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斑马鱼幼体伤口炎症反应期间WASp功能的分析——活体成像研究

Analysis of WASp function during the wound inflammatory response--live-imaging studies in zebrafish larvae.

作者信息

Cvejic Ana, Hall Chris, Bak-Maier Magdalena, Flores Maria Vega, Crosier Phil, Redd Michael J, Martin Paul

机构信息

Departments of Biochemistry and Physiology, School of Medical Sciences, University of Bristol, Bristol, UK.

出版信息

J Cell Sci. 2008 Oct 1;121(Pt 19):3196-206. doi: 10.1242/jcs.032235. Epub 2008 Sep 9.

Abstract

Wiskott-Aldrich syndrome protein (WASp) is haematopoietically restricted, and is the causative protein underlying a severe human disorder that can lead to death due to immunodeficiency and haemorrhaging. Much is known about the biochemistry of WASp and the migratory capacity of WASp-defective cells in vitro, but in vivo studies of immune-cell behaviour are more challenging. Using the translucency of zebrafish larvae, we live-imaged the effects of morpholino knockdown of WASp1 (also known as Was) on leukocyte migration in response to a wound. In embryos at 22 hours post-fertilisation, primitive macrophages were impaired in their migration towards laser wounds. Once a circulatory system had developed, at 3 days post-fertilisation, we observed significantly reduced recruitment of neutrophils and macrophages to ventral fin wounds. Cell-tracking studies indicated that fewer leukocytes leave the vessels adjacent to a wound and those that do exhibit impaired navigational capacity. Their cell morphology appears unaltered but their choice of leading-edge pseudopodia is more frequently incorrect, leading to impaired chemotaxis. We also identified two zebrafish mutants in WASp1 by TILLING, one of which was in the WIP-binding domain that is the hotspot for human lesions, and mutants exhibited the same deficiencies in wound inflammation and thrombus formation as WASp1 morphants.

摘要

威斯科特-奥尔德里奇综合征蛋白(WASp)在造血系统中表达受限,是一种严重人类疾病的致病蛋白,该疾病可因免疫缺陷和出血导致死亡。关于WASp的生物化学特性以及WASp缺陷细胞在体外的迁移能力,人们已经了解很多,但对免疫细胞行为的体内研究更具挑战性。利用斑马鱼幼虫的透明度,我们对吗啉代敲低WASp1(也称为Was)对伤口诱导的白细胞迁移的影响进行了实时成像。在受精后22小时的胚胎中,原始巨噬细胞向激光伤口的迁移受到损害。一旦循环系统发育完成,在受精后3天,我们观察到中性粒细胞和巨噬细胞向腹鳍伤口的募集显著减少。细胞追踪研究表明,较少的白细胞离开伤口附近的血管,而那些离开的白细胞表现出导航能力受损。它们的细胞形态似乎未改变,但它们选择的前沿伪足更频繁地出现错误,导致趋化性受损。我们还通过定向诱导基因组局部突变(TILLING)鉴定了两个WASp1斑马鱼突变体,其中一个位于与WIP结合的结构域,该结构域是人类病变的热点,突变体在伤口炎症和血栓形成方面表现出与WASp1吗啉代敲低胚胎相同的缺陷。

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