Synectin/Syndecan-4 regulate coronary arteriolar growth during development

被引:19
作者
Dedkov, Eduard I.
Thomas, Mathew T.
Sonka, Milan
Yang, Fuxing
Chittenden, Thomas W.
Rhodes, John M.
Simons, Michael
Ritman, Erik L.
Tomanek, Robert J.
机构
[1] New York Coll Osteopath Med, Dept Biomed Sci, Old Westbury, NY USA
[2] Harvard Sch Publ Hlth, Dana Farber Canc Inst, Funct Genom & Computat Biol Grp, Boston, MA USA
[3] Univ Iowa, Carver Coll Med, Dept Anat & Cell Biol, Iowa City, IA 52242 USA
[4] Univ Iowa, Dept Elect & Comp Engn, Iowa City, IA 52242 USA
[5] Dartmouth Med Sch, Angiogenesis Res Ctr, Dept Med, Hanover, NH USA
[6] Dartmouth Med Sch, Angiogenesis Res Ctr, Dept Pharmacol, Hanover, NH USA
[7] Dartmouth Med Sch, Angiogenesis Res Ctr, Dept Toxicol, Hanover, NH USA
[8] Mayo Clin, Dept Physiol & Biomed Engn, Rochester, MN USA
关键词
synectin/syndecan-4; coronary arteriolar growth; mice; arteriogenesis;
D O I
10.1002/dvdy.21201
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Syndecan-4 and its cytoplasmic binding partner, synectin, are known to play a role in FGF-2 signaling and vascular growth. To determine their roles in coronary artery/arteriolar formation and growth, we compared syndecan-4 and synectin null mice with their wild-type counterparts. Image analysis of arterioles visualized by smooth muscle alpha-actin immunostaining revealed that synectin(-/-) mice had lower arteriolar length and volume densities than wild-type mice. As shown by electron microscopic analysis, arterioles from the two did not differ in morphology, including their endothelial cell junctions, and the organization and distribution of smooth muscle. Using micro-computer tomography, we found that the size and branching patterns of coronary arteries (diameters > 50 mu m) were similar for the two groups, a finding that indicates that the growth of arteries is not influenced by a loss of synectin. Syndecan-4 null male mice also had lower arteriolar length densities than their gender wild-type controls. However, female syndecan-4 null mice were characterized by higher arteriolar length and volume densities than their gender-matched wild-type controls. Thus, we conclude that both synectin and syndecan-4 play a role in arteriolar development, a finding that is consistent with previous evidence that FGF-2 plays a role in coronary arterial growth. Moreover, our data reveal that gender influences the arteriolar growth response to syndecan-4 but not to synectin.
引用
收藏
页码:2004 / 2010
页数:7
相关论文
共 34 条
[1]   Regulation of vascular development by fibroblast growth factors [J].
Auguste, P ;
Javerzat, S ;
Bikfalvi, A .
CELL AND TISSUE RESEARCH, 2003, 314 (01) :157-166
[2]   Syndecan-1 and syndecan-4 are overexpressed in an estrogen receptor-negative, highly proliferative breast carcinoma subtype [J].
Baba, Fusun ;
Swartz, Kathryn ;
van Buren, Regina ;
Eickhoff, Jens ;
Zhang, Yong ;
Wolberg, William ;
Friedl, Andreas .
BREAST CANCER RESEARCH AND TREATMENT, 2006, 98 (01) :91-98
[3]   Cytoplasmic interactions of syndecan-4 orchestrate adhesion receptor and growth factor receptor signalling [J].
Bass, MD ;
Humphries, MJ .
BIOCHEMICAL JOURNAL, 2002, 368 :1-15
[4]   Protein interactions with the glucose transporter binding protein GLUT1CBP that provide a link between GLUT1 and the cytoskeleton [J].
Bunn, RC ;
Jensen, MA ;
Reed, BC .
MOLECULAR BIOLOGY OF THE CELL, 1999, 10 (04) :819-832
[5]  
Cai HB, 1999, J NEUROSCI, V19, P6519
[6]   Selective regulation of arterial branching morphogenesis by synectin [J].
Chittenden, Thomas W. ;
Claes, Filip ;
Lanahan, Anthony A. ;
Autiero, Monica ;
Palac, Robert T. ;
Tkachenko, Eugene V. ;
Elfenbein, Arye ;
de Almodovar, Carmen Ruiz ;
Dedkov, Eduard ;
Tomanek, Robert ;
Li, Weiming ;
Westmore, Michael ;
Singh, JaiPal ;
Horowitz, Arie ;
Mulligan-Kehoe, Mary Jo ;
Moodie, Karen L. ;
Zhuang, Zhen W. ;
Carmeliet, Peter ;
Simons, Michael .
DEVELOPMENTAL CELL, 2006, 10 (06) :783-795
[7]   Reduction of heart rate by chronic β1-adrenoceptor blockade promotes growth of arterioles and preserves coronary perfusion reserve in postinfarcted heart [J].
Dedkov, EI ;
Christensen, LP ;
Weiss, RM ;
Tomanek, RJ .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2005, 288 (06) :H2684-H2693
[8]   Involvement of the fibroblast growth factor system in adaptive and chemokine-induced arteriogenesis [J].
Deindl, E ;
Hoefer, IE ;
Fernandez, B ;
Barancik, M ;
Heil, M ;
Strniskova, M ;
Schaper, W .
CIRCULATION RESEARCH, 2003, 92 (05) :561-568
[9]   Delayed wound repair and impaired angiogenesis in mice lacking syndecan-4 [J].
Echtermeyer, F ;
Streit, M ;
Wilcox-Adelman, S ;
Saoncella, S ;
Denhez, F ;
Detmar, M ;
Goetinck, PF .
JOURNAL OF CLINICAL INVESTIGATION, 2001, 107 (02) :R9-R14
[10]   THE DIRECT EXAMINATION OF 3-DIMENSIONAL BONE ARCHITECTURE INVITRO BY COMPUTED-TOMOGRAPHY [J].
FELDKAMP, LA ;
GOLDSTEIN, SA ;
PARFITT, AM ;
JESION, G ;
KLEEREKOPER, M .
JOURNAL OF BONE AND MINERAL RESEARCH, 1989, 4 (01) :3-11