Medina Ricardo, van der Deen Margaretha, Miele-Chamberland Angela, Xie Rong-Lin, van Wijnen Andre J, Stein Janet L, Stein Gary S
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, MA 01655, USA.
Cancer Res. 2007 Nov 1;67(21):10334-42. doi: 10.1158/0008-5472.CAN-07-1560.
HiNF-P and its cofactor p220(NPAT) are principal factors regulating histone gene expression at the G(1)-S phase cell cycle transition. Here, we have investigated whether HiNF-P controls other cell cycle- and cancer-related genes. We used cDNA microarrays to monitor responsiveness of gene expression to small interfering RNA-mediated depletion of HiNF-P. Candidate HiNF-P target genes were examined for the presence of HiNF-P recognition motifs, in vitro HiNF-P binding to DNA, and in vivo association by chromatin immunoprecipitations and functional reporter gene assays. Of 177 proliferation-related genes we tested, 20 are modulated in HiNF-P-depleted cells and contain putative HiNF-P binding motifs. We validated that at least three genes (i.e., ATM, PRKDC, and CKS2) are HiNF-P dependent and provide data indicating that the DNA damage response is altered in HiNF-P-depleted cells. We conclude that, in addition to histone genes, HiNF-P also regulates expression of nonhistone targets that influence competency for cell cycle progression.
HiNF-P及其辅因子p220(NPAT)是在G(1)-S期细胞周期转换时调节组蛋白基因表达的主要因子。在此,我们研究了HiNF-P是否控制其他细胞周期和癌症相关基因。我们使用cDNA微阵列来监测基因表达对小干扰RNA介导的HiNF-P缺失的反应。通过染色质免疫沉淀和功能报告基因分析,检测候选HiNF-P靶基因中HiNF-P识别基序的存在、HiNF-P与DNA的体外结合以及体内关联。在我们测试的177个增殖相关基因中,有20个在HiNF-P缺失的细胞中受到调控,并含有假定的HiNF-P结合基序。我们验证了至少三个基因(即ATM、PRKDC和CKS2)依赖于HiNF-P,并提供数据表明HiNF-P缺失的细胞中DNA损伤反应发生了改变。我们得出结论,除了组蛋白基因外,HiNF-P还调节非组蛋白靶标的表达,这些靶标影响细胞周期进程的能力。