bioRxiv · 10.1101/2020.09.25.313296
LAP2alpha maintains a mobile and low assembly state of A-type lamins in the nuclear interior
Abstract
Lamins form stable filaments at the nuclear periphery in metazoans. Unlike B-type lamins, lamins A and C localize also in the nuclear interior, where they interact with lamin-associated polypeptide 2 alpha (LAP2). We show that lamin A in the nuclear interior is formed from newly expressed pre-lamin A during processing and from soluble mitotic mature lamins in a LAP2-independent manner. Binding of LAP2 to lamins A/C in the nuclear interior during interphase inhibits formation of higher order structures of lamin A/C in vitro and in vivo, keeping lamin A/C in a mobile low assembly state independent of lamin A/C S22 phosphorylation. Loss of LAP2 causes formation of larger, less mobile and biochemically stable lamin A/C structures in the nuclear interior, which reduce the mobility of chromatin. We propose that LAP2 is essential to maintain a mobile lamin A/C pool in the nuclear interior, which is required for proper nuclear functions.
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Naetar, N., Georgiou, K., Knapp, C., Bronshtein, I., Zier, E., Fichtinger, P., Dechat, T., Garini, Y., Foisner, R.. 2020-09-25. LAP2alpha maintains a mobile and low assembly state of A-type lamins in the nuclear interior. https://doi.org/10.1101/2020.09.25.313296
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