Department of Biological Sciences, University of Notre Dame, 147 Galvin Life Sciences Hall, Notre Dame, IN 46556, USA.
Development. 2010 Nov;137(21):3561-8. doi: 10.1242/dev.053728. Epub 2010 Sep 28.
The lymph gland is a specialized organ for hematopoiesis, utilized during larval development in Drosophila. This tissue is composed of distinct cellular domains populated by blood cell progenitors (the medullary zone), niche cells that regulate the choice between progenitor quiescence and hemocyte differentiation [the posterior signaling center (PSC)], and mature blood cells of distinct lineages (the cortical zone). Cells of the PSC express the Hedgehog (Hh) signaling molecule, which instructs cells within the neighboring medullary zone to maintain a hematopoietic precursor state while preventing hemocyte differentiation. As a means to understand the regulatory mechanisms controlling Hh production, we characterized a PSC-active transcriptional enhancer that drives hh expression in supportive niche cells. Our findings indicate that a combination of positive and negative transcriptional inputs program the precise PSC expression of the instructive Hh signal. The GATA factor Serpent (Srp) is essential for hh activation in niche cells, whereas the Suppressor of Hairless [Su(H)] and U-shaped (Ush) transcriptional regulators prevent hh expression in blood cell progenitors and differentiated hemocytes. Furthermore, Srp function is required for the proper differentiation of niche cells. Phenotypic analyses also indicated that the normal activity of all three transcriptional regulators is essential for maintaining the progenitor population and preventing premature hemocyte differentiation. Together, these studies provide mechanistic insights into hh transcriptional regulation in hematopoietic progenitor niche cells, and demonstrate the requirement of the Srp, Su(H) and Ush proteins in the control of niche cell differentiation and blood cell precursor maintenance.
淋巴腺是造血的专门器官,在果蝇的幼虫发育过程中被利用。这个组织由不同的细胞区域组成,包括血细胞祖细胞(髓质区)、调节祖细胞静止和血细胞分化之间选择的龛细胞[后信号中心(PSC)],以及不同谱系的成熟血细胞(皮质区)。PSC 中的细胞表达 Hedgehog(Hh)信号分子,它指示邻近的髓质区中的细胞保持造血前体细胞状态,同时防止血细胞分化。为了了解控制 Hh 产生的调节机制,我们对 PSC 活性转录增强子进行了表征,该增强子驱动支持性龛细胞中 hh 的表达。我们的研究结果表明,正转录输入和负转录输入的组合编程了指令性 Hh 信号在 PSC 中的精确表达。GATA 因子 Serpent(Srp)对于龛细胞中 hh 的激活是必需的,而 Suppressor of Hairless [Su(H)] 和 U-shaped(Ush)转录调节剂可防止血细胞祖细胞和分化的血细胞中 hh 的表达。此外,Srp 功能对于龛细胞的正常分化是必需的。表型分析还表明,这三个转录调节剂的正常活性对于维持祖细胞群体和防止过早的血细胞分化都是必需的。综上所述,这些研究为造血祖细胞龛细胞中 hh 的转录调控提供了机制上的见解,并证明了 Srp、Su(H) 和 Ush 蛋白在控制龛细胞分化和血细胞前体细胞维持中的必要性。