He Shenghui, Iwashita Toshihide, Buchstaller Johanna, Molofsky Anna V, Thomas Dafydd, Morrison Sean J
Howard Hughes Medical Institute, Department of Internal Medicine, Center for Stem Cell Biology, University of Michigan, 5435 Life Sciences Institute, 210 Washtenaw Ave., Ann Arbor, MI 48109-2216, USA.
Dev Biol. 2009 Apr 15;328(2):257-72. doi: 10.1016/j.ydbio.2009.01.020. Epub 2009 Jan 27.
The polycomb gene Bmi-1 is required for the self-renewal of stem cells from diverse tissues, including the central nervous system (CNS). Bmi-1 expression is elevated in most human gliomas, irrespective of grade, raising the question of whether Bmi-1 over-expression is sufficient to promote self-renewal or tumorigenesis by CNS stem/progenitor cells. To test this we generated Nestin-Bmi-1-GFP transgenic mice. Analysis of two independent lines with expression in the fetal and adult CNS demonstrated that transgenic neural stem cells formed larger colonies, more self-renewing divisions, and more neurons in culture. However, in vivo, Bmi-1 over-expression had little effect on CNS stem cell frequency, subventricular zone proliferation, olfactory bulb neurogenesis, or neurogenesis/gliogenesis during development. Bmi-1 transgenic mice were born with enlarged lateral ventricles and a minority developed idiopathic hydrocephalus as adults, but none of the transgenic mice formed detectable CNS tumors, even when aged. The more pronounced effects of Bmi-1 over-expression in culture were largely attributable to the attenuated induction of p16(Ink4a) and p19(Arf) in culture, proteins that are generally not expressed by neural stem/progenitor cells in young mice in vivo. Bmi-1 over-expression therefore has more pronounced effects in culture and does not appear to be sufficient to induce tumorigenesis in vivo.
多梳基因Bmi-1是包括中枢神经系统(CNS)在内的多种组织干细胞自我更新所必需的。在大多数人类神经胶质瘤中,无论级别如何,Bmi-1的表达都会升高,这就提出了一个问题,即Bmi-1的过表达是否足以促进CNS干/祖细胞的自我更新或肿瘤发生。为了验证这一点,我们构建了Nestin-Bmi-1-GFP转基因小鼠。对在胎儿和成年CNS中均有表达的两个独立品系进行分析,结果表明,转基因神经干细胞在培养中形成了更大的集落、更多的自我更新分裂以及更多的神经元。然而,在体内,Bmi-1的过表达对CNS干细胞频率、脑室下区增殖、嗅球神经发生或发育过程中的神经发生/胶质发生几乎没有影响。Bmi-1转基因小鼠出生时侧脑室扩大,少数成年后发展为特发性脑积水,但即使老龄时,也没有一只转基因小鼠形成可检测到的CNS肿瘤。Bmi-1过表达在培养中产生的更显著影响很大程度上归因于培养中p16(Ink4a)和p19(Arf)诱导的减弱,这两种蛋白在体内幼鼠的神经干/祖细胞中通常不表达。因此,Bmi-1过表达在培养中有更显著的影响,并且似乎不足以在体内诱导肿瘤发生。