Mammalian genomes encode several proteins, which have domains that can bind to DNA containing 5- methylcytosines at CpG dinucleotides (methyI-CpG binding domains or MBDs; present for example in the proteins MeCP2, MBD1, MBD2, MBD3, and MBD4). Two of these proteins, MBD2 and MBD3, are closely related and MBD2 is a known transcriptional repressor. Recently, we have identified and cloned two new homologues of MBD2 and MBD3, which we have named MBD3L1 and MBD3L2 (for """"""""MBD3-1ike 1 and 2""""""""). Both MBD3L1 and MBD3L2 lack the MBD domains. MBD3L1 has so far been characterized as a testisspecific transcriptional repressor. In this application, we propose to analyze these new MBD3-1ike proteins in detail. Our hypothesis is that MBD3L1 and MBD3L2 are transcriptional regulators that function in conjunction with MBD2 and/or MBD3 to modulate gene activity. We propose four Specific Aims: 1) to characterize the transcriptional repression functions of MBD3L1 and MBD3L2 and its dependence on CpG methylation, 2) to identify and characterize the in vivo binding partners of MBD3L1 and MBD3L2 (preliminary data suggest that these proteins can form heterodimers with MBD2 and MBD3), 3) to determine if MBD3L1 and MBD3L2 are components of a larger complex in vivo (e.g., the Mi-2/NuRD complex), and 4) to derive knockout mice for Mbd311 and Mbd312. We will test the hypothesis that Mbd311 knockout mice will have a male sterility phenotype. Since both proteins are likely functioning as transcriptional regulators, it will be important to determine if there are changes in gene expression patterns in Mbd311 and Mbd312 (-/-) cells.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA104967-05
Application #
7363664
Study Section
Special Emphasis Panel (ZRG1-PTHB (05))
Program Officer
Okano, Paul
Project Start
2004-03-01
Project End
2009-02-28
Budget Start
2008-03-01
Budget End
2009-02-28
Support Year
5
Fiscal Year
2008
Total Cost
$300,895
Indirect Cost
Name
City of Hope/Beckman Research Institute
Department
Type
DUNS #
027176833
City
Duarte
State
CA
Country
United States
Zip Code
91010
Rauch, Tibor A; Pfeifer, Gerd P (2009) The MIRA method for DNA methylation analysis. Methods Mol Biol 507:65-75
Jin, Seung-Gi; Tsark, Walter; Szabo, Piroska E et al. (2008) Haploid male germ cell- and oocyte-specific Mbd3l1 and Mbd3l2 genes are dispensable for early development, fertility, and zygotic DNA demethylation in the mouse. Dev Dyn 237:3435-43
Rauch, Tibor A; Zhong, Xueyan; Wu, Xiwei et al. (2008) High-resolution mapping of DNA hypermethylation and hypomethylation in lung cancer. Proc Natl Acad Sci U S A 105:252-7
Jin, Seung-Gi; Guo, Cai; Pfeifer, Gerd P (2008) GADD45A does not promote DNA demethylation. PLoS Genet 4:e1000013
Rauch, Tibor; Wang, Zunde; Zhang, Xinmin et al. (2007) Homeobox gene methylation in lung cancer studied by genome-wide analysis with a microarray-based methylated CpG island recovery assay. Proc Natl Acad Sci U S A 104:5527-32
Rauch, Tibor; Li, Hongwei; Wu, Xiwei et al. (2006) MIRA-assisted microarray analysis, a new technology for the determination of DNA methylation patterns, identifies frequent methylation of homeodomain-containing genes in lung cancer cells. Cancer Res 66:7939-47
Li, Hongwei; Rauch, Tibor; Chen, Zhao-Xia et al. (2006) The histone methyltransferase SETDB1 and the DNA methyltransferase DNMT3A interact directly and localize to promoters silenced in cancer cells. J Biol Chem 281:19489-500
Rauch, Tibor; Pfeifer, Gerd P (2005) Methylated-CpG island recovery assay: a new technique for the rapid detection of methylated-CpG islands in cancer. Lab Invest 85:1172-80
Jin, Seung-Gi; Jiang, Chun-Ling; Rauch, Tibor et al. (2005) MBD3L2 interacts with MBD3 and components of the NuRD complex and can oppose MBD2-MeCP1-mediated methylation silencing. J Biol Chem 280:12700-9
Jiang, Chun-Ling; Jin, Seung-Gi; Pfeifer, Gerd P (2004) MBD3L1 is a transcriptional repressor that interacts with methyl-CpG-binding protein 2 (MBD2) and components of the NuRD complex. J Biol Chem 279:52456-64