Muscle satellite cells adopt divergent fates: a mechanism for self-renewal?

被引:676
作者
Zammit, PS [1 ]
Golding, JP [1 ]
Nagata, Y [1 ]
Hudon, V [1 ]
Partridge, TA [1 ]
Beauchamp, JR [1 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Fac Med, MRC,Clin Sci Res, Muscle Cell Biol Grp, London W12 0NN, England
基金
英国医学研究理事会;
关键词
stem; skeletal muscle regeneration; Pax7; MyoD; myogenin;
D O I
10.1083/jcb.200312007
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Growth, repair, and regeneration of adult skeletal muscle depends on the persistence of satellite cells: muscle stem cells resident beneath the basal lamina that surrounds each myofiber. However, how the satellite cell compartment is maintained is unclear. Here, we use cultured myofibers to model muscle regeneration and show that satellite cells adopt divergent fates. Quiescent satellite cells are synchronously activated to coexpress the transcription factors Pax7 and MyoD. Most then proliferate, down-regulate Pax7, and differentiate. In contrast, other proliferating cells maintain Pax7 but lose MyoD and withdraw from immediate differentiation. These cells are typically located in clusters, together with Pax7-ve progeny destined for differentiation. Some of the Pax7 + ve/MyoD-ve cells then leave the cell cycle, thus regaining the quiescent satellite cell phenotype. Significantly, noncycling cells contained within a cluster can be stimulated to proliferate again. These observations suggest that satellite cells either differentiate or switch from terminal myogenesis to maintain the satellite cell pool.
引用
收藏
页码:347 / 357
页数:11
相关论文
共 66 条
[1]   Myogenin expression, cell cycle withdrawal, and phenotypic differentiation are temporally separable events that precede cell fusion upon myogenesis [J].
Andres, V ;
Walsh, K .
JOURNAL OF CELL BIOLOGY, 1996, 132 (04) :657-666
[2]   Notch signaling: Cell fate control and signal integration in development [J].
Artavanis-Tsakonas, S ;
Rand, MD ;
Lake, RJ .
SCIENCE, 1999, 284 (5415) :770-776
[3]   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
[4]   Identification of self-renewing myoblasts in the progeny of single human muscle satellite cells [J].
Baroffio, A ;
Hamann, M ;
Bernheim, L ;
BochatonPiallat, ML ;
Gabbiani, G ;
Bader, CR .
DIFFERENTIATION, 1996, 60 (01) :47-57
[5]   Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells [J].
Beauchamp, JR ;
Heslop, L ;
Yu, DSW ;
Tajbakhsh, S ;
Kelly, RG ;
Wernig, A ;
Buckingham, ME ;
Partridge, TA ;
Zammit, PS .
JOURNAL OF CELL BIOLOGY, 2000, 151 (06) :1221-1233
[6]   PROLIFERATION OF MUSCLE SATELLITE CELLS ON INTACT MYOFIBERS IN CULTURE [J].
BISCHOFF, R .
DEVELOPMENTAL BIOLOGY, 1986, 115 (01) :129-139
[7]  
Blaveri K, 1999, DEV DYNAM, V216, P244, DOI 10.1002/(SICI)1097-0177(199911)216:3<244::AID-DVDY3>3.0.CO
[8]  
2-9
[9]   TARGETED INACTIVATION OF THE MUSCLE REGULATORY GENE MYF-5 RESULTS IN ABNORMAL RIB DEVELOPMENT AND PERINATAL DEATH [J].
BRAUN, T ;
RUDNICKI, MA ;
ARNOLD, HH ;
JAENISCH, R .
CELL, 1992, 71 (03) :369-382
[10]   Significant differences among skeletal muscles in the incorporation of bone marrow-derived cells [J].
Brazelton, TR ;
Nystrom, M ;
Blau, HM .
DEVELOPMENTAL BIOLOGY, 2003, 262 (01) :64-74