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PMID: 42249047 已发表 · ppublish 英语

MORC3 represses a tandem repeat enhancer to regulate interferon.

The EMBO journal ·第 45 卷 ·第 14 期 ·2026-07-00

Krumwiede L, Hollaus D, Valeri E, Schindler-Schumitsch K, Bazyl MA, Schiedlbauer J, Becht NN, Jaritz M, de Almeida BP, Schloissnig S, Burdette DL, Schreiber J, Stark A, Gaidt MM

摘要

The antiviral protein MORC3 is frequently inhibited by viruses. To counteract viral antagonism, MORC3 represses a noncanonical pathway of type-I-interferon (IFN) such that viral inhibition of MORC3 triggers ( > 10,000-fold) IFN induction. How MORC3 represses this pathway, and why IFN induction upon MORC3 loss is so potent without canonical IRF3/7 transcription factors, is unknown. Here, we show that MORC3 restricts chromatin accessibility at tandem repeat elements harboring up to 61 homotypic transcription factor motifs. One such element becomes a potent enhancer of IFNB1 upon MORC3 loss. Its motif cluster contains 45 PU.1 binding sites and is necessary and sufficient for MORC3-mediated repression and enhancer activity upon MORC3 loss. PU.1 recruits MORC3 to repress this enhancer by recruiting DAXX and enabling H3.3 incorporation. Upon MORC3 loss, PU.1 drives IRF3/7-independent IFN induction. Other restricted tandem repeats contain homotypic motif clusters of SPI, AP-1, and SP/KLF transcription factors. Our findings uncover a TF motif cluster-driven repression mechanism by MORC3 at tandem repeats, enabling specific repression of an IFNB1 enhancer such that viral antagonism of MORC3 induces interferon.

文献信息
期刊
The EMBO journal
期刊简称
EMBO J
ISSN
1460-2075
发表日期
2026-07-00
语言
英语
国家/地区
England
NLM ID
8208664
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