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一项用于鉴定果蝇幼虫血细胞发育调节因子的错误表达筛选。

A misexpression screen to identify regulators of Drosophila larval hemocyte development.

作者信息

Stofanko Martin, Kwon So Yeon, Badenhorst Paul

机构信息

Institute of Biomedical Research, University of Birmingham, Edgbaston B15 2TT, United Kingdom.

出版信息

Genetics. 2008 Sep;180(1):253-67. doi: 10.1534/genetics.108.089094. Epub 2008 Aug 30.

Abstract

In Drosophila, defense against foreign pathogens is mediated by an effective innate immune system, the cellular arm of which is composed of circulating hemocytes that engulf bacteria and encapsulate larger foreign particles. Three hemocyte types occur: plasmatocytes, crystal cells, and lamellocytes. The most abundant larval hemocyte type is the plasmatocyte, which is responsible for phagocytosis and is present either in circulation or in adherent sessile domains under the larval cuticle. The mechanisms controlling differentiation of plasmatocytes and their migration toward these sessile compartments are unclear. To address these questions we have conducted a misexpression screen using the plasmatocyte-expressed GAL4 driver Peroxidasin-GAL4 (Pxn-GAL4) and existing enhancer-promoter (EP) and EP yellow (EY) transposon libraries to systematically misexpress approximately 20% of Drosophila genes in larval hemocytes. The Pxn-GAL4 strain also contains a UAS-GFP reporter enabling hemocyte phenotypes to be visualized in the semitransparent larvae. Among 3412 insertions screened we uncovered 101 candidate hemocyte regulators. Some of these are known to control hemocyte development, but the majority either have no characterized function or are proteins of known function not previously implicated in hemocyte development. We have further analyzed three candidate genes for changes in hemocyte morphology, cell-cell adhesion properties, phagocytosis activity, and melanotic tumor formation.

摘要

在果蝇中,对外来病原体的防御由有效的先天免疫系统介导,其细胞部分由循环血细胞组成,这些血细胞可吞噬细菌并包裹较大的外来颗粒。存在三种血细胞类型:浆血细胞、晶细胞和片层细胞。幼虫中最丰富的血细胞类型是浆血细胞,它负责吞噬作用,存在于循环中或幼虫表皮下的附着固定区域。控制浆血细胞分化及其向这些固定隔室迁移的机制尚不清楚。为了解决这些问题,我们使用浆血细胞表达的GAL4驱动因子过氧化物酶-GAL4(Pxn-GAL4)以及现有的增强子-启动子(EP)和EP黄色(EY)转座子文库进行了错误表达筛选,以系统地在幼虫血细胞中错误表达约20%的果蝇基因。Pxn-GAL4菌株还包含一个UAS-GFP报告基因,可在半透明幼虫中观察血细胞表型。在筛选的3412个插入片段中,我们发现了101个候选血细胞调节因子。其中一些已知可控制血细胞发育,但大多数要么没有已表征的功能,要么是已知功能的蛋白质,以前未涉及血细胞发育。我们进一步分析了三个候选基因在血细胞形态、细胞间粘附特性、吞噬活性和黑色素瘤形成方面的变化。

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