首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >CDP/cut is the DNA-binding subunit of histone gene transcription factor HiNF-D: a mechanism for gene regulation at the G1/S phase cell cycle transition point independent of transcription factor E2F.
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CDP/cut is the DNA-binding subunit of histone gene transcription factor HiNF-D: a mechanism for gene regulation at the G1/S phase cell cycle transition point independent of transcription factor E2F.

机译:CDP / cut是组蛋白基因转录因子HiNF-D的DNA结合亚基:一种在G1 / S期细胞周期转换点独立于转录因子E2F的基因调节机制。

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摘要

Transcription of the genes for the human histone proteins H4, H3, H2A, H2B, and H1 is activated at the G1/S phase transition of the cell cycle. We have previously shown that the promoter complex HiNF-D, which interacts with cell cycle control elements in multiple histone genes, contains the key cell cycle factors cyclin A, CDC2, and a retinoblastoma (pRB) protein-related protein. However, an intrinsic DNA-binding subunit for HiNF-D was not identified. Many genes that are up-regulated at the G1/S phase boundary are controlled by E2F, a transcription factor that associates with cyclin-, cyclin-dependent kinase-, and pRB-related proteins. Using gel-shift immunoassays, DNase I protection, and oligonucleotide competition analyses, we show that the homeodomain protein CDP/cut, not E2F, is the DNA-binding subunit of the HiNF-D complex. The HiNF-D (CDP/cut) complex with the H4 promoter is immunoreactive with antibodies against CDP/cut and pRB but not p107, whereas the CDP/cut complex with a nonhistone promoter (gp91-phox) reacts only with CDP and p107 antibodies. Thus, CDP/cut complexes at different gene promoters can associate with distinct pRB-related proteins. Transient coexpression assays show that CDP/cut modulates H4 promoter activity via the HiNF-D-binding site. Hence, DNA replication-dependent histone H4 genes are regulated by an E2F-independent mechanism involving a complex of CDP/cut with cyclin A/CDC2/ RB-related proteins.
机译:人类组蛋白H4,H3,H2A,H2B和H1的基因转录在细胞周期的G1 / S相变处被激活。我们以前已经表明,与多个组蛋白基因中的细胞周期控制元件相互作用的启动子复合物HiNF-D包含关键的细胞周期因子cyclin A,CDC2和成视网膜细胞瘤(pRB)蛋白相关蛋白。但是,未鉴定出HiNF-D的内在DNA结合亚基。在G1 / S相界上调的许多基因受E2F控制,E2F是一种与细胞周期蛋白,细胞周期蛋白依赖性激酶和pRB相关蛋白相关的转录因子。使用凝胶移位免疫测定,DNase I保护和寡核苷酸竞争分析,我们显示同源结构域蛋白CDP / cut,而不是E2F,是HiNF-D复合体的DNA结合亚基。具有H4启动子的HiNF-D(CDP / cut)复合物与针对CDP / cut和pRB的抗体具有免疫反应性,但与p107没有免疫反应,而具有非组蛋白启动子(gp91-phox)的CDP / cut复合物仅与CDP和p107抗体反应。因此,不同基因启动子上的CDP / cut复合物可以与不同的pRB相关蛋白结合。瞬态共表达测定表明CDP / cut通过HiNF-D结合位点调节H4启动子活性。因此,依赖复制的DNA复制依赖的组蛋白H4基因受E2F依赖性机制的调控,该机制涉及CDP / cut与细胞周期蛋白A / CDC2 / RB相关蛋白的复合物。

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