Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge CB2 3DY, UK.
Development. 2014 Feb;141(3):697-706. doi: 10.1242/dev.103978.
In many growing tissues, slowly dividing stem cells give rise to rapidly proliferating progenitors that eventually exit the cell cycle and differentiate. Growth rates are limited by nutrient availability, but it is unclear which steps of the proliferation-differentiation programme are particularly sensitive to fuel supplies. We examined how nutrient deprivation (ND) affects stem and progenitor cells in the ciliary marginal zone (CMZ) of the amphibian retina, a well-characterised neurogenic niche. We show that ND specifically blocks the proliferation and differentiation of progenitor cells through an mTOR-mediated mechanism. By contrast, the identity and proliferation of retinal stem cells are insensitive to ND and mTOR inhibition. Re-feeding starved retinas in vitro rescues both proliferation and differentiation, and activation of mTOR is sufficient to stimulate differentiation even in ND retinas. These results suggest that an mTOR-mediated restriction point operates in vivo to couple nutrient abundance to the proliferation and differentiation programme in retinal progenitor cells.
在许多生长组织中,缓慢分裂的干细胞产生快速增殖的祖细胞,这些祖细胞最终退出细胞周期并分化。生长速度受营养物质可用性的限制,但尚不清楚增殖-分化程序的哪些步骤对燃料供应特别敏感。我们研究了营养剥夺 (ND) 如何影响两栖动物视网膜纤毛缘区 (CMZ) 中的干细胞和祖细胞,CMZ 是一个特征明确的神经发生龛位。我们发现 ND 通过 mTOR 介导的机制特异性地阻断祖细胞的增殖和分化。相比之下,视网膜干细胞的身份和增殖对 ND 和 mTOR 抑制不敏感。体外饥饿培养的视网膜再喂养可恢复增殖和分化,即使在 ND 视网膜中激活 mTOR 也足以刺激分化。这些结果表明,mTOR 介导的限制点在体内起作用,将营养丰富度与视网膜祖细胞的增殖和分化程序联系起来。