Direct Evidence for Pitavastatin Induced Chromatin Structure Change in the KLF4 Gene in Endothelial Cells

Takashi Maejima(The University of Tokyo), Tsuyoshi Inoue(The University of Tokyo), Yasuharu Kanki(The University of Tokyo), Takahide Kohro(The University of Tokyo), Guoliang Li(Jackson Laboratory), Yoshihiro Ohta(The University of Tokyo), Hiroshi Kimurâ(Osaka University), Mika Kobayashi(The University of Tokyo), Akashi Taguchi(The University of Tokyo), Shuichi Tsutsumi(The University of Tokyo), Hiroko Iwanari(The University of Tokyo), Shogo Yamamoto(The University of Tokyo), Hirofumi Aruga(Thermo Fisher Scientific (United States)), Shoulian Dong(Thermo Fisher Scientific (United States)), Junko Stevens(Thermo Fisher Scientific (United States)), Huay Mei Poh(Jackson Laboratory), Kazuki Yamamoto(The University of Tokyo), Takeshi Kawamura(The University of Tokyo), Imari Mimura(The University of Tokyo), Jun-ichi Suehiro(The University of Tokyo), Akira Sugiyama(The University of Tokyo), Kiyomi Kaneki(The University of Tokyo), Haruki Shibata(Kowa (Japan)), Yasunobu Yoshinaka(Kowa (Japan)), Takeshi Doi(Kowa (Japan)), Akimune ASANUMA(Kowa (Japan)), Sohei Tanabe(Kowa (Japan)), Toshiya Tanaka(The University of Tokyo), Takashi Minami(The University of Tokyo), Takao Hamakubo(The University of Tokyo), Juro Sakai(The University of Tokyo), Naohito Nozaki(North Advancement Center for Science and Technology), Hiroyuki Aburatani(The University of Tokyo), Masaomi Nangaku(The University of Tokyo), Xiaoan Ruan(Genome Institute of Singapore), Hideyuki Tanabe(The Graduate University for Advanced Studies, SOKENDAI), Yijun Ruan(Jackson Laboratory), Sigeo Ihara(The University of Tokyo), Akira Endo, Tatsuhiko Kodama(The University of Tokyo), Youichiro Wada(The University of Tokyo)
PLoS ONE
May 5, 2014
Cited by 49Open Access
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Abstract

Statins exert atheroprotective effects through the induction of specific transcriptional factors in multiple organs. In endothelial cells, statin-dependent atheroprotective gene up-regulation is mediated by Kruppel-like factor (KLF) family transcription factors. To dissect the mechanism of gene regulation, we sought to determine molecular targets by performing microarray analyses of human umbilical vein endothelial cells (HUVECs) treated with pitavastatin, and KLF4 was determined to be the most highly induced gene. In addition, it was revealed that the atheroprotective genes induced with pitavastatin, such as nitric oxide synthase 3 (NOS3) and thrombomodulin (THBD), were suppressed by KLF4 knockdown. Myocyte enhancer factor-2 (MEF2) family activation is reported to be involved in pitavastatin-dependent KLF4 induction. We focused on MEF2C among the MEF2 family members and identified a novel functional MEF2C binding site 148 kb upstream of the KLF4 gene by chromatin immunoprecipitation along with deep sequencing (ChIP-seq) followed by luciferase assay. By applying whole genome and quantitative chromatin conformation analysis {chromatin interaction analysis with paired end tag sequencing (ChIA-PET), and real time chromosome conformation capture (3C) assay}, we observed that the MEF2C-bound enhancer and transcription start site (TSS) of KLF4 came into closer spatial proximity by pitavastatin treatment. 3D-Fluorescence in situ hybridization (FISH) imaging supported the conformational change in individual cells. Taken together, dynamic chromatin conformation change was shown to mediate pitavastatin-responsive gene induction in endothelial cells.


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