The osteoclast is a giant multinucleated cell responsible for the resorption of bone matrix. This bone resorptive process is an essential step in the sequential process of bone growth and remodeling as well as in some disease processes. Stimulation of osteoclasts to resorb bone and inhibit osteoblasts from making bone probably involves the expression of an array of genes. The purpose of these studies is to characterize the regulation of a bone resorption-related gene using the human osteoclastoma tumor system. A clone representing a novel resorption-related gene was obtained from an osteoclastoma cDNA library by differential screening using probes generated from either the gaint cell tumor cells or cultured stromal cells from the same tumor. The nucleotide sequence for the partial 800bp cDNA fragment was determined. To obtain a full length cDNA clone this partial cDNA fragment was used as a probe for screening a second human osteoclastoma cDNA library. The new cDNA library was screened by plaque hybridization as well as by PCR-baaed high stringency screening method. Positive clones for the novel gene have been identified from the second cDNA library. The nucleotide sequence of these clones will determine whether they contain the full length cDNA. A full length cDNA clone will be used for protein production. Isolation and characterization of the promoter for this novel gene will allow for analysis of the regulation of this resorption-related gene particularly in osteoblast-osteoclast signaling. This approach will elucidate mechanisms of osteoblast and osteoclast function related to the resorption process.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Unknown (K16)
Project #
2K16DE000275-06
Application #
5210061
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
6
Fiscal Year
1996
Total Cost
Indirect Cost
McDermott, Nancy E; Chuang, Sung-Kiang; Woo, Valerie V et al. (2006) Maxillary sinus augmentation as a risk factor for implant failure. Int J Oral Maxillofac Implants 21:366-74
Chuang, S-K; Hatch, J P; Rugh, J et al. (2005) Multi-center randomized clinical trials in oral and maxillofacial surgery: modeling of fixed and random effects. Int J Oral Maxillofac Surg 34:341-4
Treister, Nathaniel S; Woo, Sook-Bin; O'Holleran, Eileen W et al. (2005) Oral chronic graft-versus-host disease in pediatric patients after hematopoietic stem cell transplantation. Biol Blood Marrow Transplant 11:721-31
Chuang, S K; Cai, T; Douglass, C W et al. (2005) Frailty approach for the analysis of clustered failure time observations in dental research. J Dent Res 84:54-8
Woo, Valerie V; Chuang, Sung-Kiang; Daher, Shadi et al. (2004) Dentoalveolar reconstructive procedures as a risk factor for implant failure. J Oral Maxillofac Surg 62:773-80
Halpern, Leslie R; Carter, Jeffrey B; Chuang, Sung-Kiang et al. (2003) A comparison of 2 consultation and treatment strategies to manage impacted third molars. J Oral Maxillofac Surg 61:779-84
Basile, John R; Eichten, Alexandra; Zacny, Valerie et al. (2003) NF-kappaB-mediated induction of p21(Cip1/Waf1) by tumor necrosis factor alpha induces growth arrest and cytoprotection in normal human keratinocytes. Mol Cancer Res 1:262-70
McDermott, Nancy E; Chuang, Sung-Kiang; Woo, Valerie V et al. (2003) Complications of dental implants: identification, frequency, and associated risk factors. Int J Oral Maxillofac Implants 18:848-55
Chuang, S K; Tian, L; Wei, L J et al. (2002) Predicting dental implant survival by use of the marginal approach of the semi-parametric survival methods for clustered observations. J Dent Res 81:851-5
Chuang, S K; Wei, L J; Douglass, C W et al. (2002) Risk factors for dental implant failure: a strategy for the analysis of clustered failure-time observations. J Dent Res 81:572-7

Showing the most recent 10 out of 32 publications