Blocking the Myostatin Signal With a Dominant Negative Receptor Improves the Success of Human Myoblast Transplantation in Dystrophic Mice

被引:37
作者
Fakhfakh, Raouia [1 ]
Michaud, Annick [1 ]
Tremblay, Jacques P. [1 ]
机构
[1] Univ Laval, CHUL, Ctr Rech, Unite Rech Genet Humaine,Fac Med,CHUQ, Ste Foy, PQ G1V 4G2, Canada
关键词
DUCHENNE MUSCULAR-DYSTROPHY; BETA SUPERFAMILY MEMBER; GROWTH-FACTOR-BETA; SKELETAL-MUSCLE; TRANSCRIPTION FACTORS; MESSENGER-RNA; GENE DELIVERY; SELF-RENEWAL; RAT MUSCLES; MDX MICE;
D O I
10.1038/mt.2010.171
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Duchenne muscular dystrophy (DMD) is a recessive disease caused by a dystrophin gene mutation. Myoblast transplantation permits to introduce the dystrophin gene in dystrophic muscle fibers. However, the success of this approach is reduced by the short duration of the regeneration following the transplantation, which reduces the number of hybrid fibers. Myostatin (MSTN) is a negative regulator of skeletal muscle development and responsible for limiting regeneration. It binds with high affinity to the activin type IIB receptor (ActRIIB). Our aim was to verify whether the success of the myoblast transplantation is enhanced by blocking the MSTN signal with expression of a dominant negative mutant of ActRIIB (dnActRIIB). In vitro, blocking MSTN activity with a lentivirus carrying dnActRIIB increased proliferation and fusion of human myoblasts because MSTN regulates the expression of several myogenic regulatory factors. In vivo, myoblasts infected with the dnActRIIB lentivirus were transplanted in immunodeficient dystrophic mice. Dystrophin immunostaining of tibialis anterior (TA) cross-sections of these mice 1 month post-transplantation revealed more human dystrophin-positive myofibers following the transplantation of dnActRIIB myoblasts than of control myoblasts. Thus, blocking the MSTN signal with dnActRIIB improved the success of myoblast transplantation by increasing the myoblast proliferation and fusion and changed the expression of myogenic regulatory factors.
引用
收藏
页码:204 / 210
页数:7
相关论文
共 44 条
[31]   In vivo gene delivery and stable transduction of nondividing cells by a lentiviral vector [J].
Naldini, L ;
Blomer, U ;
Gallay, P ;
Ory, D ;
Mulligan, R ;
Gage, FH ;
Verma, IM ;
Trono, D .
SCIENCE, 1996, 272 (5259) :263-267
[32]   The function of Myostatin and strategies of Myostatin blockade - new hope for therapies aimed at promoting growth of skeletal muscle [J].
Patel, K ;
Amthor, H .
NEUROMUSCULAR DISORDERS, 2005, 15 (02) :117-126
[33]   Molecular mechanisms regulating myogenic determination and differentiation [J].
Perry, RLS ;
Rudnicki, MA .
FRONTIERS IN BIOSCIENCE, 2000, 5 :D750-D767
[34]   Myostatin propeptide gene delivery by adeno-associated virus serotype 8 vectors enhances muscle growth and ameliorates dystrophic phenotypes in mdx mice [J].
Qiao, Chunping ;
Li, Jianbin ;
Jiang, Jiangang ;
Zhu, Xiaodong ;
Wang, Bing ;
Li, Juan ;
Xiao, Xiao .
HUMAN GENE THERAPY, 2008, 19 (03) :241-254B
[35]   Myostatin regulates cell survival during C2C12 myogenesis [J].
Ríos, R ;
Carneiro, I ;
Arce, VM ;
Devesa, J .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2001, 280 (02) :561-566
[36]   Differential adaptation of growth and differentiation factor 8/myostatin, fibroblast growth factor 6 and leukemia inhibitory factor in overloaded, regenerating and denervated rat muscles [J].
Sakuma, K ;
Watanabe, K ;
Sano, M ;
Uramoto, I ;
Totsuka, T .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2000, 1497 (01) :77-88
[37]   Smad2 and 3 transcription factors control muscle mass in adulthood [J].
Sartori, Roberta ;
Milan, Giulia ;
Patron, Maria ;
Mammucari, Cristina ;
Blaauw, Bert ;
Abraham, Reimar ;
Sandri, Marco .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2009, 296 (06) :C1248-C1257
[38]  
Sharma M, 1999, J CELL PHYSIOL, V180, P1
[39]  
Skuk D, 2003, J MUSCLE RES CELL M, V24, P285
[40]  
Skuk D, 2000, MICROSC RES TECHNIQ, V48, P213, DOI 10.1002/(SICI)1097-0029(20000201/15)48:3/4<213::AID-JEMT9>3.0.CO