ReviewSub-cellular biochemistry2025
Tubular Lamin- and Emerin-Lined Nuclear Envelope Invaginations Isolate Chromatin Domains for Gene Expression Regulation.
Review in Sub-cellular biochemistry, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Lamins provide physical support to the nucleus and maintain nuclear shape. In many disease states linked to lamin and other nuclear envelope (NE) protein mutations, altered nuclear shape is viewed as a reflection of aberrant lamin and nuclear functions; however, there are also cell types with dramatically invaginated nuclei made with wild-type functional lamins. Closer inspection suggests four classes of NE invagination (NEI): large NE indentations or clefts, tubular NE invaginations that span from one side of the nucleus to the other, blind tubular NE invaginations that project variable distances into the nucleus, and blind invaginations of the inner nuclear membrane alone. These NEIs are likely formed by a combination of NE interactions with the cytoskeleton and with chromatin. Specific functions of NEIs are still being investigated, but their increasing relative nuclear surface area could increase NE/lamin functions in genome organization and regulation. Indeed, NEIs have recently been shown to hold a unique epigenetic signature compared to other NE regions in the same cell. Furthermore, studies have shown that tubular NEIs contain a Ca
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