Coelho C M, Leevers S J
Ludwig Institute for Cancer Research, London W1P 8BT, UK.
J Cell Sci. 2000 Sep;113 ( Pt 17):2927-34. doi: 10.1242/jcs.113.17.2927.
Studies in yeast have provided some clues to how cell size might be determined in unicellular eukaryotes; yet little attention has been paid to this issue in multicellular organisms. Reproducible cell sizes might be achieved in the dividing cells of multicellular organisms by the coordination of growth with cell division. Recently, mutations in genes encoding homologues of components of the mammalian insulin/phosphoinositide 3-kinase signalling pathway have been shown to affect organ growth and cell size during Drosophila melanogaster imaginal disc development. The data suggest that signalling through this pathway alters cell size because it primarily affects the growth of these organs (i.e. their increase in mass) and does not have a proportional impact on cell division. These observations are in keeping with the hypothesis that growth and cell division are regulated independently, and that cell size is just a consequence of the rate at which tissues grow and the cells within them divide. However, signalling through this pathway can affect cell cycle phasing and at least influence cell division. These interactions may provide a means of coordinating growth and cell division, such that cells divide only when they are above a minimum size.
对酵母的研究为单细胞真核生物中细胞大小可能如何被确定提供了一些线索;然而,多细胞生物中的这个问题却很少受到关注。多细胞生物的分裂细胞可能通过生长与细胞分裂的协调来实现可重复的细胞大小。最近,已表明编码哺乳动物胰岛素/磷酸肌醇3-激酶信号通路组分同源物的基因突变会影响黑腹果蝇成虫盘发育过程中的器官生长和细胞大小。数据表明,通过该信号通路进行的信号传导会改变细胞大小,因为它主要影响这些器官的生长(即它们质量的增加),而对细胞分裂没有成比例的影响。这些观察结果与生长和细胞分裂是独立调节的这一假设一致,并且细胞大小只是组织生长速率和其中细胞分裂速率的结果。然而,通过该信号通路进行的信号传导可以影响细胞周期阶段并且至少影响细胞分裂。这些相互作用可能提供一种协调生长和细胞分裂的方式,使得细胞仅在它们大于最小大小时才进行分裂。