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

被引:62
作者
Cvejic, Ana [1 ,2 ]
Hall, Chris [3 ]
Bak-Maier, Magdalena [1 ]
Flores, Maria Vega [3 ]
Crosier, Phil [3 ]
Redd, Michael J. [4 ]
Martin, Paul [1 ]
机构
[1] Univ Bristol, Sch Med Sci, Dept Biochem & Physiol, Bristol BS8 1TD, Avon, England
[2] Univ Cambridge, Dept Haematol, Cambridge CB2 2PT, England
[3] Univ Auckland, Sch Med Sci, Dept Mol Med & Pathol, Auckland 1, New Zealand
[4] Univ Utah, Huntsman Canc Inst, Salt Lake City, UT 84112 USA
基金
英国惠康基金;
关键词
WASP; wound; inflammation; macrophage; neutrophil; TILLING;
D O I
10.1242/jcs.032235
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
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.
引用
收藏
页码:3196 / 3206
页数:11
相关论文
共 31 条
[1]  
Abramoff MD., 2004, Biophot. Int., V11, P36
[2]   Chemotaxis in shallow gradients is mediated independently of PtdIns 3-kinase by biased choices between random protrusions [J].
Andrew, Natalie ;
Insall, Robert H. .
NATURE CELL BIOLOGY, 2007, 9 (02) :193-U91
[3]   Class III antiarrhythmic methanesulfonanilides inhibit leukocyte recruitment in zebrafish [J].
Brown, Simon B. ;
Tucker, Carl S. ;
Ford, Christopher ;
Lee, Yfe ;
Dunbar, Donald R. ;
Mullins, John J. .
JOURNAL OF LEUKOCYTE BIOLOGY, 2007, 82 (01) :79-84
[4]   Wiskott-Aldrich syndrome protein and the cytoskeletal dynamics of dendritic cells [J].
Calle, Y ;
Chou, HC ;
Thrasher, AJ ;
Jones, GE .
JOURNAL OF PATHOLOGY, 2004, 204 (04) :460-469
[5]   Big roles for small GTPases in the control of directed cell movement [J].
Charest, Pascale G. ;
Firtel, Richard A. .
BIOCHEMICAL JOURNAL, 2007, 401 (377-390) :377-390
[6]   Global analysis of hematopoietic and vascular endothelial gene expression by tissue specific microarray profiling in zebrafish [J].
Covassin, Laurence ;
Amigo, Julio D. ;
Suzuki, Kana ;
Teplyuk, Viktor ;
Straubhaar, Juerg ;
Lawson, Nathan D. .
DEVELOPMENTAL BIOLOGY, 2006, 299 (02) :551-562
[7]   Normal Arp2/3 complex activation in platelets lacking WASp [J].
Falet, H ;
Hoffmeister, KM ;
Neujahr, R ;
Hartwig, JH .
BLOOD, 2002, 100 (06) :2113-2122
[8]   The zebrafish lysozyme C promoter drives myeloid-specific expression in transgenic fish [J].
Hall, Chris ;
Flores, Maria Vega ;
Storm, Thilo ;
Crosier, Kathy ;
Crosier, Phil .
BMC DEVELOPMENTAL BIOLOGY, 2007, 7
[9]  
Herbomel P, 1999, DEVELOPMENT, V126, P3735
[10]   Zebrafish early macrophages colonize cephalic mesenchyme and developing brain, retina, and epidermis through, a M-CSF receptor-dependent invasive process [J].
Herbomel, P ;
Thisse, B ;
Thisse, C .
DEVELOPMENTAL BIOLOGY, 2001, 238 (02) :274-288