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PMID: 25673149 已发表 · epublish 英语

The miR-199a/Brm/EGR1 axis is a determinant of anchorage-independent growth in epithelial tumor cell lines.

Scientific reports ·第 5 卷 ·2016-02-02

Kobayashi Kazuyoshi, Sakurai Kouhei, Hiramatsu Hiroaki, Inada Ken-ichi, Shiogama Kazuya, Nakamura Shinya, Suemasa Fumiko, Kobayashi Kyosuke, Imoto Seiya, Haraguchi Takeshi, Ito Hiroaki, Ishizaka Aya, Tsutsumi Yutaka, Iba Hideo

摘要

In epithelial cells, miRNA-199a-5p/-3p and Brm, a catalytic subunit of the SWI/SNF complex were previously shown to form a double-negative feedback loop through EGR1, by which human cancer cell lines tend to fall into either of the steady states, types 1 [miR-199a(-)/Brm(+)/EGR1(-)] and 2 [miR-199a(+)/Brm (-)/EGR1(+)]. We show here, that type 2 cells, unlike type 1, failed to form colonies in soft agar, and that CD44, MET, CAV1 and CAV2 (miR-199a targets), all of which function as plasma membrane sensors and can co-localize in caveolae, are expressed specifically in type 1 cells. Single knockdown of any of them suppressed anchorage-independent growth of type 1 cells, indicating that the miR-199a/Brm/EGR1 axis is a determinant of anchorage-independent growth. Importantly, two coherent feedforward loops are integrated into this axis, supporting the robustness of type 1-specific gene expression and exemplifying how the miRNA-target gene relationship can be stably sustained in a variety of epithelial tumors.

文献信息
期刊
Scientific reports
期刊简称
Sci Rep
发表日期
2016-02-02
收录日期
2015-02-12
更新日期
2015-02-21
语言
英语
国家/地区
England
NLM ID
101563288
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