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PMID: 15590650 Published · ppublish English

Identification of an enhancer that controls up-regulation of fibronectin during differentiation of embryonic stem cells into extraembryonic endoderm.

The Journal of biological chemistry ·Vol. 280 ·No. 8 ·2005-04-08

Shirai Tetsu, Miyagi Satoru, Horiuchi Daisuke, Okuda-Katayanagi Tomoko, Nishimoto Masazumi, Muramatsu Masami, Sakamoto Yoshio, Nagata Makoto, Hagiwara Koichi, Okuda Akihiko

Abstract

The extraembryonic endoderm is derived from inner cell mass cells of the blastocyst during early mouse embryogenesis. Formation of the extraembryonic endoderm, which later contributes to the yolk sac, appears to be a prerequisite for subsequent differentiation of the inner cell mass. While embryonic stem cells can be induced to differentiate into extraembryonic endoderm cells in vitro, the molecular mechanisms underlying this process are poorly understood. We used a promoter trap approach to search for genes that are expressed in embryonic stem cells and are highly up-regulated during differentiation to the extraembryonic endoderm fate. We showed that fibronectin fits this expression profile. Moreover we identified an enhancer in the 12th intron of the fibronectin locus that recapitulated the endogenous pattern of fibronectin expression. This enhancer carries Sox protein-binding sequences, and our analysis demonstrated that Sox7 and Sox17, which are highly expressed in the extraembryonic endoderm, were involved in enhancer activity.

Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
Published
2005-04-08
Indexed
2005-02-21
Updated
2008-11-21
Language
English
Country/Region
United States
NLM ID
2985121R
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