|
|
|
||||
| Home Help Feedback Subscriptions Archive Search | |||||
The fully linked HTML version of this article has now been published.
In hair follicles, dermal papilla (DP) and dermal sheath (DS) cells exhibit striking levels of plasticity, as each can regenerate both cell types. Here, we show that thrombin induces a phosphoinositide 3-kinase (PI3K)-Akt pathway-dependent acquisition of DS-like properties by DP cells in vitro, involving increased proliferation rate, acquisition of 'myofibroblastic' contractile properties and a decreased capacity to sustain growth and survival of keratinocytes. The thrombin inhibitor protease nexin 1 [PN-1, also known as SERPINE2) regulates all those effects in vitro. Accordingly, the PI3K-Akt pathway is constitutively activated and expression of myofibroblastic marker smooth-muscle actin is enhanced in vivo in hair follicle dermal cells from PN-1-/- mice. Furthermore, physiological PN-1 disappearance and upregulation of the thrombin receptor PAR-1 (also known as F2R) during follicular regression in wild-type mice also correlate with such changes in DP cell characteristics. Our results indicate that control of thrombin signaling interferes with hair follicle dermal cells plasticity to regulate their function.
JCS ePress
online publication date 8 Apr 2008
doi: 10.1242/jcs.018689
This Article ![]()
![]()
Full Text (PDF)
![]()
All Versions of this Article:
jcs.018689v1
121/9/1435
most recent![]()
Alert me when this article is cited
![]()
Alert me if a correction is posted
![]()
Services ![]()
![]()
Email this article to a friend
![]()
Similar articles in this journal
![]()
Similar articles in PubMed
![]()
Alert me to new issues of the journal
![]()
Download to citation manager
![]()
![]()
Citing Articles ![]()
![]()
Citing Articles via Google Scholar
![]()
Google Scholar ![]()
![]()
Articles by Feutz, A.-C.
![]()
Articles by Monard, D.
![]()
Search for Related Content
![]()
PubMed ![]()
![]()
PubMed Citation
![]()
Articles by Feutz, A.-C.
![]()
Articles by Monard, D.
Research Article
Control of thrombin signaling through PI3K is a mechanism underlying plasticity between hair follicle dermal sheath and papilla cells
* Author for correspondence (e-mail: monard{at}fmi.ch)
© The Company of Biologists Ltd 2008