The Walter and Eliza Hall Institute of Medical Research, Parkville 3050, Victoria, Australia.
J Cell Sci. 2012 Jan 15;125(Pt 2):295-309. doi: 10.1242/jcs.077271. Epub 2012 Feb 13.
Adult neural stem cells (NSCs) reside in the subventricular zone (SVZ) and produce neurons throughout life. Although their regenerative potential has kindled much interest, few factors regulating NSCs in vivo are known. Among these is the histone acetyltransferase querkopf (QKF, also known as MYST4, MORF, KAT6B), which is strongly expressed in a small subset of cells in the neurogenic subventricular zone. However, the relationship between Qkf gene expression and the hierarchical levels within the neurogenic lineage is currently unknown. We show here that the 10% of SVZ cells with the highest Qkf expression possess the defining NSC characteristics of multipotency and self-renewal and express markers previously shown to enrich for NSCs. A fraction of cells expressing Qkf at medium to high levels is enriched for multipotent progenitor cells with limited self-renewal, followed by a population containing migrating neuroblasts. Cells low in Qkf promoter activity are predominantly ependymal cells. In addition, we show that mice deficient for Bmi1, a central regulator of NSC self-renewal, show an age-dependent decrease in the strongest Qkf-expressing cell population in the SVZ. Our results show a strong relationship between Qkf promoter activity and stem cell characteristics, and a progressive decrease in Qkf gene activity as lineage commitment and differentiation proceed in vivo.
成年神经干细胞 (NSC) 存在于侧脑室下区 (SVZ) 并在整个生命过程中产生神经元。尽管它们的再生潜力引起了广泛的兴趣,但目前已知很少有调节体内 NSC 的因素。其中包括组蛋白乙酰转移酶 querkopf(QKF,也称为 MYST4、MORF、KAT6B),它在神经发生的 SVZ 中的一小部分细胞中强烈表达。然而,目前尚不清楚 Qkf 基因表达与神经发生谱系内的层次结构之间的关系。我们在这里表明,SVZ 中 10%具有最高 Qkf 表达的细胞具有多能性和自我更新的定义 NSC 特征,并表达以前被证明富集 NSC 的标志物。表达中等到高水平 Qkf 的细胞的一部分富含具有有限自我更新能力的多能祖细胞,随后是包含迁移神经母细胞的群体。Qkf 启动子活性低的细胞主要是室管膜细胞。此外,我们还表明,作为 NSC 自我更新的核心调节剂的 Bmi1 缺失的小鼠在 SVZ 中表现出最强的 Qkf 表达细胞群体随年龄增长而减少。我们的研究结果表明,Qkf 启动子活性与干细胞特征之间存在很强的关系,并且随着体内谱系承诺和分化的进行,Qkf 基因活性逐渐降低。