Sinenko Sergey A, Kim Eun Kyung, Wynn Rhoda, Manfruelli Pascal, Ando Istvan, Wharton Kristi A, Perrimon Norbert, Mathey-Prevot Bernard
Division of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Dev Biol. 2004 Sep 1;273(1):48-62. doi: 10.1016/j.ydbio.2004.05.022.
To identify novel factors involved in Drosophila hematopoiesis, we screened a collection of lethal recessive mutations that also affected normal hemocyte composition in larvae. We present the characterization of the gene yantar (ytr) for which we isolated null and hypomorphic mutations that were associated with severe defects in hemocyte differentiation and proliferation; ytr is predominantly expressed in the hematopoietic tissue during larval development and encodes an evolutionary conserved protein which is predominantly localized in the nucleus. The hematopoietic phenotype in ytr mutants is consistent with a defect or block in differentiation of precursor hemocytes: mutant larvae have enlarged lymph glands (LGs) and have an excess of circulating hemocytes. In addition, many cells exhibit both lamellocyte and crystal cell markers. Ytr function has been preserved in evolution as hematopoietic specific expression of the Drosophila or mouse Ytr proteins rescue the differentiation defects in mutant hemocytes.
为了鉴定参与果蝇造血作用的新因子,我们筛选了一组致死性隐性突变,这些突变也影响幼虫的正常血细胞组成。我们展示了基因yantar(ytr)的特征,我们分离出了与血细胞分化和增殖严重缺陷相关的无效突变和亚效突变;ytr在幼虫发育期间主要在造血组织中表达,并编码一种进化上保守的蛋白质,该蛋白质主要定位于细胞核。ytr突变体中的造血表型与前体血细胞分化的缺陷或阻滞一致:突变幼虫的淋巴腺(LGs)肿大,循环血细胞过多。此外,许多细胞同时表现出片状细胞和晶体细胞标记。Ytr功能在进化中得以保留,因为果蝇或小鼠Ytr蛋白的造血特异性表达挽救了突变血细胞中的分化缺陷。