Roesch Alexander, Mueller Andrea M, Stempfl Thomas, Moehle Christoph, Landthaler Michael, Vogt Thomas
Department of Dermatology, Regensburg University Medical Center, D-93053 Regensburg, Germany.
Int J Cancer. 2008 Mar 1;122(5):1047-57. doi: 10.1002/ijc.23211.
The RBP2-H1/JARID1B nuclear protein belongs to the ARID family of DNA-binding proteins and is a potential tumor suppressor that is lost during melanoma development. As we have recently shown, one physiological function of RBP2-H1/JARID1B is to exert cell cycle control via maintenance of active retinoblastoma protein. We now add new evidence that RBP2-H1/JARID1B can also directly regulate gene transcription in a reporter assay system, either alone or as part of a multimolecular complex together with the developmental transcription factors FOXG1b and PAX9. In melanoma cells, chromatin immunoprecipitation combined with promoter chip analysis (ChIP-on-chip) suggests a direct binding of re-expressed RBP2-H1/JARID1B to a multitude of human regulatory chromosomal elements (promoters, enhancers and introns). Among those, a set of 23 genes, including the melanoma relevant genes CDK6 and JAG-1 could be confirmed by cDNA microarray analyses to be differentially expressed after RBP2-H1/JARID1B re-expression. In contrast, in nonmelanoma HEK 293 cells, RBP2-H1/JARID1B overexpression only evokes a minor transcriptional response in cDNA microarray analyses. Because the transcriptional regulation in melanoma cells is accompanied by an inhibition of proliferation, an increase in caspase activity and a partial cell cycle arrest in G1/0, our data support an anti-tumorigenic role of RBP2-H1/JARID1B in melanocytic cells.
RBP2-H1/JARID1B核蛋白属于DNA结合蛋白的ARID家族,是一种潜在的肿瘤抑制因子,在黑色素瘤发展过程中会缺失。正如我们最近所表明的,RBP2-H1/JARID1B的一个生理功能是通过维持活性视网膜母细胞瘤蛋白来发挥细胞周期控制作用。我们现在补充新的证据,即RBP2-H1/JARID1B在报告基因检测系统中也能直接调节基因转录,无论是单独作用还是与发育转录因子FOXG1b和PAX9一起作为多分子复合物的一部分。在黑色素瘤细胞中,染色质免疫沉淀结合启动子芯片分析(芯片上的染色质免疫沉淀)表明,重新表达的RBP2-H1/JARID1B直接结合到多种人类调节性染色体元件(启动子、增强子和内含子)上。其中,包括黑色素瘤相关基因CDK6和JAG-1在内的一组23个基因,通过cDNA微阵列分析证实,在RBP2-H1/JARID1B重新表达后差异表达。相比之下,在非黑色素瘤HEK 293细胞中,RBP2-H1/JARID1B过表达在cDNA微阵列分析中仅引起轻微的转录反应。由于黑色素瘤细胞中的转录调节伴随着增殖抑制、半胱天冬酶活性增加和G1/0期部分细胞周期停滞,我们的数据支持RBP2-H1/JARID1B在黑素细胞中的抗肿瘤作用。