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Drosophila FACT contributes to Hox gene expression through physical and functional interactions with GAGA factor.


ABSTRACT: Chromatin structure plays a critical role in the regulation of transcription. Drosophila GAGA factor directs chromatin remodeling to its binding sites. We show here that Drosophila FACT (facilitates chromatin transcription), a heterodimer of dSPT16 and dSSRP1, is associated with GAGA factor through its dSSRP1 subunit, binds to a nucleosome, and facilitates GAGA factor-directed chromatin remodeling. Moreover, genetic interactions between Trithorax-like encoding GAGA factor and spt16 implicate the GAGA factor-FACT complex in expression of Hox genes Ultrabithorax, Sex combs reduced, and Abdominal-B. Chromatin immunoprecipitation experiments indicated the presence of the GAGA factor-FACT complex in the regulatory regions of Ultrabithorax and Abdominal-B. These data illustrate a crucial role of FACT in the modulation of chromatin structure for the regulation of gene expression.

SUBMITTER: Shimojima T 

PROVIDER: S-EPMC196133 | biostudies-literature | 2003 Jul

REPOSITORIES: biostudies-literature

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Drosophila FACT contributes to Hox gene expression through physical and functional interactions with GAGA factor.

Shimojima Tsukasa T   Okada Masahiro M   Nakayama Takahiro T   Ueda Hitoshi H   Okawa Katsuya K   Iwamatsu Akihiro A   Handa Hiroshi H   Hirose Susumu S  

Genes & development 20030618 13


Chromatin structure plays a critical role in the regulation of transcription. Drosophila GAGA factor directs chromatin remodeling to its binding sites. We show here that Drosophila FACT (facilitates chromatin transcription), a heterodimer of dSPT16 and dSSRP1, is associated with GAGA factor through its dSSRP1 subunit, binds to a nucleosome, and facilitates GAGA factor-directed chromatin remodeling. Moreover, genetic interactions between Trithorax-like encoding GAGA factor and spt16 implicate the  ...[more]

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