versus differentiation is a fundamental issue in stem cell and cancer biology. Neural progenitors of the Drosophila post-embryonic brain, larval neuroblasts (NBs), divide asymmetrically in a stem cell-like fashion to generate a self-renewing NB and a Ganglion Mother Cell (GMC), which divides terminally to produce two differentiating neuronal/glial daughters. Here we show that Aurora-A (AurA) acts as a tumor suppressor by suppressing NB self-renewal and promoting neuronal differentiation. In aurA loss-of-function mutants, supernumerary NBs are produced at the expense of neurons. AurA suppresses tumor formation by asymmetrically localizing atypical protein kinase C ( aPKC), an NB proliferation factor. Numb, which also acts as a tumor suppressor in larval brains, is a major downstream target of AurA and aPKC. Notch activity is up-regulated in aurA and numb larval brains, and Notch signaling is necessary and sufficient to promote NB self-renewal and suppress differentiation in larval brains. Our data suggest that AurA, aPKC, Numb, and Notch function in a pathway that involved a series of negative genetic interactions. We have identified a novel mechanism for controlling the balance between self-renewal and neuronal differentiation during the asymmetric division of Drosophila larval NBs.
引用
收藏
页码:3453 / 3463
页数:11
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