4.6 Article

Filopodia are induced by aquaporin-9 expression

期刊

EXPERIMENTAL CELL RESEARCH
卷 313, 期 7, 页码 1295-1306

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2007.01.023

关键词

water; PKC xi; filopodia; aquaporin-9; AQP9; Cdc42; morphology

资金

  1. NIDCR NIH HHS [P60-DE13079] Funding Source: Medline

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Understanding filopodial formation in motile cells is a pertinent task in cell biology. In the present study we show that expression of the human water channel aquaporin-9 (AQP9) in different cell lines induces the formation of numerous filopodial extensions. Several lines of evidence support the role of aquaporins functioning both as a water channel and signaling participant. The number of filopodia is decreased by site-directed serine substitutions in putative PKC-binding or -phosphorylation sites at amino acid position 11 and 222 in AQP9. The filopodial phenotype obtained with wild-type AQP9 is associated with elevated levels of active Cdc42, while serine-deleted mutants have reduced levels of GTP-Cdc42. Co-transfection with inhibitory N-WASP CRIB completely abolishes wild-type AQP9-induced filopodia formation. Active PKC zeta phosphorylates wild-type AQP9 and myristoylated PKC zeta pseudosubstrate inhibits the formation of filopodia in AQP9-expressing cells. Expression of wild-type AQP9, but not mock or serine substituted mutants, increases sensitivity to hypoosmolaric conditions, yielding a rapid morphological rounding of cells and cell death starting as early as 24 h post-transfection. We propose that increased water influx through AQP9 is critically involved in the formation of membrane protrusions, and that AQP9-induced actin polymerization is augmented by activation of Cdc42 and PKC zeta. (c) 2007 Elsevier Inc. All rights reserved.

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