This gene belongs to the homeobox family of genes. The homeobox genes encode a highly conserved family of transcription factors that play an important role in morphogenesis in all multicellular organisms. Mammals possess four similar homeobox gene clusters, HOXA, HOXB, HOXC and HOXD, which are located on different chromosomes and consist of 9 to 11 genes arranged in tandem. This gene is one of several homeobox HOXC genes located in a cluster on chromosome 12. The product of this gene may play a role in the regulation of cartilage differentiation. It could also be involved in chondrodysplasias or other cartilage disorders.[3] HOXC8 was found to have activity in promoting nerve growth and its expression is dysregulated in patients suffering from neurofibromatosis type 1.[4]
↑Bai S, Shi X, Yang X, Cao X (March 2000). "Smad6 as a transcriptional corepressor". J. Biol. Chem. 275 (12): 8267–70. doi:10.1074/jbc.275.12.8267. PMID10722652.
↑Shi X, Yang X, Chen D, Chang Z, Cao X (May 1999). "Smad1 interacts with homeobox DNA-binding proteins in bone morphogenetic protein signaling". J. Biol. Chem. 274 (19): 13711–7. doi:10.1074/jbc.274.19.13711. PMID10224145.
Boncinelli E, Acampora D, Pannese M, D'Esposito M, Somma R, Gaudino G, Stornaiuolo A, Cafiero M, Faiella A, Simeone A (1989). "Organization of human class I homeobox genes". Genome. 31 (2): 745–56. doi:10.1139/g89-133. PMID2576652.
Lawrence HJ, Stage KM, Mathews CH, Detmer K, Scibienski R, MacKenzie M, Migliaccio E, Boncinelli E, Largman C (1993). "Expression of HOX C homeobox genes in lymphoid cells". Cell Growth Differ. 4 (8): 665–9. PMID8104467.
Apiou F, Flagiello D, Cillo C, Malfoy B, Poupon MF, Dutrillaux B (1996). "Fine mapping of human HOX gene clusters". Cytogenet. Cell Genet. 73 (1–2): 114–5. doi:10.1159/000134320. PMID8646877.
Flagiello D, Gibaud A, Dutrillaux B, Poupon MF, Malfoy B (1997). "Distinct patterns of all-trans retinoic acid dependent expression of HOXB and HOXC homeogenes in human embryonal and small-cell lung carcinoma cell lines". FEBS Lett. 415 (3): 263–7. doi:10.1016/S0014-5793(97)01118-6. PMID9357979.
Shi X, Yang X, Chen D, Chang Z, Cao X (1999). "Smad1 interacts with homeobox DNA-binding proteins in bone morphogenetic protein signaling". J. Biol. Chem. 274 (19): 13711–7. doi:10.1074/jbc.274.19.13711. PMID10224145.
Prévôt D, Voeltzel T, Birot AM, Morel AP, Rostan MC, Magaud JP, Corbo L (2000). "The leukemia-associated protein Btg1 and the p53-regulated protein Btg2 interact with the homeoprotein Hoxb9 and enhance its transcriptional activation". J. Biol. Chem. 275 (1): 147–53. doi:10.1074/jbc.275.1.147. PMID10617598.
Bai S, Shi X, Yang X, Cao X (2000). "Smad6 as a transcriptional corepressor". J. Biol. Chem. 275 (12): 8267–70. doi:10.1074/jbc.275.12.8267. PMID10722652.
Wan M, Shi X, Feng X, Cao X (2001). "Transcriptional mechanisms of bone morphogenetic protein-induced osteoprotegrin gene expression". J. Biol. Chem. 276 (13): 10119–25. doi:10.1074/jbc.M006918200. PMID11139569.
Schaefer LK, Wang S, Schaefer TS (2001). "Functional interaction of Jun and homeodomain proteins". J. Biol. Chem. 276 (46): 43074–82. doi:10.1074/jbc.M102552200. PMID11551904.
Waltregny D, Alami Y, Clausse N, de Leval J, Castronovo V (2002). "Overexpression of the homeobox gene HOXC8 in human prostate cancer correlates with loss of tumor differentiation". Prostate. 50 (3): 162–9. doi:10.1002/pros.10045. PMID11813208.
Kosaki K, Kosaki R, Suzuki T, Yoshihashi H, Takahashi T, Sasaki K, Tomita M, McGinnis W, Matsuo N (2002). "Complete mutation analysis panel of the 39 human HOX genes". Teratology. 65 (2): 50–62. doi:10.1002/tera.10009. PMID11857506.
Luo L, Yang X, Takihara Y, Knoetgen H, Kessel M (2004). "The cell-cycle regulator geminin inhibits Hox function through direct and polycomb-mediated interactions". Nature. 427 (6976): 749–53. doi:10.1038/nature02305. PMID14973489.