Aurora-A Acts As a Tumor Suppressor and Regulates Self-renewal of Drosophila Neuroblasts
Overview
Affiliations
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.
p53 tumor suppressor directly activates conserved asymmetric stem cell division regulators.
Manzanero-Ortiz S, Franco M, Laxmeesha M, Carmena A iScience. 2024; 27(11):111118.
PMID: 39524346 PMC: 11546965. DOI: 10.1016/j.isci.2024.111118.
Carney T, Shcherbata H bioRxiv. 2024; .
PMID: 39416153 PMC: 11482908. DOI: 10.1101/2024.10.10.617551.
A CDK1 phosphorylation site on PAR-3 regulates neuroblast polarisation and sensory organ formation.
Loyer N, Hogg E, Shaw H, Pasztor A, Murray D, Findlay G Elife. 2024; 13.
PMID: 38869055 PMC: 11216751. DOI: 10.7554/eLife.97902.
The Drosophila neuroblast polarity cycle at a glance.
Penkert R, LaFoya B, Moholt-Siebert L, Vargas E, Welch S, Prehoda K J Cell Sci. 2024; 137(5).
PMID: 38465513 PMC: 10984279. DOI: 10.1242/jcs.261789.
Zhang H, Rui M, Ma Z, Gong S, Zhang S, Zhou Q iScience. 2024; 27(1):108545.
PMID: 38213621 PMC: 10783626. DOI: 10.1016/j.isci.2023.108545.