Selective interaction of SMCHD1 with chromatin is governed by LRIF1 and SMCHD1 ATPase activity
Селективное взаимодействие SMCHD1 с хроматином определяется LRIF1 и АТФазной активностью SMCHD1
2026-06-16
SCID: 54.1/9m66r6sv
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GHKL ATPaseH3K9me2/3LRIF1SMCHD1inactive X chromosome
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Abstract (AI)
The chromosomal protein SMCHD1 is a GHKL ATPase with important roles in epigenetic silencing, including on the inactive X chromosome (Xi). Mutations of SMCHD1 have been linked to facioscapulohumeral muscular dystrophy (FSHD) and Bosma arrhinia microphthalmia syndrome (BAMS). Here, we use live-cell and single-molecule imaging to investigate SMCHD1 interactions with chromatin and its function in epigenetic silencing. We show that chromatin binding of SMCHD1 genome-wide, including on the Xi, is critically dependent on the protein LRIF1 that mediates interaction with H3K9me2/3-modified nucleosomes. Engineered mutations in the GHKL ATPase domain demonstrate that ATP hydrolysis is required for selective enrichment of SMCHD1 at specific chromatin regions, which is critical for X-linked gene silencing. Conversely, gain-of-function BAMS-associated mutations are linked to accelerated Xi recruitment and gene silencing, or increased Xi compaction. Together, our findings advance understanding of SMCHD1 recruitment and function on the Xi and at other target sites in the genome.
Key Findings
1
ATP hydrolysis by the SMCHD1 GHKL ATPase domain is required for selective enrichment of SMCHD1 at specific chromatin regions.
2
BAMS-associated gain-of-function SMCHD1 mutations cause accelerated recruitment to the Xi and/or increased Xi compaction, linked to enhanced gene silencing.
3
SMCHD1 chromatin binding genome-wide, including on the inactive X chromosome (Xi), is critically dependent on LRIF1 which mediates interaction with H3K9me2/3-modified nucleosomes.
4
Selective enrichment of SMCHD1 driven by its ATPase activity is critical for X-linked gene silencing.
Research Object
Chromosomal protein SMCHD1 and its interactions with chromatin (including the inactive X chromosome)
Research Subject
Dependence of SMCHD1 selective chromatin binding and recruitment on LRIF1-mediated recognition of H3K9me2/3 nucleosomes and on SMCHD1 GHKL ATPase activity, and how these factors control enrichment at specific genomic regions, Xi recruitment/compaction, and X-linked gene silencing
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2026-06-16
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