Molecular interactions underlying the phase separation of HP1α: role of phosphorylation, ligand and nucleic acid binding.
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ABSTRACT: Heterochromatin protein 1α (HP1α) is a crucial element of chromatin organization. It has been proposed that HP1α functions through liquid-liquid phase separation (LLPS), which allows it to compact chromatin into transcriptionally repressed heterochromatin regions. In vitro, HP1α can undergo phase separation upon phosphorylation of its N-terminus extension (NTE) and/or through interactions with DNA and chromatin. Here, we combine computational and experimental approaches to elucidate the molecular interactions that drive these processes. In phosphorylation-driven LLPS, HP1α can exchange intradimer hinge-NTE interactions with interdimer contacts, which also leads to a structural change from a compacted to an extended HP1α dimer conformation. This process can be enhanced by the presence of po
SUBMITTER: Her C
PROVIDER: S-EPMC9825191 | biostudies-literature | 2022 Dec
REPOSITORIES: biostudies-literature
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