Molecular Genetics of Stem Cells Laboratory, Institute of Research in Immunology and Cancer (IRIC), University of Montreal, Montreal, QC, Canada.
Blood. 2012 Mar 15;119(11):2510-22. doi: 10.1182/blood-2011-11-393272. Epub 2011 Dec 14.
The stem cell-intrinsic model of self-renewal via asymmetric cell division (ACD) posits that fate determinants be partitioned unequally between daughter cells to either activate or suppress the stemness state. ACD is a purported mechanism by which hematopoietic stem cells (HSCs) self-renew, but definitive evidence for this cellular process remains open to conjecture. To address this issue, we chose 73 candidate genes that function within the cell polarity network to identify potential determinants that may concomitantly alter HSC fate while also exhibiting asymmetric segregation at cell division. Initial gene-expression profiles of polarity candidates showed high and differential expression in both HSCs and leukemia stem cells. Altered HSC fate was assessed by our established in vitro to in vivo screen on a subcohort of candidate polarity genes, which revealed 6 novel positive regulators of HSC function: Ap2a2, Gpsm2, Tmod1, Kif3a, Racgap1, and Ccnb1. Interestingly, live-cell videomicroscopy of the endocytic protein AP2A2 shows instances of asymmetric segregation during HSC/progenitor cell cytokinesis. These results contribute further evidence that ACD is functional in HSC self-renewal, suggest a role for Ap2a2 in HSC activity, and provide a unique opportunity to prospectively analyze progeny from HSC asymmetric divisions.
干细胞通过不对称细胞分裂(ACD)进行自我更新的内在模型假设命运决定因素在子细胞之间不均匀分配,以激活或抑制干细胞状态。ACD 被认为是造血干细胞(HSCs)自我更新的一种机制,但这种细胞过程的明确证据仍有待推测。为了解决这个问题,我们选择了 73 个候选基因,这些基因在细胞极性网络中发挥作用,以确定可能同时改变 HSC 命运的潜在决定因素,同时在细胞分裂时表现出不对称的分离。极性候选基因的初始基因表达谱显示在 HSCs 和白血病干细胞中均有高表达和差异表达。通过我们在候选极性基因的亚群上建立的体外到体内筛选来评估 HSC 命运的改变,结果揭示了 6 个新的 HSC 功能的正调控因子:Ap2a2、Gpsm2、Tmod1、Kif3a、Racgap1 和 Ccnb1。有趣的是,对内吞蛋白 AP2A2 的活细胞视频显微镜显示在 HSC/祖细胞胞质分裂过程中存在不对称分离的情况。这些结果进一步证明 ACD 在 HSC 自我更新中是功能性的,表明 Ap2a2 在 HSC 活性中起作用,并为前瞻性分析 HSC 不对称分裂的后代提供了独特的机会。