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A-type and B-type lamins initiate layer assembly at distinct areas of the nuclear envelope in living cells

  • Kazuhiro Furukawa
  • , Kazuya Ishida
  • , Taka aki Tsunoyama
  • , Suguru Toda
  • , Shinichi Osoda
  • , Tsuneyoshi Horigome
  • , Paul A. Fisher
  • , Shin Sugiyama
  • Niigata University
  • Nagoya University

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

To investigate nuclear lamina re-assembly in vivo, Drosophila A-type and B-type lamins were artificially expressed in Drosophila lamin Dm0 null mutant brain cells. Both exogenous lamin C (A-type) and Dm0 (B-type) formed sub-layers at the nuclear periphery, and efficiently reverted the abnormal clustering of the NPC. Lamin C initially appeared where NPCs were clustered, and subsequently extended along the nuclear periphery accompanied by the recovery of the regular distribution of NPCs. In contrast, lamin Dm0 did not show association with the clustered NPCs during lamina formation and NPC spacing recovered only after completion of a closed lamin Dm0 layer. Further, when lamin Dm0 and C were both expressed, they did not co-polymerize, initiating layer formation in separate regions. Thus, A and B-type lamins reveal differing properties during lamina assembly, with A-type having the primary role in organizing NPC distribution. This previously unknown complexity in the assembly of the nuclear lamina could be the basis for intricate nuclear envelope functions.

Original languageEnglish
Pages (from-to)1181-1189
Number of pages9
JournalExperimental Cell Research
Volume315
Issue number7
DOIs
StatePublished - Apr 15 2009

Keywords

  • A-type lamin
  • B-type lamin
  • Nuclear envelope
  • Nuclear lamina
  • Nuclear pore complexes

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