[1] |
Branda, C.S., Dymecki, S.M. Talking about a revolution: The impact of site-specific recombinases on genetic analyse in mice Dev. Cell, 6 (2004),pp. 7-28
|
[2] |
Cheng, X., Chen, H.X., Yang, X. et al. Study on improvement efficiency of producing transgenic mouse Acta Laboratorium Animals Scientia Sinica, 9 (2001),pp. 160-163
|
[3] |
Cheng, X., Weng, T.J., Tan, X.H. et al. Establishment of osteoblast-specific Cre transgenic mice Hereditas (Beijing), 29 (2007),pp. 1237-1242
|
[4] |
Dubravko, P.I., Alexander, C., Lichtler, Antonio, B. Differential utilization of regulatory domains within the 1(I) Collagen promoter in osseous and fibroblastic cells J. Cell Biol., 6 (1992),pp. 227-236
|
[5] |
Ehrlich, P.J., Lanyon, L.E., Machanical Strain and bone cell function Osteoporos, 3 (2002),pp. 688-700
|
[6] |
Fukunag, T.T., Yamashiro, S., Oya, N. et al. Connective tissue growth factor mRNA expression pattern in cartilages is associated with their type I collagen expression Bone, 33 (2003),pp. 911-918
|
[7] |
Karsenty, G., Wagner, E.F. Reaching a genetic and molecular understanding of skeletal development Dev. Cell, 2 (2002),pp. 389-406
|
[8] |
Lee, N.K., Sowa, H., Hinoi, E. et al. Endocrine regulation of energy metabolism by the skeleton Cell, 130 (2007),pp. 456-469
|
[9] |
Lengner, C.J., Steinman, H.A., Gagnon, J. et al. Osteoblast differentiation and skeletal development are regulated by Mdm2–p53 signaling J. Cell Biol., 172 (2006),pp. 909-921
|
[10] |
Li, W.L., Cheng, X., Tan, X.H. et al. Endothelial cell-specific expression of Cre recombinase in transgenic mice Acta Genetica Sinica, 32 (2005),pp. 909-915
|
[11] |
Liu, F., Wang, H.N., Woitge, Alen, B. et al. Expression and activity of osteoblast-targeted Cre recombinase transgenes in murine skeletal tissues Dev. Biol., 48 (2004),pp. 645-653
|
[12] |
Mao, C.M., Yang, X., Cheng, X. et al. Establishment of keratinocyte-specific Cre recombinase transgenic mice Acta Genetica Sinica, 30 (2004),pp. 407-413
|
[13] |
Ramirez, F., Liberto, M.D. Complex and diversified regulatory programs control the expression of vertebrate collagen genes Faseb. J., 4 (1990),pp. 1616-1623
|
[14] |
Robert, A., Kesterson, Louise, S., Francesco, D.M. et al. The human osteocalcin promoter directs bone-specific Vitamin D regulatable gene expression in transgenic mice Mol. Endocrinol., 7 (1993),pp. 463-467
|
[15] |
Romain, D., Michael, S., Thorsten, S. et al. Mouse a1-collage promoter is the best known promoter to drive efficient Cre recombinase expression in osteoblast Dev. Dynam., 224 (2002),pp. 245-251
|
[16] |
Rossant, J., Mcmhon, A. “Cre”-ating mouse mutants—a meeting review on conditional mouse genetics Genes. Dev., 13 (1999),pp. 142-145
|
[17] |
Soriano, P. Generalized lacZ expression with the ROSA26 Cre reporter strain Nat. Genet., 21 (1999),pp. 70-71
|
[18] |
Tan, X.H., Weng, T.J., Zhang, J.S. et al. Smad4 is required for maintaing normal murine postnatal bone homeostasis J. Cell Sci., 120 (2007),pp. 2162-2170
|
[19] |
Teng, Y., Yang, X. Gene targeting: The beginning of a new era in genetics Hereditas (Beijing), 29 (2007),pp. 1291-1298
|
[20] |
Wang, Y.L., Cheng, X., Cui, F. et al. A transgenic mouse that targets the expression of Cre recombinase in hepatocyte Chin. J. Hepatol., 12 (2004),pp. 163-166
|
[21] |
Yang, X., Li, C., Herrera, P.L. et al. Generation of Smad4/Dpc4 conditional knockout mice Genesis, 32 (2002),pp. 80-81
|
[22] |
Yang, G., Cui, F., Hou, N. et al. Transgenic mice that express Cre recombinase in hypertrophic chondrocytes Genesis, 42 (2005),pp. 33-36
|
[23] |
Zhang, M., Xuan, S.H., Mary, L. et al. Osteoblast-specific knockout of the insulin-like growth factor(IGF) receptor gene reveals an essential role of IGF signaling in bone matrix mineralization J. Biol. Chem., 277 (2002),pp. 44005-44044
|