共 44 条
Transcription Factor Rational Design Improves Directed Differentiation of Human Mesenchymal Stem Cells Into Skeletal Myocytes
被引:31
作者:

Goncalves, Manuel A. F. V.
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机构:
Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

Janssen, Josephine M.
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机构:
Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

Nguyen, Quynh G.
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机构:
Univ Washington, Dept Biochem, Seattle, WA 98195 USA Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

Athanasopoulos, Takis
论文数: 0 引用数: 0
h-index: 0
机构:
Royal Holloway Univ London, Sch Biol Sci, Surrey, England Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

Hauschka, Stephen D.
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机构:
Univ Washington, Dept Biochem, Seattle, WA 98195 USA Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

Dickson, George
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h-index: 0
机构:
Royal Holloway Univ London, Sch Biol Sci, Surrey, England Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands

de Vries, Antoine A. F.
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h-index: 0
机构:
Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands
机构:
[1] Leiden Univ, Med Ctr, Dept Mol Cell Biol, NL-2333 ZC Leiden, Netherlands
[2] Univ Washington, Dept Biochem, Seattle, WA 98195 USA
[3] Royal Holloway Univ London, Sch Biol Sci, Surrey, England
基金:
美国国家卫生研究院;
关键词:
DUCHENNE MUSCULAR-DYSTROPHY;
INCLUSION-BODY MYOSITIS;
MYOD GENE-TRANSFER;
MUSCLE REGENERATION;
MDX MICE;
FORCED MYOGENESIS;
EXPRESSION;
FIBROBLASTS;
THERAPY;
TRANSPLANTATION;
D O I:
10.1038/mt.2010.308
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:
There is great interest in transdifferentiating cells from one lineage into those of another and in dedifferentiating mature cells back into a stem/progenitor cell state by deploying naturally occurring transcription factors (TFs). Often, however, steering cellular differentiation pathways in a predictable and efficient manner remains challenging. Here, we investigated the principle of combining domains from different lineage-specific TFs to improve directed cellular differentiation. As proof-of-concept, we engineered the whole-human TF MyoDCD, which has the NH(2)-terminal transcription activation domain (TAD) and adjacent DNA-binding motif of MyoD COOH-terminally fused to the TAD of myocardin (MyoCD). We found via reporter gene and marker protein assays as well as by a cell fusion readout system that, targeting the TAD of MyoCD to genes normally responsive to the skeletal muscle-specific TF MyoD enforces more robust myogenic reprogramming of nonmuscle cells than that achieved by the parental, prototypic master TF, MyoD. Human mesenchymal stem cells (hMSCs) transduced with a codon-optimized microdystrophin gene linked to a synthetic striated muscle-specific promoter and/or with MyoD or MyoDCD were evaluated for complementing the genetic defect in Duchenne muscular dystrophy (DMD) myocytes through heterotypic cell fusion. Cotransduction of hMSCs with MyoDCD and microdystrophin led to chimeric myotubes containing the highest dystrophin levels. Received 29 September 2010; accepted 20 December 2010; published online 25 January 2011. doi: 10.1038/mt.2010.308
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页码:1331 / 1341
页数:11
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