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Tissue-specific expression patterns of Arabidopsis NF-Y transcription factors suggest potential for extensive combinatorial complexity.拟南芥NF-Y转录因子的组织特异性表达模式表明其具有广泛组合复杂性的潜力。
Plant Physiol. 2009 Feb;149(2):625-41. doi: 10.1104/pp.108.130591. Epub 2008 Nov 19.
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Deep surveying of alternative splicing complexity in the human transcriptome by high-throughput sequencing.通过高通量测序对人类转录组中可变剪接复杂性进行深度研究。
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Genome-wide analysis of alternative promoters of human genes using a custom promoter tiling array.使用定制的启动子平铺阵列对人类基因的可变启动子进行全基因组分析。
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Genome-wide occupancy of SREBP1 and its partners NFY and SP1 reveals novel functional roles and combinatorial regulation of distinct classes of genes.SREBP1及其伙伴NFY和SP1在全基因组范围的占据情况揭示了不同类别基因的新功能作用和组合调控。
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A global view of gene activity and alternative splicing by deep sequencing of the human transcriptome.通过对人类转录组进行深度测序实现对基因活性和可变剪接的全局观察。
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Alternative promoters influence alternative splicing at the genomic level.可变启动子在基因组水平上影响可变剪接。
PLoS One. 2008 Jun 18;3(6):e2377. doi: 10.1371/journal.pone.0002377.
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ASPicDB: a database resource for alternative splicing analysis.ASPicDB:一个用于可变剪接分析的数据库资源。
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8
The histone-like NF-Y is a bifunctional transcription factor.组蛋白样核因子Y是一种双功能转录因子。
Mol Cell Biol. 2008 Mar;28(6):2047-58. doi: 10.1128/MCB.01861-07. Epub 2008 Jan 22.
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Genome-wide analysis of transcript isoform variation in humans.人类转录本异构体变异的全基因组分析。
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A balance between NF-Y and p53 governs the pro- and anti-apoptotic transcriptional response.NF-Y和p53之间的平衡决定了促凋亡和抗凋亡转录反应。
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NF-YC的复杂性是由双重启动子和可变剪接产生的。

NF-YC complexity is generated by dual promoters and alternative splicing.

作者信息

Ceribelli Michele, Benatti Paolo, Imbriano Carol, Mantovani Roberto

机构信息

Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Via Celoria 26, 20133 Milano, Italy.

出版信息

J Biol Chem. 2009 Dec 4;284(49):34189-200. doi: 10.1074/jbc.M109.008417. Epub 2009 Aug 18.

DOI:10.1074/jbc.M109.008417
PMID:19690168
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2797189/
Abstract

The CCAAT box is a DNA element present in the majority of human promoters, bound by the trimeric NF-Y, composed of NF-YA, NF-YB, and NF-YC subunits. We describe and characterize novel isoforms of one of the two histone-like subunits, NF-YC. The locus generates a minimum of four splicing products, mainly located within the Q-rich activation domain. The abundance of each isoform is cell-dependent; only one major NF-YC isoform is present in a given cell type. The 37- and 50-kDa isoforms are mutually exclusive, and preferential pairings with NF-YA isoforms possess different transcriptional activities, with specific combinations being more active on selected promoters. The transcriptional regulation of the NF-YC locus is also complex, and mRNAs arise from the two promoters P1 and P2. Transient transfections, chromatin immunoprecipitations, and reverse transcription-PCRs indicate that P1 has a robust housekeeping activity; P2 possesses a lower basal activity, but it is induced in response to DNA damage in a p53-dependent way. Alternative promoter usage directly affects NF-YC splicing, with the 50-kDa transcript being excluded from P2. Specific functional inactivation of the 37-kDa isoform affects the basal levels of G(1)/S blocking and pro-apoptotic genes but not G(2)/M promoters. In summary, our data highlight an unexpected degree of complexity and regulation of the NF-YC gene, demonstrating the existence of a discrete cohort of NF-Y trimer subtypes resulting from the functional diversification of Q-rich transactivating subunits and a specific role of the 37-kDa isoform in suppression of the DNA damage-response under growing conditions.

摘要

CCAAT框是大多数人类启动子中存在的一种DNA元件,由三聚体NF-Y结合,NF-Y由NF-YA、NF-YB和NF-YC亚基组成。我们描述并表征了两个组蛋白样亚基之一NF-YC的新型异构体。该基因座至少产生四种剪接产物,主要位于富含Q的激活域内。每种异构体的丰度依赖于细胞;在给定的细胞类型中仅存在一种主要的NF-YC异构体。37 kDa和50 kDa的异构体相互排斥,与NF-YA异构体的优先配对具有不同的转录活性,特定组合在选定的启动子上更具活性。NF-YC基因座的转录调控也很复杂,mRNA来自两个启动子P1和P2。瞬时转染、染色质免疫沉淀和逆转录PCR表明,P1具有强大的管家活性;P2具有较低的基础活性,但它以p53依赖的方式响应DNA损伤而被诱导。启动子的交替使用直接影响NF-YC的剪接,50 kDa的转录本被排除在P2之外。37 kDa异构体的特异性功能失活影响G(1)/S阻断和促凋亡基因的基础水平,但不影响G(2)/M启动子。总之,我们的数据突出了NF-YC基因意想不到的复杂程度和调控,证明了由于富含Q的反式激活亚基的功能多样化而存在离散的NF-Y三聚体亚型群体,以及37 kDa异构体在生长条件下抑制DNA损伤反应中的特定作用。