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Tethered particle motion as a diagnostic of DNA tether length.拴系粒子运动作为DNA拴系长度的一种诊断方法。
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Chromatin immunoprecipitation (ChIP) on chip experiments uncover a widespread distribution of NF-Y binding CCAAT sites outside of core promoters.芯片染色质免疫沉淀(ChIP)实验揭示了核心启动子之外广泛分布的NF-Y结合CCAAT位点。
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Dual architectural roles of HU: formation of flexible hinges and rigid filaments.HU的双重结构作用:形成柔性铰链和刚性细丝。
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Single-molecule studies of DNA architectural changes induced by regulatory proteins.调控蛋白诱导的DNA结构变化的单分子研究。
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DNA dynamics in RecA-DNA filaments: ATP hydrolysis-related flexibility in DNA.RecA-DNA细丝中的DNA动力学:与ATP水解相关的DNA灵活性
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Supercoiling and denaturation in Gal repressor/heat unstable nucleoid protein (HU)-mediated DNA looping.Gal阻遏蛋白/热不稳定类核蛋白(HU)介导的DNA环化中的超螺旋化与变性
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Chromatin remodeling and extragenic transcription at the MHC class II locus control region.MHC II类基因座控制区的染色质重塑与基因外转录
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The NF-YB/NF-YC structure gives insight into DNA binding and transcription regulation by CCAAT factor NF-Y.NF-YB/NF-YC结构揭示了CCAAT因子NF-Y与DNA的结合及转录调控机制。
J Biol Chem. 2003 Jan 10;278(2):1336-45. doi: 10.1074/jbc.M209635200. Epub 2002 Oct 24.
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CBF/NF-Y functions both in nucleosomal disruption and transcription activation of the chromatin-assembled topoisomerase IIalpha promoter. Transcription activation by CBF/NF-Y in chromatin is dependent on the promoter structure.CBF/NF-Y在核小体破坏及染色质组装的拓扑异构酶IIα启动子的转录激活过程中均发挥作用。染色质中CBF/NF-Y介导的转录激活取决于启动子结构。
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Identification and characterization of the potential promoter regions of 1031 kinds of human genes.1031种人类基因潜在启动子区域的鉴定与表征
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由核因子Y介导的DNA压缩

DNA compaction by the nuclear factor-Y.

作者信息

Guerra Rosalinda F, Imperadori Laura, Mantovani Roberto, Dunlap David D, Finzi Laura

机构信息

Department of Biology, University of Milan, Milan, Italy.

出版信息

Biophys J. 2007 Jul 1;93(1):176-82. doi: 10.1529/biophysj.106.099929. Epub 2007 Apr 13.

DOI:10.1529/biophysj.106.099929
PMID:17434933
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1914443/
Abstract

The nuclear factor-Y (NF-Y), a trimeric, CCAAT-binding transcriptional activator with histone-like subunits, was until recently considered a prototypical promoter transcription factor. However, recent in vivo chromatin immunoprecipitation assays associated with microarray methodologies (chromatin immunoprecipitation on chip experiments) have indicated that a large portion of target sites (40%-50%) are located outside of core promoters. We applied the tethered particle motion technique to the major histocompatibility complex class II enhancer-promoter region to characterize i), the progressive compaction of DNA due to increasing concentrations of NF-Y, ii), the role of specific subunits and domains of NF-Y in the process, and iii), the interplay between NF-Y and the regulatory factor-X, which cooperatively binds to the X-box adjacent to the CCAAT box. Our study shows that NF-Y has histone-like activity, since it binds DNA nonspecifically with high affinity to compact it. This activity, which depends on the presence of all trimer subunits and of their glutamine-rich domains, seems to be attenuated by the transcriptional cofactor regulatory factor-X. Most importantly NF-Y-induced DNA compaction may facilitate promoter-enhancer interactions, which are known to be critical for expression regulation.

摘要

核因子-Y(NF-Y)是一种三聚体的、结合CCAAT的转录激活因子,具有类组蛋白亚基,直到最近一直被认为是一种典型的启动子转录因子。然而,最近与微阵列方法相关的体内染色质免疫沉淀分析(芯片上的染色质免疫沉淀实验)表明,很大一部分靶位点(40%-50%)位于核心启动子之外。我们将束缚粒子运动技术应用于主要组织相容性复合体II类增强子-启动子区域,以表征:i)由于NF-Y浓度增加导致的DNA渐进性压缩;ii)NF-Y的特定亚基和结构域在此过程中的作用;iii)NF-Y与调节因子-X之间的相互作用,调节因子-X与CCAAT框相邻的X框协同结合。我们的研究表明NF-Y具有类组蛋白活性,因为它以高亲和力非特异性结合DNA以使其压缩。这种活性依赖于所有三聚体亚基及其富含谷氨酰胺的结构域的存在,似乎被转录辅因子调节因子-X减弱。最重要的是NF-Y诱导的DNA压缩可能促进启动子-增强子相互作用,已知这对表达调控至关重要。