Connective Tissue Growth Factor Is Required for Skeletal Development and Postnatal Skeletal Homeostasis in Male Mice

Author:

Canalis Ernesto1,Zanotti Stefano2,Beamer Wesley G.3,Economides Aris N.4,Smerdel-Ramoya Anna2

Affiliation:

1. The University of Connecticut School of Medicine (E.C.), Farmington, Connecticut 06030

2. Department of Research (E.C., S.Z., A.S.-R.), Saint Francis Hospital and Medical Center, Hartford, Connecticut 06105

3. The Jackson Laboratory (W.G.B.), Bar Harbor, Maine 04609

4. Genome Engineering Technologies (A.N.E.), Regeneron Pharmaceuticals, Tarrytown, New York 10591

Abstract

Connective tissue growth factor (CTGF), a member of the cysteine-rich 61 (Cyr 61), CTGF, nephroblastoma overexpressed (NOV) (CCN) family of proteins, is synthesized by osteoblasts, and its overexpression inhibits osteoblastogenesis and causes osteopenia. The global inactivation of Ctgf leads to defective endochondral bone formation and perinatal lethality; therefore, the consequences of Ctgf inactivation on the postnatal skeleton are not known. To study the function of CTGF, we generated Ctgf+/LacZ heterozygous null mice and tissue-specific null Ctgf mice by mating Ctgf conditional mice, where Ctgf is flanked by lox sequences with mice expressing the Cre recombinase under the control of the paired-related homeobox gene 1 (Prx1) enhancer (Prx1-Cre) or the osteocalcin promoter (Oc-Cre). Ctgf+/LacZ heterozygous mice exhibited transient osteopenia at 1 month of age secondary to decreased trabecular number. A similar osteopenic phenotype was observed in 1-month-old Ctgf conditional null male mice generated with Prx1-Cre, suggesting that the decreased trabecular number was secondary to impaired endochondral bone formation. In contrast, when the conditional deletion of Ctgf was achieved by Oc-Cre, an osteopenic phenotype was observed only in 6-month-old male mice. Osteoblast and osteoclast number, bone formation, and eroded surface were not affected in Ctgf heterozygous or conditional null mice. In conclusion, CTGF is necessary for normal skeletal development but to a lesser extent for postnatal skeletal homeostasis.

Publisher

The Endocrine Society

Subject

Endocrinology

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