Muscle stem cells in developmental and regenerative myogenesis

被引:78
作者
Kang, Jong-Sun [2 ]
Krauss, Robert S. [1 ]
机构
[1] Mt Sinai Sch Med, Dept Dev & Regenerat Biol, New York, NY 10029 USA
[2] Sungkyunkwan Univ, Sch Med, Samsung Biomed Res Inst, Suwon, South Korea
关键词
muscle cell lineage; muscle regeneration; muscle stem cell; myogenesis; myogenic regulatory factor; Pax3; Pax7; satellite cell; PROGENITOR CELLS; SATELLITE CELLS; SELF-RENEWAL; MOUSE; NOTCH; DIFFERENTIATION; HETEROGENEITY; POPULATION; EXPANSION; PROMOTES;
D O I
10.1097/MCO.0b013e328336ea98
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Purpose of review Skeletal muscle development serves as a paradigm for cell lineage specification and cell differentiation. Adult skeletal muscle has high regenerative capacity, with satellite cells the primary source of this capability. The present review describes recent findings on developmental and adult myogenesis with emphasis on emerging distinctions between various muscle groups and stages of myogenesis. Recent findings Muscle progenitors of the body are derived from multipotent cells of the dermomyotome and express the transcription factors Pax3 and Pax7. These cells self-renew or induce expression of myogenic regulatory factors (MRFs) and differentiate. The roles of Pax3(+), Pax7(+) and specific myogenic regulatory factor(+) progenitor populations in trunk and limb myogenesis have been identified through cell ablation in the mouse. Various head muscles and associated satellite cells have differing developmental origins, and rely on distinct combinations of transcriptional regulators, than trunk and limb muscles. Several genetic and sorting protocols demonstrate that satellite cells are heterogeneous with some possessing stem cell properties; the relative roles of lineage and niche in these properties are being explored. Although cellular mechanisms of developmental, postnatal and adult regenerative myogenesis are thought to be similar, recent studies reveal distinct genetic requirements for embryonic, fetal, postnatal and adult regenerative myogenesis. Summary Genetic determinants of formation or repair of various muscles during different stages of myogenesis are unexpectedly diverse. Future studies should illuminate these differences, as well as mechanisms that underlie stem cell properties of satellite cells.
引用
收藏
页码:243 / 248
页数:6
相关论文
共 54 条
[1]   Autocrine and Paracrine Angiopoietin 1/Tie-2 Signaling Promotes Muscle Satellite Cell Self-Renewal [J].
Abou-Khalil, Rana ;
Le Grand, Fabien ;
Pallafacchina, Giorgia ;
Valable, Samuel ;
Authier, Francois-Jerome ;
Rudnicki, Michael A. ;
Gherardi, Romain K. ;
Germain, Stephane ;
Chretien, Fabrice ;
Sotiropoulos, Athanassia ;
Lafuste, Peggy ;
Montarras, Didier ;
Chazaud, Benedicte .
CELL STEM CELL, 2009, 5 (03) :298-309
[2]   Muscle hypertrophy driven by myostatin blockade does not require stem/precursor-cell activity [J].
Amthor, Helge ;
Otto, Anthony ;
Vulin, Adeline ;
Rochat, Anne ;
Dumonceaux, Julie ;
Garcia, Luis ;
Mouisel, Etienne ;
Hourde, Christophe ;
Macharia, Raymond ;
Friedrichs, Melanie ;
Relaix, Frederic ;
Zammit, Peter S. ;
Matsakas, Antonios ;
Patel, Ketan ;
Partridge, Terence .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (18) :7479-7484
[3]   Notch and bone morphogenetic protein differentially act on dermomyotome cells to generate endothelium, smooth, and striated muscle [J].
Ben-Yair, Raz ;
Kalcheim, Chaya .
JOURNAL OF CELL BIOLOGY, 2008, 180 (03) :607-618
[4]   Cellular heterogeneity during vertebrate skeletal muscle development [J].
Biressi, Stefano ;
Molinaro, Mario ;
Cossu, Giulio .
DEVELOPMENTAL BIOLOGY, 2007, 308 (02) :281-293
[5]  
BOBER E, 1994, DEVELOPMENT, V120, P603
[6]   A temporal switch from Notch to Wnt signaling in muscle stem cells is necessary for normal adult myogenesis [J].
Brack, Andrew S. ;
Conboy, Irina M. ;
Conboy, Michael J. ;
Shen, Jeanne ;
Rando, Thomas A. .
CELL STEM CELL, 2008, 2 (01) :50-59
[7]   BCL9 is an essential component of canonical Wnt signaling that mediates the differentiation of myogenic progenitors during muscle regeneration [J].
Brack, Andrew S. ;
Murphy-Seiler, Fabienne ;
Hanifi, Jasmine ;
Deka, Juergen ;
Eyckerman, Sven ;
Keller, Charles ;
Aguet, Michel ;
Rando, Thomas A. .
DEVELOPMENTAL BIOLOGY, 2009, 335 (01) :93-105
[8]   Distinct and dynamic myogenic populations in the vertebrate embryo [J].
Buckingham, Margaret ;
Vincent, Stephane D. .
CURRENT OPINION IN GENETICS & DEVELOPMENT, 2009, 19 (05) :444-453
[9]   Highly efficient, functional engraftment of skeletal muscle stem cells in dystrophic muscles [J].
Cerletti, Massimiliano ;
Jurga, Sara ;
Witczak, Carol A. ;
Hirshman, Michael F. ;
Shadrach, Jennifer L. ;
Goodyear, Laurie J. ;
Wagers, Amy J. .
CELL, 2008, 134 (01) :37-47
[10]   Muscle satellite cells and endothelial cells:: Close neighbors and privileged partners [J].
Christov, Christo ;
Chretien, Fabrice ;
Abou-Khalil, Rana ;
Bassez, Guillaume ;
Vallet, Gregoire ;
Authier, Francois-Jerome ;
Bassaglia, Yann ;
Shinin, Vasily ;
Tajbakhsh, Shahragim ;
Chazaud, Benedicte ;
Gherardi, Romain K. .
MOLECULAR BIOLOGY OF THE CELL, 2007, 18 (04) :1397-1409