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PMID: 24069400 已发表 · epublish 英语

Role for Krüppel-like transcription factor 11 in mesenchymal cell function and fibrosis.

PloS one ·第 8 卷 ·第 9 期 ·2014-06-15

Mathison Angela, Grzenda Adrienne, Lomberk Gwen, Velez Gabriel, Buttar Navtej, Tietz Pamela, Hendrickson Helen, Liebl Ann, Xiong Yuning Y, Gores Gregory, Fernandez-Zapico Martin, Larusso Nicholas F, Faubion William, Shah Vijay H, Urrutia Raul

摘要

Krüppel-like factor 11 (KLF11) and the highly homologous KLF10 proteins are transcription factors originating from duplication of the Drosophila melanogaster ancestor cabut. The function of these proteins in epithelial cells has been previously characterized. In the current study, we report a functional role for KLF11 in mesenchymal cells and in mesenchymal cell dysfunction, namely, fibrosis, and subsequently perform a detailed cellular, molecular, and in vivo characterization of this phenomenon. We find that, in cultured mesenchymal cells, enhanced expression of KLF11 results in activated extracellular matrix pathways, including collagen gene silencing and matrix metalloproteinases activation without changes in tissue inhibitors of metalloproteinases. Combined, reporter and chromatin immunoprecipitation assays demonstrate that KLF11 interacts directly with the collagen 1a2 (COL1A2) promoter in mesenchymal cells to repress its activity. Mechanistically, KLF11 regulates collagen gene expression through the heterochromatin protein 1 gene-silencing pathway as mutants defective for coupling to this epigenetic modifier lose the ability to repress COL1A2. Expression studies reveal decreased levels of KLF11 during liver fibrogenesis after chemically induced injury in vivo. Congruently, KLF11(-/-) mice, which should be deficient in the hypothesized anti-fibrogenic brake imposed by this transcription factor, display an enhanced response to liver injury with increased collagen fibril deposition. Thus, KLFs expands the repertoire of transcription factors involved in the regulation of extracellular matrix proteins in mesenchymal cells and define a novel pathway that modulates the fibrogenic response during liver injury.

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2014-06-15
收录日期
2013-09-26
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101285081
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