Crozatier Michèle, Ubeda Jean-Michel, Vincent Alain, Meister Marie
Centre de Biologie du Développement, Centre National de la Recherche Scientifique and Université Paul Sabatier, Toulouse, France.
PLoS Biol. 2004 Aug;2(8):E196. doi: 10.1371/journal.pbio.0020196. Epub 2004 Aug 17.
Drosophila immune response involves three types of hemocytes ('blood cells'). One cell type, the lamellocyte, is induced to differentiate only under particular conditions, such as parasitization by wasps. Here, we have investigated the mechanisms underlying the specification of lamellocytes. We first show that collier (col), the Drosophila orthologue of the vertebrate gene encoding early B-cell factor (EBF), is expressed very early during ontogeny of the lymph gland, the larval hematopoietic organ. In this organ, Col expression prefigures a specific posterior region recently proposed to act as a signalling centre, the posterior signalling centre (PSC). The complete lack of lamellocytes in parasitized col mutant larvae revealed the critical requirement for Col activity in specification of this cell type. In wild-type larvae, Col expression remains restricted to the PSC following parasitization, despite the massive production of lamellocytes. We therefore propose that Col endows PSC cells with the capacity to relay an instructive signal that orients hematopoietic precursors towards the lamellocyte fate in response to parasitization. Considered together with the role of EBF in lymphopoiesis, these findings suggest new parallels in cellular immunity between Drosophila and vertebrates. Further investigations on Col/EBF expression and function in other phyla should provide fresh insight into the evolutionary origin of lymphoid cells.
果蝇的免疫反应涉及三种血细胞类型。其中一种细胞类型,即扁平细胞,仅在特定条件下被诱导分化,比如被黄蜂寄生时。在此,我们研究了扁平细胞特化的潜在机制。我们首先表明,果蝇中与脊椎动物编码早期B细胞因子(EBF)的基因同源的collier(col)基因,在幼虫造血器官——淋巴腺的个体发育早期就有表达。在这个器官中,Col的表达预示着一个最近被认为是信号中心的特定后部区域,即后部信号中心(PSC)。被寄生的col突变幼虫中完全缺乏扁平细胞,这揭示了Col活性对于这种细胞类型特化的关键需求。在野生型幼虫中,尽管大量产生扁平细胞,但寄生后Col的表达仍局限于PSC。因此,我们提出Col赋予PSC细胞传递指导性信号的能力,该信号能引导造血前体细胞在被寄生时转向扁平细胞命运。结合EBF在淋巴细胞生成中的作用来看,这些发现表明果蝇和脊椎动物在细胞免疫方面存在新的相似之处。对其他门类中Col/EBF表达和功能的进一步研究应该能为淋巴细胞的进化起源提供新的见解。