FAM13A is a modifier gene of cystic fibrosis lung phenotype regulating rhoa activity, actin cytoskeleton dynamics and epithelial-mesenchymal transition

被引:40
作者
Corvol, Harriet [1 ,2 ]
Rousselet, Nathalie [1 ]
Thompson, Kristin E. [1 ]
Berdah, Laura [1 ]
Cottin, Guillaume [1 ]
Foussigniere, Tobias [1 ]
Longchampt, Elisabeth [3 ]
Fiette, Laurence [4 ]
Sage, Edouard [5 ]
Prunier, Celine [1 ]
Drumm, Mitchell [6 ]
Hodges, Craig A. [6 ]
Boelle, Pierre-Yves [7 ]
Guillot, Loic [1 ]
机构
[1] UPMC Univ Paris 06, Sorbonne Univ, INSERM, CRSA, F-75012 Paris, France
[2] Hop Trousseau, AP HP, Pneumol Pediat, F-75012 Paris, France
[3] Hop Foch, Serv Anat Patol, F-92150 Suresnes, France
[4] Inst Pasteur, Histopathol Humaine & Modeles Anim, F-75015 Paris, France
[5] Hop Foch, Dept Chirurg Thorac & Transplantat Pulm, F-92150 Suresnes, France
[6] Case Western Reserve Univ, Dept Pediat, Dept Genet & Genome Sci, Cleveland, OH 44106 USA
[7] UPMC Univ Paris 06, Sorbonne Univ, INSERM, UMR S 1136,Inst Pierre Louis Epidemiol & Sante Pu, F-75012 Paris, France
关键词
Cystic fibrosis; Modifier genes; FAM13A; GENOME-WIDE ASSOCIATION; EXPRESSION; CELLS; VARIANTS; ORGANIZATION; DISORDERS; JUNCTIONS; CHILDREN; DISEASES; LOCI;
D O I
10.1016/j.jcf.2017.11.003
中图分类号
R56 [呼吸系及胸部疾病];
学科分类号
摘要
Background: Cystic fibrosis (CF) lung disease severity is highly variable and dependent on several factors including genetic modifiers. Family with sequence similarity 13 member A (FAM13A) has been previously associated with lung function in the general population as well as in several chronic lung diseases, such as chronic obstructive pulmonary disease (COPD), we examined whether FAA/113A is a modifier gene of CF lung phenotype. We also studied how FAM13A may contribute to the physiopathological mechanisms associated with CF. Methods: We investigated the association of FAMJ3A with lung function in CF French patients (n = 1222) by SNP-wise analysis and Versatile Gene Based Association Study. We also analyzed the consequences of FAM13A knockdown in A549 cells and primary bronchial epithelial cells from CF patients. Results: We found that FAM13A is associated with lung function in CF patients. Utilizing lung epithelial A549 cells and primary human bronchial epithelial cells from CF patients we observed that IL-1 and TGFP, reduced FAM13A expression. Knockdown of FAM13A was associated with increased RhoA activity, induction of F-actin stress fibers and regulation of epithelial-mesenchymal transition markers such as E-cadherin, a-smooth muscle actin and vimentin. Conclusion: Our data show that FAM13A is a modifier gene of CF lung phenotype regulating RhoA activity, actin cytoskeleton dynamics and epithelial-mesenchymal transition. (C) 2017 The Author(s). Published by Elsevier B.V.
引用
收藏
页码:190 / 203
页数:14
相关论文
共 47 条
[1]   Epithelial-mesenchymal transition in lung development and disease: does it exist and is it important? [J].
Bartis, Domokos ;
Mise, Nikica ;
Mahida, Rahul Y. ;
Eickelberg, Oliver ;
Thickett, David R. .
THORAX, 2014, 69 (08) :760-765
[2]   Dynamics of adherens junctions in epithelial establishment, maintenance, and remodeling [J].
Baum, Buzz ;
Georgiou, Marios .
JOURNAL OF CELL BIOLOGY, 2011, 192 (06) :907-917
[3]   Transforming growth factor-β1 mediates epithelial to mesenchymal transdifferentiation through a RhoA-dependent mechanism [J].
Bhowmick, NA ;
Ghiassi, M ;
Bakin, A ;
Aakre, M ;
Lundquist, CA ;
Engel, ME ;
Arteaga, CL ;
Moses, HL .
MOLECULAR BIOLOGY OF THE CELL, 2001, 12 (01) :27-36
[4]  
Cantiello HF, 2001, PFLUG ARCH EUR J PHY, V443, pS75
[5]   Variants in FAM13A are associated with chronic obstructive pulmonary disease [J].
Cho, Michael H. ;
Boutaoui, Nadia ;
Klanderman, Barbara J. ;
Sylvia, Jody S. ;
Ziniti, John P. ;
Hersh, Craig P. ;
DeMeo, Dawn L. ;
Hunninghake, Gary M. ;
Litonjua, Augusto A. ;
Sparrow, David ;
Lange, Christoph ;
Won, Sungho ;
Murphy, James R. ;
Beaty, Terri H. ;
Regan, Elizabeth A. ;
Make, Barry J. ;
Hokanson, John E. ;
Crapo, James D. ;
Kong, Xiangyang ;
Anderson, Wayne H. ;
Tal-Singer, Ruth ;
Lomas, David A. ;
Bakke, Per ;
Gulsvik, Amund ;
Pillai, Sreekumar G. ;
Silverman, Edwin K. .
NATURE GENETICS, 2010, 42 (03) :200-202
[6]   Transcriptome meta-analysis reveals common differential and global gene expression profiles in cystic fibrosis and other respiratory disorders and identifies CFTR regulators [J].
Clarke, Luka A. ;
Botelho, Hugo M. ;
Sousa, Lisete ;
Falcao, Andre O. ;
Amaral, Margarida D. .
GENOMICS, 2015, 106 (05) :268-277
[7]   CFTR and Wnt/beta-catenin signaling in lung development [J].
Cohen, J. Craig ;
Larson, Janet E. ;
Killeen, Erin ;
Love, Damon ;
Takemaru, Ken-Ichi .
BMC DEVELOPMENTAL BIOLOGY, 2008, 8
[8]   Genome-wide association meta-analysis identifies five modifier loci of lung disease severity in cystic fibrosis [J].
Corvol, Harriet ;
Blackman, Scott M. ;
Boelle, Pierre-Yves ;
Gallins, Paul J. ;
Pace, Rhonda G. ;
Stonebraker, Jaclyn R. ;
Accurso, Frank J. ;
Clement, Annick ;
Collaco, Joseph M. ;
Dang, Hong ;
Dang, Anthony T. ;
Franca, Arianna ;
Gong, Jiafen ;
Guillot, Loic ;
Keenan, Katherine ;
Li, Weili ;
Lin, Fan ;
Patrone, Michael V. ;
Raraigh, Karen S. ;
Sun, Lei ;
Zhou, Yi-Hui ;
O'Neal, Wanda K. ;
Sontag, Marci K. ;
Levy, Hara ;
Durie, Peter R. ;
Rommens, Johanna M. ;
Drumm, Mitchell L. ;
Wright, Fred A. ;
Strug, Lisa J. ;
Cutting, Garry R. ;
Knowles, Michael R. .
NATURE COMMUNICATIONS, 2015, 6
[9]   Moving beyond genetics: is FAM13A a major biological contributor in lung physiology and chronic lung diseases? [J].
Corvol, Harriet ;
Hodges, Craig A. ;
Drumm, Mitchell L. ;
Guillot, Loic .
JOURNAL OF MEDICAL GENETICS, 2014, 51 (10) :646-649
[10]   Modifier genes in Mendelian disorders: the example of cystic fibrosis [J].
Cutting, Garry R. .
YEAR IN HUMAN AND MEDICAL GENETICS: NEW TRENDS IN MENDELIAN GENETICS, 2010, 1214 :57-69