Mayanil Chandra S K, Pool Angela, Nakazaki Hiromichi, Reddy Anvesh C, Mania-Farnell Barbara, Yun Beth, George David, McLone David G, Bremer Eric G
Laboratory of Neural Tube Research, Department of Pediatric Neurosurgery, Children's Memorial Research Center and Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60614, USA.
J Biol Chem. 2006 Aug 25;281(34):24544-52. doi: 10.1074/jbc.M512449200. Epub 2006 Jun 19.
Previously our laboratory identified TGFbeta2 as a potential downstream target of Pax3 by utilizing microarray analysis and promoter data base mining (Mayanil, C. S. K., George, D., Freilich, L., Miljan, E. J., Mania-Farnell, B. J., McLone, D. G., and Bremer, E. G. (2001) J. Biol. Chem. 276, 49299-49309). Here we report that Pax3 directly regulates TGFbeta2 transcription by binding to cis-regulatory elements within its promoter. Chromatin immunoprecipitation revealed that Pax3 bound to the cis-regulatory elements on the TGFbeta2 promoter (GenBanktrade mark accession number AF118263). Both TGFbeta2 promoter-luciferase activity measurements in transient cotransfection experiments and electromobility shift assays supported the idea that Pax3 regulates TGFbeta2 by directly binding to its cis-regulatory regions. Additionally, by using a combination of co-immunoprecipitation and chromatin immunoprecipitation, we show that the TGFbeta2 cis-regulatory elements between bp 741-940 and bp 1012-1212 bind acetylated Pax3 and are associated with p300/CBP and histone deacetylases. The cis-regulatory elements between bp 741 and 940 in addition to associating with acetylated Pax3 and HDAC1 also associated with SIRT1. Whole mount in situ hybridization and quantitative real time reverse transcription-PCR showed diminished levels of TGFbeta2 transcripts in Pax3(-/-) mouse embryos (whose phenotype is characterized by neural tube defects) as compared with Pax3(+/+) littermates (embryonic day 10.0; 30 somite stage), suggesting that Pax3 regulation of TGFbeta2 may play a pivotal role during early embryonic development.
此前,我们的实验室通过利用微阵列分析和启动子数据库挖掘,将TGFβ2鉴定为Pax3的一个潜在下游靶点(Mayanil, C. S. K., George, D., Freilich, L., Miljan, E. J., Mania-Farnell, B. J., McLone, D. G., and Bremer, E. G. (2001) J. Biol. Chem. 276, 49299 - 49309)。在此我们报告,Pax3通过与TGFβ2启动子内的顺式调控元件结合,直接调节其转录。染色质免疫沉淀显示,Pax3与TGFβ2启动子上的顺式调控元件结合(GenBank商标登录号AF118263)。瞬时共转染实验中TGFβ2启动子 - 荧光素酶活性测量以及电泳迁移率变动分析均支持Pax3通过直接结合其顺式调控区域来调节TGFβ2这一观点。此外,通过联合使用免疫共沉淀和染色质免疫沉淀,我们发现bp 741 - 940和bp 1012 - 1212之间的TGFβ2顺式调控元件结合乙酰化的Pax3,并与p300/CBP和组蛋白去乙酰化酶相关。bp 741和940之间的顺式调控元件除了与乙酰化的Pax3和HDAC1相关外,还与SIRT1相关。整体原位杂交和定量实时逆转录 - PCR显示,与Pax3(+/+)同窝小鼠(胚胎第10.0天;30体节期)相比,Pax3(-/-)小鼠胚胎(其表型特征为神经管缺陷)中TGFβ2转录本水平降低,这表明Pax3对TGFβ2的调节可能在早期胚胎发育过程中起关键作用。