Three alternatively spliced transcript variants for this gene have been described, however, the full-length nature of one variant has not been determined.[1]
TRIM33 acts as a tumor suppressor gene preventing the development chronic myelomonocytic leukemia.[5]
TRIM33 regulates also the TGF-β1 receptor and promotes physiological aging of hematopoietic stem cells.
[6]
TRIM33 acts as an oncogene by preventing apoptosis in B-cell leukemias.[7]
↑Venturini L, You J, Stadler M, Galien R, Lallemand V, Koken MH, Mattei MG, Ganser A, Chambon P, Losson R, de Thé H (February 1999). "TIF1gamma, a novel member of the transcriptional intermediary factor 1 family". Oncogene. 18 (5): 1209–17. doi:10.1038/sj.onc.1202655. PMID10022127.
↑Peng H, Feldman I, Rauscher FJ (July 2002). "Hetero-oligomerization among the TIF family of RBCC/TRIM domain-containing nuclear cofactors: a potential mechanism for regulating the switch between coactivation and corepression". Journal of Molecular Biology. 320 (3): 629–44. doi:10.1016/S0022-2836(02)00477-1. PMID12096914.
Venturini L, You J, Stadler M, Galien R, Lallemand V, Koken MH, Mattei MG, Ganser A, Chambon P, Losson R, de Thé H (February 1999). "TIF1gamma, a novel member of the transcriptional intermediary factor 1 family". Oncogene. 18 (5): 1209–17. doi:10.1038/sj.onc.1202655. PMID10022127.
Klugbauer S, Rabes HM (July 1999). "The transcription coactivator HTIF1 and a related protein are fused to the RET receptor tyrosine kinase in childhood papillary thyroid carcinomas". Oncogene. 18 (30): 4388–93. doi:10.1038/sj.onc.1202824. PMID10439047.
Kikuno R, Nagase T, Ishikawa K, Hirosawa M, Miyajima N, Tanaka A, Kotani H, Nomura N, Ohara O (June 1999). "Prediction of the coding sequences of unidentified human genes. XIV. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro". DNA Research. 6 (3): 197–205. doi:10.1093/dnares/6.3.197. PMID10470851.
Peng H, Feldman I, Rauscher FJ (July 2002). "Hetero-oligomerization among the TIF family of RBCC/TRIM domain-containing nuclear cofactors: a potential mechanism for regulating the switch between coactivation and corepression". Journal of Molecular Biology. 320 (3): 629–44. doi:10.1016/S0022-2836(02)00477-1. PMID12096914.
Yoon HG, Chan DW, Reynolds AB, Qin J, Wong J (September 2003). "N-CoR mediates DNA methylation-dependent repression through a methyl CpG binding protein Kaiso". Molecular Cell. 12 (3): 723–34. doi:10.1016/j.molcel.2003.08.008. PMID14527417.
Brandenberger R, Wei H, Zhang S, Lei S, Murage J, Fisk GJ, Li Y, Xu C, Fang R, Guegler K, Rao MS, Mandalam R, Lebkowski J, Stanton LW (June 2004). "Transcriptome characterization elucidates signaling networks that control human ES cell growth and differentiation". Nature Biotechnology. 22 (6): 707–16. doi:10.1038/nbt971. PMID15146197.
Dupont S, Zacchigna L, Cordenonsi M, Soligo S, Adorno M, Rugge M, Piccolo S (April 2005). "Germ-layer specification and control of cell growth by Ectodermin, a Smad4 ubiquitin ligase". Cell. 121 (1): 87–99. doi:10.1016/j.cell.2005.01.033. PMID15820681.
He W, Dorn DC, Erdjument-Bromage H, Tempst P, Moore MA, Massagué J (June 2006). "Hematopoiesis controlled by distinct TIF1gamma and Smad4 branches of the TGFbeta pathway". Cell. 125 (5): 929–41. doi:10.1016/j.cell.2006.03.045. PMID16751102.