Control of basement membrane remodeling and epithelial branching morphogenesis in embryonic lung by Rho and cytoskeletal tension

被引:192
作者
Moore, KA
Polte, T
Huang, S
Shi, B
Alsberg, E
Sunday, ME
Ingber, DE
机构
[1] Childrens Hosp, Vasc Biol Program, Karp Family Res Labs, Dept Surg, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Boston, MA USA
[3] Childrens Hosp, Dept Pathol, Boston, MA 02115 USA
关键词
Rho-associated kinase; myosin light chain phosphorylation; contractility; extracellular matrix; mechanoregulation; pattern formation; angiogenesis; capillary; prestress;
D O I
10.1002/dvdy.20237
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Local alterations in the mechanical compliance of the basement membrane that alter the level of isometric tension in the cell have been postulated to influence tissue morphogenesis. To explore whether cell tension contributes to tissue pattern formation in vivo, we modulated cytoskeletal force generation in embryonic mouse lung (embryonic days 12-14) rudiments using inhibitors of Rho-associated kinase (ROCK), myosin light chain kinase, myosin ATPase, and microfilament integrity, or a Rho stimulator (cytotoxic necrotizing factor-1). Tension inhibition resulted in loss of normal differentials in basement membrane thickness, inhibition of new terminal bud formation, and disorganization of epithelial growth patterns as well as disruption of capillary blood vessels. In contrast, increasing cell tension through Rho activation, as confirmed by quantitation of myosin light chain phosphorylation and immunohistocytochemical analysis of actin organization, accelerated lung branching and increase capillary elongation. These data suggest that changes in cytoskeletal tension mediated by Rho signaling through ROCK may play an important role in the establishment of the spatial differentials in cell growth and extracellular matrix remodeling that drive embryonic lung development. (C) 2004 Wiley-Liss, Inc.
引用
收藏
页码:268 / 281
页数:14
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