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BRPF2, a novel transcript of BRPF1 and their expression in mice tissues

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  • 1. College of Life Science and Bio-pharmaceutics, Guangdong Pharmaceutical University, Guangzhou 510006, China; 2. National Engineering Research Center of Genetic Medicine, Jinan University, Guangzhou 510632, China

Received date: 2012-03-30

  Revised date: 2012-05-24

  Online published: 2013-01-25

Abstract

In order to identify a novel transcript of BRPF1 (BRPF2), a clone separated from mouse cDNA library was sequenced and submitted to GenBank. The expressions of BRPF1 and BRPF2 in different mice tissues were detected using RT-PCR and Northern blotting assays. The preliminary protein functions and conservative domains were analyzed by bioinformatic methods. The results indicated that BRPF2 was a novel transcript of BRPF1. Both BRPF1 and BRPF2 transcripts could be detected in most mice tissues, including liver, embryo, epididymis, testis, ovary and muscle. However, only BRPF2 transcript could be detected in the spleen. BRPF1 mRNA encoded 1 246 aa and the predicted molecular mass was 140 kDa, while BRPF2 encoded 442 aa, partly owing to the absence of a new stop codon. The results of CDD analysis suggested that BRPF2 lost the bromodomain and the PWWP domain compared to BRPF1. Because the bromodomain and the PWWP domain are the critical structures of BRPF1 to interact with histones and recruit the other transcriptional factors, BRPF2 (without these two critical domains) may serve as a negative regulatory factor of BRPF1 and be involved in the chromosome remodeling and transcriptional regulating.

Cite this article

GUO Fen LIN Pi-Rong LI Yue-Qin SU Xian-Li WANG Ding-Ding ZHOU Tian-Hong . BRPF2, a novel transcript of BRPF1 and their expression in mice tissues[J]. Hereditas(Beijing), 2013 , 35(1) : 79 -84 . DOI: 10.3724/SP.J.1005.2013.00079

References

[1] Laue K, Daujat S, Crump JG, Plaster N, Roehl H, Kimmel CB, Schneider R, Hammerschmidt M. The multidomain protein Brpf1 binds histones and is required for Hox gene expression and segmental identity. Development, 2008, 135(11): 1935-1946.
[2] Thompson KA, Wang BC, Argraves WS, Giancotti FG, Ruoslahti E, Schranck DP. BR140, a novel zinc-finger protein with homology to the TAF250 subunit of TFIID. Biochem Biophys Res Commun, 1994, 198(3): 1143-1152.
[3] Ullah M, Pelletier N, Xiao L, Zhao SP, Wang KN, De-gerny C, Tahmasebi S, Cayrou C, Doyon Y, Goh SL, Champagne N, Côté J, Yang XJ. Molecular architecture of quartet MOZ/MORF histone acetyltransferase complexes. Mol Cell Biol, 2008, 28(22): 6828-6843.
[4] Guo F, Huang XF, Li SQ, Sun LM, Li YQ, Li HJ, Zhou Y, Chu YH, Zhou TH. Identification of prosaposin as a novel interaction partner for Rhox5. J Genet Genomics, 2007, 34(5): 392-399.
[5] Jeanmougin F, Wurtz JM, Le Douarin B, Chambon P, Losson R. The bromodomain revisited. Trends Bio-chem Sci, 1997, 22(5): 151-153.
[6] Haynes SR, Dollard C, Winston F, Beck S, Trowsdale J, Dawid IB. The bromodomain: a conserved sequence found in human, Drosophila and yeast proteins. Nucleic Acids Res, 1992, 20(10): 2603.
[7] Zeng L, Zhou MM. Bromodomain: an acetyl-lysine bind-ing domain. FEBS Lett, 2002, 513(1): 124-128.
[8] Kasten M, Szerlong H, Erdjument-Bromage H, Tempst P, Werner M, Cairns BR. Tandem bromodomains in the chromatin remodeler RSC recognize acetylated histone H3 Lys14. EMBO J, 2004, 23(6): 1348-1359.
[9] Hibiya K, Katsumoto T, Kondo T, Kitabayashi I, Kudo A. Brpf1, a subunit of the MOZ histone acetyl transferase complex, maintains expression of anterior and posterior Hox genes for proper patterning of craniofacial and caudal skeletons. Dev Biol, 2009, 329(2): 176-190.
[10] Wu H, Zeng H, Lam R, Tempel W, Amaya MF, Xu C, Dombrovski L, Qiu W, Wang YM, Min JR. Structural and histone binding ability characterizations of human PWWP domains. PLoS One, 2011, 6(6): e18919.
[11] Huang B, Yang XD, Zhou MM, Ozato K, Chen LF. Brd4 coactivates transcriptional activation of NF-κB via spe-cific binding to acetylated RelA. Mol Cell Biol, 2009, 29(5): 1375-1387.
[12] Schultz DC, Friedman JR, Rauscher FJ III. Targeting his-tone deacetylase complexes via KRAB-zinc finger pro-teins: the PHD and bromodomains of KAP-1 form a coop-erative unit that recruits a novel isoform of the Mi-2alpha subunit of NuRD. Genes Dev, 2001, 15(4): 428-443.
[13] Tie F, Prasad-Sinha J, Birve A, Rasmuson-Lestander Å, Harte PJ. A 1-megadalton ESC/E(Z) complex from Dro-sophila that contains polycomblike and RPD3. Mol Cell Biol, 2003, 23(9): 3352-3362.
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