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Nuclear Envelope Proteins Modulating the Heterochromatin Formation and Functions in Fission Yeast.


ABSTRACT: The nuclear envelope (NE) consists of the inner and outer nuclear membranes (INM and ONM), and the nuclear pore complex (NPC), which penetrates the double membrane. ONM continues with the endoplasmic reticulum (ER). INM and NPC can interact with chromatin to regulate the genetic activities of the chromosome. Studies in the fission yeast Schizosaccharomyces pombe have contributed to understanding the molecular mechanisms underlying heterochromatin formation by the RNAi-mediated and histone deacetylase machineries. Recent studies have demonstrated that NE proteins modulate heterochromatin formation and functions through interactions with heterochromatic regions, including the pericentromeric and the sub-telomeric regions. In this review, we first introduce the molecular mechanisms underlying the heterochromatin formation and functions in fission yeast, and then summarize the NE proteins that play a role in anchoring heterochromatic regions and in modulating heterochromatin formation and functions, highlighting roles for a conserved INM protein, Lem2.

SUBMITTER: Hirano Y 

PROVIDER: S-EPMC7464478 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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Nuclear Envelope Proteins Modulating the Heterochromatin Formation and Functions in Fission Yeast.

Hirano Yasuhiro Y   Asakawa Haruhiko H   Sakuno Takeshi T   Haraguchi Tokuko T   Hiraoka Yasushi Y  

Cells 20200816 8


The nuclear envelope (NE) consists of the inner and outer nuclear membranes (INM and ONM), and the nuclear pore complex (NPC), which penetrates the double membrane. ONM continues with the endoplasmic reticulum (ER). INM and NPC can interact with chromatin to regulate the genetic activities of the chromosome. Studies in the fission yeast <i>Schizosaccharomyces pombe</i> have contributed to understanding the molecular mechanisms underlying heterochromatin formation by the RNAi-mediated and histone  ...[more]

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