Resident stem cells are not required for exercise-induced fiber-type switching and angiogenesis but are necessary for activity-dependent muscle growth

被引:48
作者
Li, P [1 ]
Akimoto, T [1 ]
Zhang, M [1 ]
Williams, RS [1 ]
Yan, Z [1 ]
机构
[1] Duke Univ, Med Ctr, Dept Med, Independence Pk Facil, Durham, NC 27704 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY | 2006年 / 290卷 / 06期
关键词
endurance exercise; adaptation;
D O I
10.1152/ajpcell.00532.2005
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Skeletal muscle undergoes active remodeling in response to endurance exercise training, and the underlying mechanisms of this remodeling remain to be defined fully. We have recently obtained evidence that voluntary running induces cell cycle gene expression and cell proliferation in mouse plantaris muscles that undergo fast-to-slow fiber-type switching and angiogenesis after long-term exercise. To ascertain the functional role of cell proliferation in skeletal muscle adaptation, we performed in vivo 5-bromo-2'-deoxyuridine (BrdU) pulse labeling (a single intraperitoneal injection), which demonstrated a phasic increase (5- to 10-fold) in BrdU-positive cells in plantaris muscle between days 3 and 14 during 4 wk of voluntary running. Daily intraperitoneal injection of BrdU for 4 wk labeled 2.0% and 15.4% of the nuclei in plantaris muscle in sedentary and trained mice, respectively, and revealed the myogenic and angiogenic fates of the majority of proliferative cells. Ablation of resident stem cell activity by X-ray irradiation did not prevent voluntary running-induced increases of type IIa myofibers and CD31-positive endothelial cells but completely blocked the increase in muscle mass. These findings suggest that resident stem cell proliferation is not required for exercise-induced type IIb-to-IIa fiber-type switching and angiogenesis but is required for activity-dependent muscle growth. The origin of the angiogenic cells in this physiological exercise model remains to be determined.
引用
收藏
页码:C1461 / C1468
页数:8
相关论文
共 35 条
[1]   Cellular and molecular responses to increased skeletal muscle loading after irradiation [J].
Adams, GR ;
Caiozzo, VJ ;
Haddad, F ;
Baldwin, KM .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2002, 283 (04) :C1182-C1195
[2]   Exercise stimulates Pgc-1α transcription in skeletal muscle through activation of the p38 MAPK pathway [J].
Akimoto, T ;
Pohnert, SC ;
Li, P ;
Zhang, M ;
Gumbs, C ;
Rosenberg, PB ;
Williams, RS ;
Yan, Z .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (20) :19587-19593
[3]   Skeletal muscle adaptation in response to voluntary running in Ca2+/calmodulin-dependent protein kinase IV-deficient mice [J].
Akimoto, T ;
Ribar, TJ ;
Williams, RS ;
Yan, Z .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2004, 287 (05) :C1311-C1319
[4]   Cardiac and skeletal muscle adaptations to voluntary wheel running in the mouse [J].
Allen, DL ;
Harrison, BC ;
Maass, AH ;
Bell, ML ;
Byrnes, WC ;
Leinwand, LA .
JOURNAL OF APPLIED PHYSIOLOGY, 2001, 90 (05) :1900-1908
[5]   Myogenic specification of side population cells in skeletal muscle [J].
Asakura, A ;
Seale, P ;
Girgis-Gabardo, A ;
Rudnicki, MA .
JOURNAL OF CELL BIOLOGY, 2002, 159 (01) :123-134
[6]  
Booth F.W., 1996, HDB PHYSL, P1075
[7]   A calcineurin-dependent transcriptional pathway controls skeletal muscle fiber type [J].
Chin, ER ;
Olson, EN ;
Richardson, JA ;
Yano, Q ;
Humphries, C ;
Shelton, JM ;
Wu, H ;
Zhu, WG ;
Bassel-Duby, R ;
Williams, RS .
GENES & DEVELOPMENT, 1998, 12 (16) :2499-2509
[8]   Transcriptional profiling in mouse skeletal muscle following a single bout of voluntary running: evidence of increased cell proliferation [J].
Choi, S ;
Liu, XB ;
Li, P ;
Akimoto, T ;
Lee, SY ;
Zhang, M ;
Yan, Z .
JOURNAL OF APPLIED PHYSIOLOGY, 2005, 99 (06) :2406-2415
[9]   Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche [J].
Collins, CA ;
Olsen, I ;
Zammit, PS ;
Heslop, L ;
Petrie, A ;
Partridge, TA ;
Morgan, JE .
CELL, 2005, 122 (02) :289-301
[10]   Cellular effects of β-particle delivery on vascular smooth muscle cells and endothelial cells -: A dose-response study [J].
Fareh, J ;
Martel, R ;
Kermani, P ;
Leclerc, G .
CIRCULATION, 1999, 99 (11) :1477-1484