Scleraxis Is Required for Cell Lineage Differentiation and Extracellular Matrix Remodeling During Murine Heart Valve Formation In Vivo

被引:97
作者
Levay, Agata K. [1 ]
Peacock, Jacqueline D. [1 ]
Lu, Yinhui [2 ]
Koch, Manuel [3 ]
Hinton, Robert B., Jr. [4 ]
Kadler, Karl E. [2 ]
Lincoln, Joy [1 ]
机构
[1] Univ Miami, Leonard M Miller Sch Med, Dept Mol & Cellular Pharmacol, Miami, FL 33101 USA
[2] Univ Manchester, Fac Life Sci, Wellcome Trust Ctr Cell Matrix Res, Manchester M13 9PL, Lancs, England
[3] Univ Cologne, Fac Med, Ctr Biochem, D-5000 Cologne 41, Germany
[4] Cincinnati Childrens Hosp, Med Ctr, Div Cardiol, Cincinnati, OH USA
关键词
development; extracellular matrix; heart valves; mouse heart development; transcription factors;
D O I
10.1161/CIRCRESAHA.108.177238
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Heart valve structures, derived from mesenchyme precursor cells, are composed of differentiated cell types and extracellular matrix arranged to facilitate valve function. Scleraxis (scx) is a transcription factor required for tendon cell differentiation and matrix organization. This study identified high levels of scx expression in remodeling heart valve structures at embryonic day 15.5 through postnatal stages using scx-GFP reporter mice and determined the in vivo function using mice null for scx. Scx(-/-) mice display significantly thickened heart valve structures from embryonic day 17.5, and valves from mutant mice show alterations in valve precursor cell differentiation and matrix organization. This is indicated by decreased expression of the tendon-related collagen type XIV, increased expression of cartilage-associated genes including sox9, as well as persistent expression of mesenchyme cell markers including msx1 and snai1. In addition, ultrastructure analysis reveals disarray of extracellular matrix and collagen fiber organization within the valve leaflet. Thickened valve structures and increased expression of matrix remodeling genes characteristic of human heart valve disease are observed in juvenile scx(-/-) mice. In addition, excessive collagen deposition in annular structures within the atrioventricular junction is observed. Collectively, our studies have identified an in vivo requirement for scx during valvulogenesis and demonstrate its role in cell lineage differentiation and matrix distribution in remodeling valve structures. (Circ Res. 2008; 103:948-956.)
引用
收藏
页码:948 / U100
页数:16
相关论文
共 40 条
[1]   Essential role of Sox9 in the pathway that controls formation of cardiac valves and septa [J].
Akiyama, H ;
Chaboissier, MC ;
Behringer, RR ;
Rowitch, DH ;
Schedl, A ;
Epstein, JA ;
de Crombrugghe, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (17) :6502-6507
[2]   Heart valve development - Endothelial cell signaling and differentiation [J].
Armstrong, EJ ;
Bischoff, J .
CIRCULATION RESEARCH, 2004, 95 (05) :459-470
[3]   Sox9 is required for cartilage formation [J].
Bi, WM ;
Deng, JM ;
Zhang, ZP ;
Behringer, RR ;
de Crombrugghe, B .
NATURE GENETICS, 1999, 22 (01) :85-89
[4]   FGF acts directly on the somitic tendon progenitors through the Ets transcription factors Pea3 and Erm to regulate scleraxis expression [J].
Brent, AE ;
Tabin, CJ .
DEVELOPMENT, 2004, 131 (16) :3885-3896
[5]   Bicuspid aortic valve is heritable [J].
Cripe, L ;
Andelfinger, G ;
Martin, LJ ;
Shooner, K ;
Benson, DW .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2004, 44 (01) :138-143
[6]  
CSERJESI P, 1995, DEVELOPMENT, V121, P1099
[7]   Lineage and morphogenetic analysis of the cardiac valves [J].
de Lange, FJ ;
Moorman, AFM ;
Anderson, RH ;
Männer, J ;
Soufan, AT ;
de Vries, CD ;
Schneider, MD ;
Webb, S ;
van den Hoff, MJB ;
Christoffels, VM .
CIRCULATION RESEARCH, 2004, 95 (06) :645-654
[8]   Mechanisms of Disease:: pathologic structural remodeling is more than adaptive hypertrophy in hypertensive heart disease [J].
Díez, J ;
González, A ;
López, B ;
Querejeta, R .
NATURE CLINICAL PRACTICE CARDIOVASCULAR MEDICINE, 2005, 2 (04) :209-216
[9]   Fgf4 positively regulates scleraxis and tenascin expression in chick limb tendons [J].
Edom-Vovard, F ;
Schuler, B ;
Bonnin, MA ;
Teillet, MA ;
Duprez, D .
DEVELOPMENTAL BIOLOGY, 2002, 247 (02) :351-366
[10]   Mutations in NOTCH1 cause aortic valve disease [J].
Garg, V ;
Muth, AN ;
Ransom, JF ;
Schluterman, MK ;
Barnes, R ;
King, IN ;
Grossfeld, PD ;
Srivastava, D .
NATURE, 2005, 437 (7056) :270-274