-
1
-
-
0034071559
-
A role for nitric oxide in muscle repair: Nitric oxide-mediated activation of muscle satellite cells
-
Anderson, J.E. 2000. A role for nitric oxide in muscle repair: nitric oxide-mediated activation of muscle satellite cells. Mol. Biol. Cell. 11:1859-1874.
-
(2000)
Mol. Biol. Cell
, vol.11
, pp. 1859-1874
-
-
Anderson, J.E.1
-
2
-
-
0034638832
-
Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells
-
Beauchamp, J.R., L. Heslop, D.S. Yu, S. Tajbakhsh, R.G. Kelly, A. Wernig, M.E. Buckingham, T.A. Partridge, and P.S. Zammit. 2000. Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells. J. Cell Biol. 151:1221-1234.
-
(2000)
J. Cell Biol
, vol.151
, pp. 1221-1234
-
-
Beauchamp, J.R.1
Heslop, L.2
Yu, D.S.3
Tajbakhsh, S.4
Kelly, R.G.5
Wernig, A.6
Buckingham, M.E.7
Partridge, T.A.8
Zammit, P.S.9
-
3
-
-
0002841587
-
The satellite cell and muscle regeneration
-
A.G. Engel and C. Franszini-Armstrong, editors. McGraw-Hill, New York
-
Bischoff, R. 1994. The satellite cell and muscle regeneration. In Myogenesis. A.G. Engel and C. Franszini-Armstrong, editors. McGraw-Hill, New York. 97-118.
-
(1994)
Myogenesis
, pp. 97-118
-
-
Bischoff, R.1
-
4
-
-
0031788318
-
Differential expression of peroxisome proliferator-activated receptor-alpha, -beta, and -gamma during rat embryonic development
-
Braissant, O., and W. Wahli. 1998. Differential expression of peroxisome proliferator-activated receptor-alpha, -beta, and -gamma during rat embryonic development. Endocrinology. 139:2748-2754.
-
(1998)
Endocrinology
, vol.139
, pp. 2748-2754
-
-
Braissant, O.1
Wahli, W.2
-
5
-
-
0347989458
-
Cellular and molecular regulation of muscle regeneration
-
Charge, S.B., and M.A. Rudnicki. 2004. Cellular and molecular regulation of muscle regeneration. Physiol. Rev. 84:209-238.
-
(2004)
Physiol. Rev
, vol.84
, pp. 209-238
-
-
Charge, S.B.1
Rudnicki, M.A.2
-
7
-
-
22744438723
-
Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche
-
Collins, C.A., I. Olsen, P.S. Zammit, L. Heslop, A. Petrie, T.A. Partridge, and J.E. Morgan. 2005. Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche. Cell. 122:289-301.
-
(2005)
Cell
, vol.122
, pp. 289-301
-
-
Collins, C.A.1
Olsen, I.2
Zammit, P.S.3
Heslop, L.4
Petrie, A.5
Partridge, T.A.6
Morgan, J.E.7
-
8
-
-
0036744815
-
The regulation of Notch signaling controls satellite cell activation and cell fate determination in postnatal myogenesis
-
Conboy, I.M., and T.A. Rando. 2002. The regulation of Notch signaling controls satellite cell activation and cell fate determination in postnatal myogenesis. Dev. Cell. 3:397-409.
-
(2002)
Dev. Cell
, vol.3
, pp. 397-409
-
-
Conboy, I.M.1
Rando, T.A.2
-
9
-
-
0344827208
-
Notch-mediated restoration of regenerative potential to aged muscle
-
Conboy, I.M., M.J. Conboy, G.M. Smythe, and T.A. Rando. 2003. Notch-mediated restoration of regenerative potential to aged muscle. Science. 302:1575-1577.
-
(2003)
Science
, vol.302
, pp. 1575-1577
-
-
Conboy, I.M.1
Conboy, M.J.2
Smythe, G.M.3
Rando, T.A.4
-
10
-
-
13944261231
-
Rejuvenation of aged progenitor cells by exposure to a young systemic environment
-
Conboy, I.M., M.J. Conboy, A.J. Wagers, E.R. Girma, I.L. Weissman, and T.A. Rando. 2005. Rejuvenation of aged progenitor cells by exposure to a young systemic environment. Nature. 433:760-764.
-
(2005)
Nature
, vol.433
, pp. 760-764
-
-
Conboy, I.M.1
Conboy, M.J.2
Wagers, A.J.3
Girma, E.R.4
Weissman, I.L.5
Rando, T.A.6
-
11
-
-
0031573026
-
Single-cell analysis of regulatory gene expression in quiescent and activated mouse skeletal muscle satellite cells
-
Cornelison, D.D., and B.J. Wold. 1997. Single-cell analysis of regulatory gene expression in quiescent and activated mouse skeletal muscle satellite cells. Dev. Biol. 191:270-283.
-
(1997)
Dev. Biol
, vol.191
, pp. 270-283
-
-
Cornelison, D.D.1
Wold, B.J.2
-
12
-
-
0035503877
-
Syndecan-3 and syndecan-4 specifically mark skeletal muscle satellite cells and are implicated in satellite cell maintenance and muscle regeneration
-
Cornelison, D.D., M.S. Filla, H.M. Stanley, A.C. Rapraeger, and B.B. Olwin. 2001. Syndecan-3 and syndecan-4 specifically mark skeletal muscle satellite cells and are implicated in satellite cell maintenance and muscle regeneration. Dev. Biol. 239:79-94.
-
(2001)
Dev. Biol
, vol.239
, pp. 79-94
-
-
Cornelison, D.D.1
Filla, M.S.2
Stanley, H.M.3
Rapraeger, A.C.4
Olwin, B.B.5
-
13
-
-
0038012647
-
Unwrapping glial biology: Gcm target genes regulating glial development, diversification, and function
-
Freeman, M.R., J. Delrow, J. Kim, E. Johnson, and C.Q. Doe. 2003. Unwrapping glial biology: Gcm target genes regulating glial development, diversification, and function. Neuron. 38:567-580.
-
(2003)
Neuron
, vol.38
, pp. 567-580
-
-
Freeman, M.R.1
Delrow, J.2
Kim, J.3
Johnson, E.4
Doe, C.Q.5
-
14
-
-
34249981940
-
Cooperation between engulfment receptors: The case of ABCA1 and MEGF10
-
Hamon, Y., D. Trompier, Z. Ma, V. Venegas, M. Pophillat, V. Mignotte, Z. Zhou, and G. Chimini. 2006. Cooperation between engulfment receptors: the case of ABCA1 and MEGF10. PLoS ONE. 1:e120.
-
(2006)
PLoS ONE
, vol.1
-
-
Hamon, Y.1
Trompier, D.2
Ma, Z.3
Venegas, V.4
Pophillat, M.5
Mignotte, V.6
Zhou, Z.7
Chimini, G.8
-
15
-
-
24344459461
-
Molecular regulation of satellite cell function
-
Holterman, C.E., and M.A. Rudnicki. 2005. Molecular regulation of satellite cell function. Semin. Cell Dev. Biol. 16:575-584.
-
(2005)
Semin. Cell Dev. Biol
, vol.16
, pp. 575-584
-
-
Holterman, C.E.1
Rudnicki, M.A.2
-
16
-
-
27744475372
-
MyoD induces myogenic differentiation through cooperation of its NH2- and COOH-terminal regions
-
Ishibashi, J., R.L. Perry, A. Asakura, and M.A. Rudnicki. 2005. MyoD induces myogenic differentiation through cooperation of its NH2- and COOH-terminal regions. J. Cell Biol. 171:471-482.
-
(2005)
J. Cell Biol
, vol.171
, pp. 471-482
-
-
Ishibashi, J.1
Perry, R.L.2
Asakura, A.3
Rudnicki, M.A.4
-
17
-
-
0027293284
-
Expression of hepatocyte growth factor in growing and regenerating rat skeletal muscle
-
Jennische, E., S. Ekberg, and G.L. Matejka. 1993. Expression of hepatocyte growth factor in growing and regenerating rat skeletal muscle. Am. J. Physiol. 265:C122-C128.
-
(1993)
Am. J. Physiol
, vol.265
-
-
Jennische, E.1
Ekberg, S.2
Matejka, G.L.3
-
18
-
-
34247897063
-
Jedi - a novel transmembrane protein expressed in early hematopoietic cells
-
Krivtsov, A.V., F.N. Rozov, M.V. Zinovyeva, P.J. Hendrikx, Y. Jiang, J.W. Visser, and A.V. Belyavsky. 2007. Jedi - a novel transmembrane protein expressed in early hematopoietic cells. J. Cell. Biochem. 101:767-784.
-
(2007)
J. Cell. Biochem
, vol.101
, pp. 767-784
-
-
Krivtsov, A.V.1
Rozov, F.N.2
Zinovyeva, M.V.3
Hendrikx, P.J.4
Jiang, Y.5
Visser, J.W.6
Belyavsky, A.V.7
-
19
-
-
29944440269
-
Distinct roles for Pax7 and Pax3 in adult regenerative myogenesis
-
Kuang, S., S.B. Charge, P. Seale, M. Huh, and M.A. Rudnicki. 2006. Distinct roles for Pax7 and Pax3 in adult regenerative myogenesis. J. Cell Biol. 172:103-113.
-
(2006)
J. Cell Biol
, vol.172
, pp. 103-113
-
-
Kuang, S.1
Charge, S.B.2
Seale, P.3
Huh, M.4
Rudnicki, M.A.5
-
20
-
-
34249108083
-
Asymmetric self-renewal and commitment of satellite stem cells in muscle
-
Kuang, S., K. Kuroda, F. Le Grand, and M.A. Rudnicki. 2007. Asymmetric self-renewal and commitment of satellite stem cells in muscle. Cell. 129:999-1010.
-
(2007)
Cell
, vol.129
, pp. 999-1010
-
-
Kuang, S.1
Kuroda, K.2
Le Grand, F.3
Rudnicki, M.A.4
-
21
-
-
0000642664
-
Satellite cell of skeletal muscle fibers
-
Mauro, A. 1961. Satellite cell of skeletal muscle fibers. J. Biophys. Biochem. Cytol. 9:493-495.
-
(1961)
J. Biophys. Biochem. Cytol
, vol.9
, pp. 493-495
-
-
Mauro, A.1
-
22
-
-
0029954208
-
MyoD is required for myogenic stem cell function in adult skeletal muscle
-
Megeney, L.A., B. Kablar, K. Garrett, J.E. Anderson, and M.A. Rudnicki. 1996. MyoD is required for myogenic stem cell function in adult skeletal muscle. Genes Dev. 10:1173-1183.
-
(1996)
Genes Dev
, vol.10
, pp. 1173-1183
-
-
Megeney, L.A.1
Kablar, B.2
Garrett, K.3
Anderson, J.E.4
Rudnicki, M.A.5
-
23
-
-
0035958015
-
Prediction of the coding sequences of unidentified human genes. XX. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro
-
Nagase, T., M. Nakayama, D. Nakajima, R. Kikuno, and O. Ohara. 2001. Prediction of the coding sequences of unidentified human genes. XX. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro. DNA Res. 8:85-95.
-
(2001)
DNA Res
, vol.8
, pp. 85-95
-
-
Nagase, T.1
Nakayama, M.2
Nakajima, D.3
Kikuno, R.4
Ohara, O.5
-
24
-
-
0032915458
-
Notch signaling imposes two distinct blocks in the differentiation of C2C12 myoblasts
-
Nofziger, D., A. Miyamoto, K.M. Lyons, and G. Weinmaster. 1999. Notch signaling imposes two distinct blocks in the differentiation of C2C12 myoblasts. Development. 126:1689-1702.
-
(1999)
Development
, vol.126
, pp. 1689-1702
-
-
Nofziger, D.1
Miyamoto, A.2
Lyons, K.M.3
Weinmaster, G.4
-
25
-
-
0034840401
-
Activated MEK1 binds the nuclear MyoD transcriptional complex to repress transactivation
-
Perry, R.L., M.H. Parker, and M.A. Rudnicki. 2001. Activated MEK1 binds the nuclear MyoD transcriptional complex to repress transactivation. Mol. Cell. 8:291-301.
-
(2001)
Mol. Cell
, vol.8
, pp. 291-301
-
-
Perry, R.L.1
Parker, M.H.2
Rudnicki, M.A.3
-
26
-
-
0033593785
-
Reduced differentiation potential of primary MyoD-/- myogenic cells derived from adult skeletal muscle
-
Sabourin, L.A., A. Girgis-Gabardo, P. Seale, A. Asakura, and M.A. Rudnicki. 1999. Reduced differentiation potential of primary MyoD-/- myogenic cells derived from adult skeletal muscle. J. Cell Biol. 144:631-643.
-
(1999)
J. Cell Biol
, vol.144
, pp. 631-643
-
-
Sabourin, L.A.1
Girgis-Gabardo, A.2
Seale, P.3
Asakura, A.4
Rudnicki, M.A.5
-
27
-
-
0029913205
-
Satellite cell proliferative compartments in growing skeletal muscles
-
Schultz, E. 1996. Satellite cell proliferative compartments in growing skeletal muscles. Dev. Biol. 175:84-94.
-
(1996)
Dev. Biol
, vol.175
, pp. 84-94
-
-
Schultz, E.1
-
28
-
-
14244259103
-
Muscle satellite cell-specific genes identified by genetic profiling of MyoD-deficient myogenic cell
-
Seale, P., J. Ishibashi, C. Holterman, and M.A. Rudnicki. 2004. Muscle satellite cell-specific genes identified by genetic profiling of MyoD-deficient myogenic cell. Dev. Biol. 275:287-300.
-
(2004)
Dev. Biol
, vol.275
, pp. 287-300
-
-
Seale, P.1
Ishibashi, J.2
Holterman, C.3
Rudnicki, M.A.4
-
29
-
-
0028918657
-
A transient three-plasmid expression system for the production of high titer retroviral vectors
-
Soneoka, Y., P.M. Cannon, E.E. Ramsdale, J.C. Griffiths, G. Romano, S.M. Kingsman, and A.J. Kingsman. 1995. A transient three-plasmid expression system for the production of high titer retroviral vectors. Nucleic Acids Res. 23:628-633.
-
(1995)
Nucleic Acids Res
, vol.23
, pp. 628-633
-
-
Soneoka, Y.1
Cannon, P.M.2
Ramsdale, E.E.3
Griffiths, J.C.4
Romano, G.5
Kingsman, S.M.6
Kingsman, A.J.7
-
30
-
-
34047175863
-
Stra13 regulates satellite cell activation by antagonizing Notch signaling
-
Sun, H., L. Li, C. Vercherat, N.T. Gulbagci, S. Acharjee, J. Li, T.K. Chung, T.H. Thin, and R. Taneja. 2007. Stra13 regulates satellite cell activation by antagonizing Notch signaling. J. Cell Biol. 177:647-657.
-
(2007)
J. Cell Biol
, vol.177
, pp. 647-657
-
-
Sun, H.1
Li, L.2
Vercherat, C.3
Gulbagci, N.T.4
Acharjee, S.5
Li, J.6
Chung, T.K.7
Thin, T.H.8
Taneja, R.9
-
31
-
-
34249987983
-
The mammalian Ced-1 ortholog MEGF10/KIAA1780 displays a novel adhesion pattern
-
Suzuki, E., and M. Nakayama. 2007. The mammalian Ced-1 ortholog MEGF10/KIAA1780 displays a novel adhesion pattern. Exp. Cell Res. 313:2451-2464.
-
(2007)
Exp. Cell Res
, vol.313
, pp. 2451-2464
-
-
Suzuki, E.1
Nakayama, M.2
-
32
-
-
0032006325
-
HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells
-
Tatsumi, R., J.E. Anderson, C.J. Nevoret, O. Halevy, and R.E. Allen. 1998. HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells. Dev. Biol. 194:114-128.
-
(1998)
Dev. Biol
, vol.194
, pp. 114-128
-
-
Tatsumi, R.1
Anderson, J.E.2
Nevoret, C.J.3
Halevy, O.4
Allen, R.E.5
-
33
-
-
0035398554
-
Mechanical stretch induces activation of skeletal muscle satellite cells in vitro
-
Tatsumi, R., S.M. Sheehan, H. Iwasaki, A. Hattori, and R.E. Allen. 2001. Mechanical stretch induces activation of skeletal muscle satellite cells in vitro. Exp. Cell Res. 267:107-114.
-
(2001)
Exp. Cell Res
, vol.267
, pp. 107-114
-
-
Tatsumi, R.1
Sheehan, S.M.2
Iwasaki, H.3
Hattori, A.4
Allen, R.E.5
-
34
-
-
0036678803
-
Release of hepatocyte growth factor from mechanically stretched skeletal muscle satellite cells and role of pH and nitric oxide
-
Tatsumi, R., A. Hattori, Y. Ikeuchi, J.E. Anderson, and R.E. Allen. 2002. Release of hepatocyte growth factor from mechanically stretched skeletal muscle satellite cells and role of pH and nitric oxide. Mol. Biol. Cell. 13:2909-2918.
-
(2002)
Mol. Biol. Cell
, vol.13
, pp. 2909-2918
-
-
Tatsumi, R.1
Hattori, A.2
Ikeuchi, Y.3
Anderson, J.E.4
Allen, R.E.5
-
35
-
-
33744815903
-
Satellite cell activation in stretched skeletal muscle and the role of nitric oxide and hepatocyte growth factor
-
Tatsumi, R., X. Liu, A. Pulido, M. Morales, T. Sakata, S. Dial, A. Hattori, Y. Ikeuchi, and R.E. Allen. 2006. Satellite cell activation in stretched skeletal muscle and the role of nitric oxide and hepatocyte growth factor. Am. J. Physiol. Cell Physiol. 290:C1487-C1494.
-
(2006)
Am. J. Physiol. Cell Physiol
, vol.290
-
-
Tatsumi, R.1
Liu, X.2
Pulido, A.3
Morales, M.4
Sakata, T.5
Dial, S.6
Hattori, A.7
Ikeuchi, Y.8
Allen, R.E.9
-
36
-
-
34547866111
-
The myogenic factor myf5 supports efficient skeletal muscle regeneration by enabling transient myoblast amplification
-
Ustanina, S., J. Carvajal, P. Rigby, and T. Braun. 2007. The myogenic factor myf5 supports efficient skeletal muscle regeneration by enabling transient myoblast amplification. Stem Cells. 25:2006-2016.
-
(2007)
Stem Cells
, vol.25
, pp. 2006-2016
-
-
Ustanina, S.1
Carvajal, J.2
Rigby, P.3
Braun, T.4
-
37
-
-
34248364852
-
RBP-J (Rbpsuh) is essential to maintain muscle progenitor cells and to generate satellite cells
-
Vasyutina, E., D.C. Lenhard, H. Wende, B. Erdmann, J.A. Epstein, and C. Birchmeier. 2007. RBP-J (Rbpsuh) is essential to maintain muscle progenitor cells and to generate satellite cells. Proc. Natl. Acad. Sci. USA. 104:4443-4448.
-
(2007)
Proc. Natl. Acad. Sci. USA
, vol.104
, pp. 4443-4448
-
-
Vasyutina, E.1
Lenhard, D.C.2
Wende, H.3
Erdmann, B.4
Epstein, J.A.5
Birchmeier, C.6
-
38
-
-
33846232315
-
Nitric oxide-dependence of satellite stem cell activation and quiescence on normal skeletal muscle fibers
-
Wozniak, A.C., and J.E. Anderson. 2007. Nitric oxide-dependence of satellite stem cell activation and quiescence on normal skeletal muscle fibers. Dev. Dyn. 236:240-250.
-
(2007)
Dev. Dyn
, vol.236
, pp. 240-250
-
-
Wozniak, A.C.1
Anderson, J.E.2
-
39
-
-
0031969222
-
Cell heterogeneity upon myogenic differentiation: Down-regulation of MyoD and Myf-5 generates 'reserve cells'
-
Yoshida, N., S. Yoshida, K. Koishi, K. Masuda, and Y. Nabeshima. 1998. Cell heterogeneity upon myogenic differentiation: down-regulation of MyoD and Myf-5 generates 'reserve cells'. J. Cell Sci. 111:769-779.
-
(1998)
J. Cell Sci
, vol.111
, pp. 769-779
-
-
Yoshida, N.1
Yoshida, S.2
Koishi, K.3
Masuda, K.4
Nabeshima, Y.5
-
40
-
-
3543123015
-
Muscle satellite cells adopt divergent fates: A mechanism for self-renewal?
-
Zammit, P.S., J.P. Golding, Y. Nagata, V. Hudon, T.A. Partridge, and J.R. Beauchamp. 2004. Muscle satellite cells adopt divergent fates: a mechanism for self-renewal? J. Cell Biol. 166:347-357.
-
(2004)
J. Cell Biol
, vol.166
, pp. 347-357
-
-
Zammit, P.S.1
Golding, J.P.2
Nagata, Y.3
Hudon, V.4
Partridge, T.A.5
Beauchamp, J.R.6
-
41
-
-
0035846903
-
CED-1 is a transmembrane receptor that mediates cell corpse engulfment in C. elegans
-
Zhou, Z., E. Hartwieg, and H.R. Horvitz. 2001. CED-1 is a transmembrane receptor that mediates cell corpse engulfment in C. elegans. Cell. 104:43-56.
-
(2001)
Cell
, vol.104
, pp. 43-56
-
-
Zhou, Z.1
Hartwieg, E.2
Horvitz, H.R.3
|