Benmimoun Billel, Haenlin Marc, Waltzer Lucas
a Université de Toulouse; UPS; CBD (Center de Biologie du Développement) France CNRS, CBD UMR5547 , F-31062 Toulouse , France.
b Present address: The Francis Crick Institute ; London WC2A 3LY , UK.
Fly (Austin). 2015;9(4):160-4. doi: 10.1080/19336934.2016.1151130.
Drosophila lymph gland, a larval haematopoietic organ, has emerged as a popular model to study regulatory mechanisms controlling blood cell progenitor fate. In this organ, the Posterior Signaling Center (PSC), a small group of cells expressing the EBF transcription factor Collier, has been proposed to act as a niche required for progenitor maintenance. Accordingly, several reports showed that PSC size/activity modulation impacts on blood cell differentiation. Yet our recent results challenge this model. Indeed, we found that PSC ablation does not affect haematopoietic progenitor maintenance. This unexpected result led us to reinvestigate the role of the PSC and collier in hematopoiesis. Consistent with previous findings, the PSC appears required for the production of a specialized blood cell type in response to parasitization. Moreover, our results indicate that the massive blood cell differentiation observed in collier mutant larvae is not due to the lack of PSC but to collier expression within the haematopoietic progenitors. We thus propose a paradigm shift whereby larval blood cell progenitor maintenance is largely independent of the PSC but requires the cell-autonomous function of collier.
果蝇淋巴腺是一种幼虫造血器官,已成为研究控制血细胞祖细胞命运调控机制的热门模型。在这个器官中,后信号中心(PSC)是一小群表达EBF转录因子Collier的细胞,被认为是祖细胞维持所必需的微环境。相应地,一些报告表明PSC大小/活性调节会影响血细胞分化。然而,我们最近的结果对这个模型提出了挑战。事实上,我们发现PSC消融并不影响造血祖细胞的维持。这个意外的结果促使我们重新研究PSC和Collier在造血中的作用。与之前的发现一致,PSC似乎是响应寄生虫感染产生特定血细胞类型所必需的。此外,我们的结果表明,在Collier突变幼虫中观察到的大量血细胞分化不是由于PSC的缺失,而是由于造血祖细胞内Collier的表达。因此,我们提出了一种范式转变,即幼虫血细胞祖细胞的维持在很大程度上独立于PSC,但需要Collier的细胞自主功能。