TY - JOUR
T1 - BAC constructs in transgenic reporter mouse lines control efficient and specific LacZ expression in hypertrophic chondrocytes under the complete Col10a1 promoter
AU - Gebhard, Sonja
AU - Hattori, Takako
AU - Bauer, Eva
AU - Bösl, Michael R.
AU - Schlund, Britta
AU - Pöschl, Ernst
AU - Adam, Nadia
AU - De Crombrugghe, Benoit
AU - Von Der Mark, Klaus
N1 - Funding Information:
Acknowledgments We wish to express our sincere thanks to Drs. N.A. Copeland and E. Chiang Lee, NCI, Fredericks, MD, for providing the E. coli strain EL250 and the piGCN21 vector, and to Drs. Hsin-Fang Yang-Yen, IMB, Academia Sinica, Taipei and R.Behringer, MD Anderson Cancer Center, Houston for their valuable advice in BAC recombination methods. We gratefully acknowledge the generous support of Dr. Reinhard Fässler, Max-Planck-Institute of Biochemistry, Martinsried, Germany, of the mouse work done at the Max-Planck Institute of Biochemistry and to valuable advice by T. Samson, Department of Experimental Medicine I, Erlangen. The work was Wnancially supported by a grant from the Deutsche Forschungsgemeinschaft to K.v.d.M. (MA534-18) and by a NIH grant 1P01 AR42919 to B.deC..
PY - 2007/2
Y1 - 2007/2
N2 - During endochondral ossification hypertrophic chondrocytes in the growth plate of fetal long bones, ribs and vertebrae play a key role in preparing growth plate cartilage for replacement by bone. In order to establish a reporter gene mouse to facilitate functional analysis of genes expressed in hypertrophic chondrocytes in this process, Col10a1- BAC reporter gene mouse lines were established expressing LacZ specifically in hypertrophic cartilage under the control of the complete Col10a1 gene. For this purpose, a bacterial artificial chromosome (BAC RP23-192A7) containing the entire murine Col10a1 gene together with 200 kb flanking sequences was modified by inserting a LacZ-Neo cassette into the second exon of Col10a1 by homologous recombination in E. coli. Transgenic mice containing between one and seven transgene copies were generated by injection of the purified BAC-Col10a1- lLacZ DNA. X-gal staining of newborns and embryos revealed strong and robust LacZ activity exclusively in hypertrophic cartilage of the fetal and neonatal skeleton of the transgenic offspring. This indicates that expression of the reporter gene in its proper genomic context in the BAC Col10a1 environment is independent of the integration site and reflects authentic Col10a1 expression in vivo. The Col10a1 specific BAC recombination vector described here will enable the specific analysis of effector gene functions in hypertrophic cartilage during skeletal development, endochondral ossification, and fracture callus healing.
AB - During endochondral ossification hypertrophic chondrocytes in the growth plate of fetal long bones, ribs and vertebrae play a key role in preparing growth plate cartilage for replacement by bone. In order to establish a reporter gene mouse to facilitate functional analysis of genes expressed in hypertrophic chondrocytes in this process, Col10a1- BAC reporter gene mouse lines were established expressing LacZ specifically in hypertrophic cartilage under the control of the complete Col10a1 gene. For this purpose, a bacterial artificial chromosome (BAC RP23-192A7) containing the entire murine Col10a1 gene together with 200 kb flanking sequences was modified by inserting a LacZ-Neo cassette into the second exon of Col10a1 by homologous recombination in E. coli. Transgenic mice containing between one and seven transgene copies were generated by injection of the purified BAC-Col10a1- lLacZ DNA. X-gal staining of newborns and embryos revealed strong and robust LacZ activity exclusively in hypertrophic cartilage of the fetal and neonatal skeleton of the transgenic offspring. This indicates that expression of the reporter gene in its proper genomic context in the BAC Col10a1 environment is independent of the integration site and reflects authentic Col10a1 expression in vivo. The Col10a1 specific BAC recombination vector described here will enable the specific analysis of effector gene functions in hypertrophic cartilage during skeletal development, endochondral ossification, and fracture callus healing.
KW - BAC
KW - Collagen X
KW - Homologous recombination
KW - Hypertrophic cartilage
KW - Transgenic mouse
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U2 - 10.1007/s00418-006-0236-8
DO - 10.1007/s00418-006-0236-8
M3 - Article
C2 - 17051351
AN - SCOPUS:33846413247
SN - 0948-6143
VL - 127
SP - 183
EP - 194
JO - Histochemistry and Cell Biology
JF - Histochemistry and Cell Biology
IS - 2
ER -