Datta S
Department of Biochemistry and Biophysics, Texas A&M University, College Station 77843-2128, USA.
Development. 1995 Apr;121(4):1173-82. doi: 10.1242/dev.121.4.1173.
Stem cell proliferation is controlled through cell cycle arrest and activation. In the central nervous system of Drosophila melanogaster, neuroblast quiescence and activation takes place in defined spatial and temporal patterns. Two genes have been identified that regulate the pattern of neuroblast quiescence and proliferation. ana, which has been previously described by Ebens and coworkers (Ebens, A., Garren, H., Cheyette, B. N. R. and Zipursky, S. L. (1993). Cell 74, 15-28), encodes a secreted glial glycoprotein that inhibits premature neuroblast proliferation. We previously showed that trolsd causes a dramatic drop in the number of dividing cells in the larval brain late in development. This study presents evidence that this decrease results from a failure to activate proliferation in the quiescent neuroblast population at the appropriate time. However, trolsd does not affect the maintenance of cell division in already dividing mushroom body neuroblasts. The quiescent optic lobe and thoracic neuroblasts affected by trolsd proliferate in a trol mutant background if they have been activated by a lack of the ana proliferation repressor, demonstrating that trolsd does not affect cellular viability, nor does trol represent a celltype-specific mitotic factor. This also shows that trol acts downstream of ana to activate proliferation of quiescent neuroblasts in an ana-dependent pathway, possibly by inactivating or bypassing the ana repressor. These results suggest that trol and ana are components of a novel developmental pathway for the control of cell cycle activation in quiescent neuroblasts.
干细胞增殖通过细胞周期停滞和激活来控制。在黑腹果蝇的中枢神经系统中,神经母细胞的静止和激活以特定的空间和时间模式发生。已鉴定出两个调节神经母细胞静止和增殖模式的基因。ana,先前已由埃本斯及其同事描述过(埃本斯,A.,加伦,H.,谢耶特,B.N.R.和齐普尔斯基,S.L.(1993年)。《细胞》74卷,第15 - 28页),编码一种分泌型胶质糖蛋白,可抑制神经母细胞过早增殖。我们先前表明,trolsd在发育后期导致幼虫大脑中分裂细胞数量急剧下降。本研究提供的证据表明,这种减少是由于未能在适当时间激活静止神经母细胞群体中的增殖所致。然而,trolsd并不影响已经在分裂的蘑菇体神经母细胞中的细胞分裂维持。如果受trolsd影响的静止视叶和胸神经母细胞因缺乏ana增殖抑制因子而被激活,它们在trol突变背景下会增殖,这表明trolsd不影响细胞活力,trol也不代表细胞类型特异性有丝分裂因子。这也表明trol在ana下游起作用,以ana依赖的途径激活静止神经母细胞的增殖,可能是通过使ana抑制因子失活或绕过该抑制因子。这些结果表明,trol和ana是控制静止神经母细胞中细胞周期激活的新型发育途径的组成部分。