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Fkh1和Fkh2以不同的特异性和细胞周期动态结合酿酒酵母基因组中的多个染色体元件。

Fkh1 and Fkh2 bind multiple chromosomal elements in the S. cerevisiae genome with distinct specificities and cell cycle dynamics.

作者信息

Ostrow A Zachary, Nellimoottil Tittu, Knott Simon R V, Fox Catherine A, Tavaré Simon, Aparicio Oscar M

机构信息

Molecular and Computational Biology Program, University of Southern California, Los Angeles, California, United States of America.

Department of Biomolecular Chemistry, University of Wisconsin Medical School, Madison, Wisconsin, United States of America.

出版信息

PLoS One. 2014 Feb 4;9(2):e87647. doi: 10.1371/journal.pone.0087647. eCollection 2014.

Abstract

Forkhead box (FOX) transcription factors regulate a wide variety of cellular functions in higher eukaryotes, including cell cycle control and developmental regulation. In Saccharomyces cerevisiae, Forkhead proteins Fkh1 and Fkh2 perform analogous functions, regulating genes involved in cell cycle control, while also regulating mating-type silencing and switching involved in gamete development. Recently, we revealed a novel role for Fkh1 and Fkh2 in the regulation of replication origin initiation timing, which, like donor preference in mating-type switching, appears to involve long-range chromosomal interactions, suggesting roles for Fkh1 and Fkh2 in chromatin architecture and organization. To elucidate how Fkh1 and Fkh2 regulate their target DNA elements and potentially regulate the spatial organization of the genome, we undertook a genome-wide analysis of Fkh1 and Fkh2 chromatin binding by ChIP-chip using tiling DNA microarrays. Our results confirm and extend previous findings showing that Fkh1 and Fkh2 control the expression of cell cycle-regulated genes. In addition, the data reveal hundreds of novel loci that bind Fkh1 only and exhibit a distinct chromatin structure from loci that bind both Fkh1 and Fkh2. The findings also show that Fkh1 plays the predominant role in the regulation of a subset of replication origins that initiate replication early, and that Fkh1/2 binding to these loci is cell cycle-regulated. Finally, we demonstrate that Fkh1 and Fkh2 bind proximally to a variety of genetic elements, including centromeres and Pol III-transcribed snoRNAs and tRNAs, greatly expanding their potential repertoire of functional targets, consistent with their recently suggested role in mediating the spatial organization of the genome.

摘要

叉头框(FOX)转录因子在高等真核生物中调控多种细胞功能,包括细胞周期控制和发育调控。在酿酒酵母中,叉头蛋白Fkh1和Fkh2发挥类似功能,调控参与细胞周期控制的基因,同时也调控配子发育中涉及的交配型沉默和转换。最近,我们揭示了Fkh1和Fkh2在复制起点起始时间调控中的新作用,这与交配型转换中的供体偏好类似,似乎涉及远距离染色体相互作用,暗示Fkh1和Fkh2在染色质结构和组织中的作用。为了阐明Fkh1和Fkh2如何调控其靶DNA元件并可能调控基因组的空间组织,我们使用平铺DNA微阵列通过芯片免疫沉淀(ChIP-chip)对Fkh1和Fkh2染色质结合进行了全基因组分析。我们的结果证实并扩展了先前的发现,表明Fkh1和Fkh2控制细胞周期调控基因的表达。此外,数据揭示了数百个仅与Fkh1结合的新位点,这些位点与同时结合Fkh1和Fkh2的位点具有不同的染色质结构。这些发现还表明,Fkh1在早期起始复制的一部分复制起点的调控中起主要作用,并且Fkh1/2与这些位点的结合受细胞周期调控。最后,我们证明Fkh1和Fkh2在近端与多种遗传元件结合,包括着丝粒以及由RNA聚合酶III转录的小核仁RNA(snoRNA)和转运RNA(tRNA),极大地扩展了它们潜在的功能靶标范围,这与它们最近在介导基因组空间组织中所暗示的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a9/3913637/8f3b713d99c7/pone.0087647.g001.jpg

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