Literature DB >> 21539622

CD109 release from the cell surface in human keratinocytes regulates TGF-β receptor expression, TGF-β signalling and STAT3 activation: relevance to psoriasis.

Ivan V Litvinov1, Albane A Bizet, Yousef Binamer, David A Jones, Denis Sasseville, Anie Philip.   

Abstract

Transforming growth factor (TGF)-β is an important cytokine that negatively regulates keratinocyte proliferation. Deregulation of TGF-β signalling has been reported in psoriasis, where despite increased expression of TGF-β, psoriatic keratinocytes continue to hyperproliferate. Recently, we have identified CD109, a glycosyl phosphatidylinositol (GPI)-anchored protein, as a novel co-receptor and negative regulator of TGF-β signalling. In the current work, we demonstrate that release of CD109 from the cell surface or the addition of CD109 protein results in downregulation of TGF-β signalling and TGF-β receptor expression in human keratinocytes. Moreover, these effects are associated with an increase in phospho-STAT3 levels, enhanced total STAT3 and Bcl-2 expression and an increase in cell growth and survival, suggesting that released/soluble CD109 is able to induce molecular changes that are known to occur in psoriasis. Analysis of CD109 expression in psoriasis patients reveals that CD109 protein expression is markedly decreased in psoriatic epidermis as compared to adjacent uninvolved skin. In contrast, CD109 mRNA expression is unchanged in psoriatic plaques in comparison with normal skin. This raises a possibility that CD109 protein release is enhanced in psoriatic keratinocytes. Furthermore, psoriatic epidermis displays decreased expression of TGF-β receptors, consistent with the results obtained in vitro in keratinocytes with CD109 release or addition of CD109 recombinant protein. Together our findings suggest that aberrant CD109 release from the cell surface in human keratinocytes may induce molecular changes that are usually observed in psoriasis and may explain TGF-β receptor downregulation and decrease in TGF-β signalling in psoriasis.
© 2011 John Wiley & Sons A/S.

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Year:  2011        PMID: 21539622     DOI: 10.1111/j.1600-0625.2011.01288.x

Source DB:  PubMed          Journal:  Exp Dermatol        ISSN: 0906-6705            Impact factor:   3.960


  29 in total

1.  Proteolytic control of TGF-β co-receptor activity by BMP-1/tolloid-like proteases revealed by quantitative iTRAQ proteomics.

Authors:  Frédéric Delolme; Cyril Anastasi; Lindsay B Alcaraz; Valentin Mendoza; Sandrine Vadon-Le Goff; Maya Talantikite; Robin Capomaccio; Jimmy Mevaere; Laëtitia Fortin; Dominique Mazzocut; Odile Damour; Isabelle Zanella-Cléon; David J S Hulmes; Christopher M Overall; Ulrich Valcourt; Fernando Lopez-Casillas; Catherine Moali
Journal:  Cell Mol Life Sci       Date:  2014-09-27       Impact factor: 9.261

2.  CD109, a negative regulator of TGF-β signaling, is a putative risk marker in diffuse large B-cell lymphoma.

Authors:  Maki Yokoyama; Masaaki Ichinoe; Sosei Okina; Yasutaka Sakurai; Norihiro Nakada; Nobuyuki Yanagisawa; Shi-Xu Jiang; Yoshiko Numata; Atsuko Umezawa; Koji Miyazaki; Masaaki Higashihara; Yoshiki Murakumo
Journal:  Int J Hematol       Date:  2016-12-28       Impact factor: 2.490

3.  The GPI-anchored protein CD109 protects hematopoietic progenitor cells from undergoing erythroid differentiation induced by TGF-β.

Authors:  Mikoto Tanabe; Kohei Hosokawa; Mai Anh Thi Nguyen; Noriharu Nakagawa; Kana Maruyama; Noriaki Tsuji; Ryota Urushihara; Luis Espinoza; Mahmoud I Elbadry; Md Mohiuddin; Takamasa Katagiri; Masanori Ono; Hiroshi Fujiwara; Kazuhisa Chonabayashi; Yoshinori Yoshida; Hirohito Yamazaki; Atsushi Hirao; Shinji Nakao
Journal:  Leukemia       Date:  2021-11-06       Impact factor: 11.528

4.  Novel differences in the expression of inflammation-associated genes between mid- and late-gestational dermal fibroblasts.

Authors:  Brian C Wulff; Lianbo Yu; Allison E Parent; Traci A Wilgus
Journal:  Wound Repair Regen       Date:  2012-11-05       Impact factor: 3.617

5.  Single-cell transcriptomic analysis of allergen-specific T cells in allergy and asthma.

Authors:  Grégory Seumois; Ciro Ramírez-Suástegui; Benjamin J Schmiedel; Shu Liang; Bjoern Peters; Alessandro Sette; Pandurangan Vijayanand
Journal:  Sci Immunol       Date:  2020-06-12

6.  Association of down-regulation of CD109 expression with up-expression of Smad7 in pathogenesis of psoriasis.

Authors:  Xin-Xin Liu; Ai-Ping Feng; Yi-Min He; Yan Li; Yan Wu; Xin Lian; Feng Hu; Jia-Wen Li; Ya-Ting Tu; Shan-Juan Chen
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2016-02-03

7.  CD109 Mediates Cell Survival in Hepatocellular Carcinoma Cells.

Authors:  Guijuan Zong; Zhiwei Xu; Shusen Zhang; Yifen Shen; Huiyuan Qiu; Guizhou Zhu; Song He; Tao Tao; Xudong Chen
Journal:  Dig Dis Sci       Date:  2016-04-13       Impact factor: 3.199

8.  CD109-GP130 interaction drives glioblastoma stem cell plasticity and chemoresistance through STAT3 activity.

Authors:  Pauliina Filppu; Jayendrakishore Tanjore Ramanathan; Kirsi J Granberg; Erika Gucciardo; Hannu Haapasalo; Kaisa Lehti; Matti Nykter; Vadim Le Joncour; Pirjo Laakkonen
Journal:  JCI Insight       Date:  2021-05-10

Review 9.  TGF-β superfamily co-receptors in cancer.

Authors:  John B Pawlak; Gerard C Blobe
Journal:  Dev Dyn       Date:  2021-04-09       Impact factor: 3.780

10.  CD109 plays a role in osteoclastogenesis.

Authors:  Yongqiang Wang; Maayan Inger; Hongwei Jiang; Howard Tenenbaum; Michael Glogauer
Journal:  PLoS One       Date:  2013-04-12       Impact factor: 3.240

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