Transcriptional regulation by STAT1 and STAT2 in the interferon JAK-STAT pathway

N Au-Yeung, R Mandhana, CM Horvath - Jak-stat, 2013 - Taylor & Francis
N Au-Yeung, R Mandhana, CM Horvath
Jak-stat, 2013Taylor & Francis
STAT1 and STAT2 proteins are key mediators of type I and type III interferon (IFN) signaling,
and are essential components of the cellular antiviral response and adaptive immunity. They
associate with IFN regulatory factor 9 (IRF9) to form a heterotrimeric transcription factor
complex known as ISGF3. The regulation of IFN-stimulated gene (ISG) expression has
served as a model of JAK-STAT signaling and mammalian transcriptional regulation, but to
date has primarily been analyzed at the single gene level. While many aspects of ISGF3 …
STAT1 and STAT2 proteins are key mediators of type I and type III interferon (IFN) signaling, and are essential components of the cellular antiviral response and adaptive immunity. They associate with IFN regulatory factor 9 (IRF9) to form a heterotrimeric transcription factor complex known as ISGF3. The regulation of IFN-stimulated gene (ISG) expression has served as a model of JAK-STAT signaling and mammalian transcriptional regulation, but to date has primarily been analyzed at the single gene level. While many aspects of ISGF3-mediated gene regulation are thought to be common features applicable to several ISGs, there are also many reports of distinct cases of non-canonical STAT1 or STAT2 signaling events and distinct patterns of co-regulators that contribute to gene-specific transcription. Recent genome-wide studies have begun to uncover a more complete profile of ISG regulation, moving toward a genome-wide understanding of general mechanisms that underlie gene-specific behaviors.
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