-
1
-
-
33644768174
-
Control of translation and mRNA degradation by miRNAs and siRNAs
-
Valencia-Sanchez, M.A., Liu, J., Hannon, G.J. & Parker, R. Control of translation and mRNA degradation by miRNAs and siRNAs. Genes Dev. 20, 515-524 (2006).
-
(2006)
Genes Dev.
, vol.20
, pp. 515-524
-
-
Valencia-Sanchez, M.A.1
Liu, J.2
Hannon, G.J.3
Parker, R.4
-
2
-
-
58249088751
-
MicroRNAs: Target recognition and regulatory functions
-
Bartel, D.P. MicroRNAs: Target recognition and regulatory functions. Cell 136, 215-233 (2009).
-
(2009)
Cell
, vol.136
, pp. 215-233
-
-
Bartel, D.P.1
-
3
-
-
34147149312
-
A developmental view of microRNA function
-
Zhao, Y. & Srivastava, D. A developmental view of microRNA function. Trends Biochem. Sci. 32, 189-197 (2007).
-
(2007)
Trends Biochem. Sci.
, vol.32
, pp. 189-197
-
-
Zhao, Y.1
Srivastava, D.2
-
4
-
-
49749129666
-
Lessons from microRNA mutants in worms, fies and mice
-
Smibert, P. & Lai, E.C. Lessons from microRNA mutants in worms, fies and mice. Cell Cycle 7, 2500-2508 (2008).
-
(2008)
Cell Cycle
, vol.7
, pp. 2500-2508
-
-
Smibert, P.1
Lai, E.C.2
-
5
-
-
28044439909
-
A cAMP-response element binding protein-induced microRNA regulates neuronal morphogenesis
-
Vo, N. et al. A cAMP-response element binding protein-induced microRNA regulates neuronal morphogenesis. Proc. Natl. Acad. Sci. USA 102, 16426-16431 (2005).
-
(2005)
Proc. Natl. Acad. Sci. USA
, vol.102
, pp. 16426-16431
-
-
Vo, N.1
-
6
-
-
48249095979
-
An activity-regulated microRNA controls dendritic plasticity by down-regulating p250GAP
-
Wayman, G.A. et al. An activity-regulated microRNA controls dendritic plasticity by down-regulating p250GAP. Proc. Natl. Acad. Sci. USA 105, 9093-9098 (2008).
-
(2008)
Proc. Natl. Acad. Sci. USA
, vol.105
, pp. 9093-9098
-
-
Wayman, G.A.1
-
7
-
-
72149098399
-
An activity-induced microRNA controls dendritic spine formation by regulating Rac1-PAK signaling
-
Impey, S. et al. An activity-induced microRNA controls dendritic spine formation by regulating Rac1-PAK signaling. Mol. Cell. Neurosci. 43, 146-156 (2010).
-
(2010)
Mol. Cell. Neurosci.
, vol.43
, pp. 146-156
-
-
Impey, S.1
-
8
-
-
73749088302
-
Glucocorticoid attenuates brain-derived neurotrophic factor-dependent upregulation of glutamate receptors via the suppression of microRNA-132 expression
-
Kawashima, H. et al. Glucocorticoid attenuates brain-derived neurotrophic factor-dependent upregulation of glutamate receptors via the suppression of microRNA-132 expression. Neuroscience 165, 1301-1311 (2010).
-
(2010)
Neuroscience
, vol.165
, pp. 1301-1311
-
-
Kawashima, H.1
-
9
-
-
34249713720
-
MicroRNA modulation of circadian-clock period and entrainment
-
Cheng, H.Y. et al. MicroRNA modulation of circadian-clock period and entrainment. Neuron 54, 813-829 (2007).
-
(2007)
Neuron
, vol.54
, pp. 813-829
-
-
Cheng, H.Y.1
-
10
-
-
71749084011
-
MicroRNA-132 potentiates cholinergic anti-infammatory signaling by targeting acetylcholinesterase
-
Shaked, I. et al. MicroRNA-132 potentiates cholinergic anti-infammatory signaling by targeting acetylcholinesterase. Immunity 31, 965-973 (2009).
-
(2009)
Immunity
, vol.31
, pp. 965-973
-
-
Shaked, I.1
-
11
-
-
33845293447
-
Pubertal mammary gland development: Insights from mouse models
-
Howlin, J., McBryan, J. & Martin, F. Pubertal mammary gland development: Insights from mouse models. J. Mammary Gland Biol. Neoplasia 11, 283-297 (2006).
-
(2006)
J. Mammary Gland Biol. Neoplasia
, vol.11
, pp. 283-297
-
-
Howlin, J.1
McBryan, J.2
Martin, F.3
-
12
-
-
0034523945
-
An atlas of mouse mammary gland development
-
Richert, M.M. et al. An atlas of mouse mammary gland development. J. Mammary Gland Biol. Neoplasia 5, 227-241 (2000).
-
(2000)
J. Mammary Gland Biol. Neoplasia
, vol.5
, pp. 227-241
-
-
Richert, M.M.1
-
13
-
-
0035489712
-
Signaling pathways in mammary gland development
-
Hennighausen, L. & Robinson, G.W. Signaling pathways in mammary gland development. Dev. Cell 1, 467-475 (2001).
-
(2001)
Dev. Cell
, vol.1
, pp. 467-475
-
-
Hennighausen, L.1
Robinson, G.W.2
-
14
-
-
42549142931
-
Mammary development in the embryo and adult: A journey of morphogenesis and commitment
-
Watson, C.J. & Khaled, W.T. Mammary development in the embryo and adult: a journey of morphogenesis and commitment. Development 135, 995-1003 (2008).
-
(2008)
Development
, vol.135
, pp. 995-1003
-
-
Watson, C.J.1
Khaled, W.T.2
-
16
-
-
4944265617
-
Epithelial-stromal interactions in the mouse and human mammary gland in vivo
-
Parmar, H. & Cunha, G.R. Epithelial-stromal interactions in the mouse and human mammary gland in vivo. Endocr. Relat. Cancer 11, 437-458 (2004).
-
(2004)
Endocr. Relat. Cancer
, vol.11
, pp. 437-458
-
-
Parmar, H.1
Cunha, G.R.2
-
17
-
-
0032034497
-
The mammary fat pad
-
Neville, M.C., Medina, D., Monks, J. & Hovey, R.C. The mammary fat pad. J. Mammary Gland Biol. Neoplasia 3, 109-116 (1998).
-
(1998)
J. Mammary Gland Biol. Neoplasia
, vol.3
, pp. 109-116
-
-
Neville, M.C.1
Medina, D.2
Monks, J.3
Hovey, R.C.4
-
18
-
-
0037052448
-
Stromal effects on mammary gland development and breast cancer
-
Wiseman, B.S. & Werb, Z. Stromal effects on mammary gland development and breast cancer. Science 296, 1046-1049 (2002).
-
(2002)
Science
, vol.296
, pp. 1046-1049
-
-
Wiseman, B.S.1
Werb, Z.2
-
19
-
-
77952575949
-
Regulation of the miR-212/132 locus by MSK1 and CREB in response to neurotrophins
-
Remenyi, J. et al. Regulation of the miR-212/132 locus by MSK1 and CREB in response to neurotrophins. Biochem. J. 428, 281-291 (2010).
-
(2010)
Biochem. J.
, vol.428
, pp. 281-291
-
-
Remenyi, J.1
-
20
-
-
38349156656
-
Lumen formation during mammary epithelial morphogenesis: Insights from in vitro and in vivo models
-
Mailleux, A.A., Overholtzer, M. & Brugge, J.S. Lumen formation during mammary epithelial morphogenesis: insights from in vitro and in vivo models. Cell Cycle 7, 57-62 (2008).
-
(2008)
Cell Cycle
, vol.7
, pp. 57-62
-
-
Mailleux, A.A.1
Overholtzer, M.2
Brugge, J.S.3
-
21
-
-
56749087994
-
Hormonal regulation of microRNA expression in periovulatory mouse mural granulosa cells
-
Fiedler, S.D., Carletti, M.Z., Hong, X. & Christenson, L.K. Hormonal regulation of microRNA expression in periovulatory mouse mural granulosa cells. Biol. Reprod. 79, 1030-1037 (2008).
-
(2008)
Biol. Reprod.
, vol.79
, pp. 1030-1037
-
-
Fiedler, S.D.1
Carletti, M.Z.2
Hong, X.3
Christenson, L.K.4
-
22
-
-
0025302390
-
Epithelium-dependent extracellular matrix synthesis in transforming growth factor-beta 1-growth-inhibited mouse mammary gland
-
Silberstein, G.B., Strickland, P., Coleman, S. & Daniel, C.W. Epithelium-dependent extracellular matrix synthesis in transforming growth factor-beta 1-growth-inhibited mouse mammary gland. J. Cell Biol. 110, 2209-2219 (1990).
-
(1990)
J. Cell Biol.
, vol.110
, pp. 2209-2219
-
-
Silberstein, G.B.1
Strickland, P.2
Coleman, S.3
Daniel, C.W.4
-
23
-
-
0030251460
-
The role of TGF-beta in patterning and growth of the mammary ductal tree
-
Daniel, C.W., Robinson, S. & Silberstein, G.B. The role of TGF-beta in patterning and growth of the mammary ductal tree. J. Mammary Gland Biol. Neoplasia 1, 331-341 (1996).
-
(1996)
J. Mammary Gland Biol. Neoplasia
, vol.1
, pp. 331-341
-
-
Daniel, C.W.1
Robinson, S.2
Silberstein, G.B.3
-
24
-
-
0035863007
-
Postnatal mammary gland morphogenesis
-
Silberstein, G.B. Postnatal mammary gland morphogenesis. Microsc. Res. Tech. 52, 155-162 (2001).
-
(2001)
Microsc. Res. Tech.
, vol.52
, pp. 155-162
-
-
Silberstein, G.B.1
-
25
-
-
0141768243
-
Site-specifc inductive and inhibitory activities of MMP-2 and MMP-3 orchestrate mammary gland branching morphogenesis
-
Wiseman, B.S. et al. Site-specifc inductive and inhibitory activities of MMP-2 and MMP-3 orchestrate mammary gland branching morphogenesis. J. Cell Biol. 162, 1123-1133 (2003).
-
(2003)
J. Cell Biol.
, vol.162
, pp. 1123-1133
-
-
Wiseman, B.S.1
-
26
-
-
0025944885
-
Regulated expression and growth inhibitory effects of transforming growth factor-beta isoforms in mouse mammary gland development
-
Robinson, S.D. et al. Regulated expression and growth inhibitory effects of transforming growth factor-beta isoforms in mouse mammary gland development. Development 113, 867-878 (1991).
-
(1991)
Development
, vol.113
, pp. 867-878
-
-
Robinson, S.D.1
-
27
-
-
68549123472
-
New regulatory mechanisms of TGF-beta receptor function
-
Kang, J.S., Liu, C. & Derynck, R. New regulatory mechanisms of TGF-beta receptor function. Trends Cell Biol. 19, 385-394 (2009).
-
(2009)
Trends Cell Biol.
, vol.19
, pp. 385-394
-
-
Kang, J.S.1
Liu, C.2
Derynck, R.3
-
28
-
-
0034650486
-
Cell surface-localized matrix metalloproteinase-9 proteolytically activates TGF-beta and promotes tumor invasion and angiogenesis
-
Yu, Q. & Stamenkovic, I. Cell surface-localized matrix metalloproteinase-9 proteolytically activates TGF-beta and promotes tumor invasion and angiogenesis. Genes Dev. 14, 163-176 (2000).
-
(2000)
Genes Dev.
, vol.14
, pp. 163-176
-
-
Yu, Q.1
Stamenkovic, I.2
-
29
-
-
69449105858
-
Cathepsin G-mediated activation of pro-matrix metalloproteinase 9 at the tumor-bone interface promotes transforming growth factor-beta signaling and bone destruction
-
Wilson, T.J., Nannuru, K.C. & Singh, R.K. Cathepsin G-mediated activation of pro-matrix metalloproteinase 9 at the tumor-bone interface promotes transforming growth factor-beta signaling and bone destruction. Mol. Cancer Res. 7, 1224-1233 (2009).
-
(2009)
Mol. Cancer Res.
, vol.7
, pp. 1224-1233
-
-
Wilson, T.J.1
Nannuru, K.C.2
Singh, R.K.3
-
30
-
-
67349145349
-
Transforming growth factor-beta 1 induces matrix metalloproteinase-9 expression in human meningeal cells via ERK and Smad pathways
-
Okamoto, T. et al. Transforming growth factor-beta 1 induces matrix metalloproteinase-9 expression in human meningeal cells via ERK and Smad pathways. Biochem. Biophys. Res. Commun. 383, 475-479 (2009).
-
(2009)
Biochem. Biophys. Res. Commun.
, vol.383
, pp. 475-479
-
-
Okamoto, T.1
-
31
-
-
44149115681
-
TGF-beta 1 induced MMP-9 expression in HNSCC cell lines via Smad/MLCK pathway
-
Sinpitaksakul, S.N., Pimkhaokham, A., Sanchavanakit, N. & Pavasant, P. TGF-beta 1 induced MMP-9 expression in HNSCC cell lines via Smad/MLCK pathway. Biochem. Biophys. Res. Commun. 371, 713-718 (2008).
-
(2008)
Biochem. Biophys. Res. Commun.
, vol.371
, pp. 713-718
-
-
Sinpitaksakul, S.N.1
Pimkhaokham, A.2
Sanchavanakit, N.3
Pavasant, P.4
-
32
-
-
45149093853
-
MMP-14 mediated MMP-9 expression is involved in TGF-beta 1-induced keratinocyte migration
-
Seomun, Y., Kim, J.T. & Joo, C.K. MMP-14 mediated MMP-9 expression is involved in TGF-beta 1-induced keratinocyte migration. J. Cell. Biochem. 104, 934-941 (2008).
-
(2008)
J. Cell. Biochem.
, vol.104
, pp. 934-941
-
-
Seomun, Y.1
Kim, J.T.2
Joo, C.K.3
-
33
-
-
33748417128
-
Cited2 modulates TGF-beta-mediated upregulation of MMP9
-
Chou, Y.T., Wang, H., Chen, Y., Danielpour, D. & Yang, Y.C. Cited2 modulates TGF-beta-mediated upregulation of MMP9. Oncogene 25, 5547-5560 (2006).
-
(2006)
Oncogene
, vol.25
, pp. 5547-5560
-
-
Chou, Y.T.1
Wang, H.2
Chen, Y.3
Danielpour, D.4
Yang, Y.C.5
-
34
-
-
66049105479
-
TGF-beta1 and TGF-beta2 strongly enhance the secretion of plasminogen activator inhibitor-1 and matrix metalloproteinase-9 of the human prostate cancer cell line PC-3
-
Konrad, L., Scheiber, J.A., Schwarz, L., Schrader, A.J. & Hofmann, R. TGF-beta1 and TGF-beta2 strongly enhance the secretion of plasminogen activator inhibitor-1 and matrix metalloproteinase-9 of the human prostate cancer cell line PC-3. Regul. Pept. 155, 28-32 (2009).
-
(2009)
Regul. Pept.
, vol.155
, pp. 28-32
-
-
Konrad, L.1
Scheiber, J.A.2
Schwarz, L.3
Schrader, A.J.4
Hofmann, R.5
-
35
-
-
33644844822
-
CITED1 homozygous null mice display aberrant pubertal mammary ductal morphogenesis
-
Howlin, J. et al. CITED1 homozygous null mice display aberrant pubertal mammary ductal morphogenesis. Oncogene 25, 1532-1542 (2006).
-
(2006)
Oncogene
, vol.25
, pp. 1532-1542
-
-
Howlin, J.1
-
36
-
-
0032795261
-
Targeted inactivation of the EGF and amphiregulin genes reveals distinct roles for EGF receptor ligands in mouse mammary gland development
-
Luetteke, N.C. et al. Targeted inactivation of the EGF and amphiregulin genes reveals distinct roles for EGF receptor ligands in mouse mammary gland development. Development 126, 2739-2750 (1999).
-
(1999)
Development
, vol.126
, pp. 2739-2750
-
-
Luetteke, N.C.1
-
37
-
-
34248353890
-
Amphiregulin is an essential mediator of estrogen receptor alpha function in mammary gland development
-
Ciarloni, L., Mallepell, S. & Brisken, C. Amphiregulin is an essential mediator of estrogen receptor alpha function in mammary gland development. Proc. Natl. Acad. Sci. USA 104, 5455-5460 (2007).
-
(2007)
Proc. Natl. Acad. Sci. USA
, vol.104
, pp. 5455-5460
-
-
Ciarloni, L.1
Mallepell, S.2
Brisken, C.3
-
38
-
-
0032957973
-
Signaling through the stromal epidermal growth factor receptor is necessary for mammary ductal development
-
Wiesen, J.F., Young, P., Werb, Z. & Cunha, G.R. Signaling through the stromal epidermal growth factor receptor is necessary for mammary ductal development. Development 126, 335-344 (1999).
-
(1999)
Development
, vol.126
, pp. 335-344
-
-
Wiesen, J.F.1
Young, P.2
Werb, Z.3
Cunha, G.R.4
-
39
-
-
0032544076
-
Transcriptional activating activity of Smad4: Roles of SMAD hetero-oligomerization and enhancement by an associating transactivator
-
Shioda, T. et al. Transcriptional activating activity of Smad4: roles of SMAD hetero-oligomerization and enhancement by an associating transactivator. Proc. Natl. Acad. Sci. USA 95, 9785-9790 (1998).
-
(1998)
Proc. Natl. Acad. Sci. USA
, vol.95
, pp. 9785-9790
-
-
Shioda, T.1
-
40
-
-
42649087404
-
Terminal end bud maintenance in mammary gland is dependent upon FGFR2b signaling
-
Parsa, S. et al. Terminal end bud maintenance in mammary gland is dependent upon FGFR2b signaling. Dev. Biol. 317, 121-131 (2008).
-
(2008)
Dev. Biol.
, vol.317
, pp. 121-131
-
-
Parsa, S.1
-
41
-
-
49049096654
-
Genetic mosaic analysis reveals FGF receptor 2 function in terminal end buds during mammary gland branching morphogenesis
-
Lu, P., Ewald, A.J., Martin, G.R. & Werb, Z. Genetic mosaic analysis reveals FGF receptor 2 function in terminal end buds during mammary gland branching morphogenesis. Dev. Biol. 321, 77-87 (2008).
-
(2008)
Dev. Biol.
, vol.321
, pp. 77-87
-
-
Lu, P.1
Ewald, A.J.2
Martin, G.R.3
Werb, Z.4
-
42
-
-
36549025433
-
Wnt5a is required for proper mammary gland development and TGF-β-mediated inhibition of ductal outgrowth
-
Roarty, K. & Serra, R. Wnt5a is required for proper mammary gland development and TGF-β-mediated inhibition of ductal outgrowth. Development 134, 3929-3939 (2007).
-
(2007)
Development
, vol.134
, pp. 3929-3939
-
-
Roarty, K.1
Serra, R.2
-
43
-
-
37249031072
-
A role for microRNAs in maintenance of mouse mammary epithelial progenitor cells
-
Ibarra, I., Erlich, Y., Muthuswamy, S.K., Sachidanandam, R. & Hannon, G.J. A role for microRNAs in maintenance of mouse mammary epithelial progenitor cells. Genes Dev. 21, 3238-3243 (2007).
-
(2007)
Genes Dev.
, vol.21
, pp. 3238-3243
-
-
Ibarra, I.1
Erlich, Y.2
Muthuswamy, S.K.3
Sachidanandam, R.4
Hannon, G.J.5
-
44
-
-
55849123946
-
MicroRNA-155 is regulated by the transforming growth factor beta/ Smad pathway and contributes to epithelial cell plasticity by targeting RhoA
-
Kong, W. et al. MicroRNA-155 is regulated by the transforming growth factor beta/ Smad pathway and contributes to epithelial cell plasticity by targeting RhoA. Mol. Cell. Biol. 28, 6773-6784 (2008).
-
(2008)
Mol. Cell. Biol.
, vol.28
, pp. 6773-6784
-
-
Kong, W.1
-
45
-
-
60549083968
-
A microRNA, miR-101a, controls mammary gland development by regulating cyclooxygenase-2 expression
-
Tanaka, T., Haneda, S., Imakawa, K., Sakai, S. & Nagaoka, K. A microRNA, miR-101a, controls mammary gland development by regulating cyclooxygenase-2 expression. Differentiation 77, 181-187 (2009).
-
(2009)
Differentiation
, vol.77
, pp. 181-187
-
-
Tanaka, T.1
Haneda, S.2
Imakawa, K.3
Sakai, S.4
Nagaoka, K.5
-
46
-
-
0002115469
-
-
(eds. Ip M.M. and Asch B.B.) Kluwer Academic/Plenum, New York
-
Rasmussen, S.B., Young, L.J.T. & Smith, G.H. in Methods in Mammary Gland Biology and Breast Cancer Research. (eds. Ip, M.M. and Asch, B.B.) 75-86 (Kluwer Academic/Plenum, New York, 2000).
-
(2000)
Methods in Mammary Gland Biology and Breast Cancer Research
, pp. 75-86
-
-
Rasmussen, S.B.1
Young, L.J.T.2
Smith, G.H.3
-
47
-
-
0002033110
-
-
(eds. Ip, M.M. and Asch, B.B.) Kluwer Academic/Plenum, New York
-
Young, L.J.T. in Methods in Mammary Gland Biology and Breast Cancer Research (eds. Ip, M.M. and Asch, B.B.) 67-74 (Kluwer Academic/Plenum, New York, 2000).
-
(2000)
Methods in Mammary Gland Biology and Breast Cancer Research
, pp. 67-74
-
-
Young, L.J.T.1
-
48
-
-
33745402792
-
Hormonal stimulation increases the recruitment of bone marrow-derived myoepithelial cells and periductal fbroblasts into the mammary gland
-
Sangai, T. et al. Hormonal stimulation increases the recruitment of bone marrow-derived myoepithelial cells and periductal fbroblasts into the mammary gland. Biochem. Biophys. Res. Commun. 346, 1173-1180 (2006).
-
(2006)
Biochem. Biophys. Res. Commun.
, vol.346
, pp. 1173-1180
-
-
Sangai, T.1
|