Bateman Joseph M, McNeill Helen
Cancer Research UK, 44 Lincoln's Inn Fields, London, WC2A 3PX, England.
Cell. 2004 Oct 1;119(1):87-96. doi: 10.1016/j.cell.2004.08.028.
Multicellular organisms must integrate growth and differentiation precisely to pattern complex tissues. Despite great progress in understanding how different cell fates are induced, it is poorly understood how differentiation decisions are temporally regulated. In a screen for patterning mutants, we isolated alleles of tsc1, a component of the insulin receptor (InR) growth control pathway. We find that loss of tsc1 disrupts patterning due to a loss of temporal control of differentiation. tsc1 controls the timing of differentiation downstream or in parallel to the RAS/MAPK pathway. Examination of InR, PI3K, PTEN, Tor, Rheb, and S6 kinase mutants demonstrates that increased InR signaling leads to precocious differentiation while decreased signaling leads to delays in differentiation. Importantly, cell fates are unchanged, but tissue organization is lost upon loss of developmental timing controls. These data suggest that intricate developmental decisions are coordinated with nutritional status and tissue growth by the InR signaling pathway.
多细胞生物必须精确整合生长与分化过程,以形成复杂的组织。尽管在理解不同细胞命运如何被诱导方面取得了巨大进展,但对于分化决定如何在时间上进行调控,我们却知之甚少。在一项针对模式突变体的筛选中,我们分离出了tsc1的等位基因,tsc1是胰岛素受体(InR)生长控制途径的一个组成部分。我们发现,tsc1的缺失会由于分化时间控制的丧失而破坏模式形成。tsc1在RAS/MAPK途径的下游或与其平行控制分化的时间。对InR、PI3K、PTEN、Tor、Rheb和S6激酶突变体的检测表明,InR信号增强会导致过早分化,而信号减弱则会导致分化延迟。重要的是,细胞命运并未改变,但发育时间控制丧失时,组织结构会遭到破坏。这些数据表明,复杂的发育决定是通过InR信号通路与营养状况和组织生长协调进行的。