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PMID: 9298976 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Nuclear membrane dynamics and reassembly in living cells: targeting of an inner nuclear membrane protein in interphase and mitosis.

The Journal of cell biology ·Vol. 138 ·No. 6 ·1997-09-22 ·Pages 1193-206

Ellenberg J, Siggia ED, Moreira JE, Smith CL, Presley JF, Worman HJ, Lippincott-Schwartz J

Abstract

The mechanisms of localization and retention of membrane proteins in the inner nuclear membrane and the fate of this membrane system during mitosis were studied in living cells using the inner nuclear membrane protein, lamin B receptor, fused to green fluorescent protein (LBR-GFP). Photobleaching techniques revealed the majority of LBR-GFP to be completely immobilized in the nuclear envelope (NE) of interphase cells, suggesting a tight binding to heterochromatin and/or lamins. A subpopulation of LBR-GFP within ER membranes, by contrast, was entirely mobile and diffused rapidly and freely (D = 0. 41 +/- 0.1 microm2/s). High resolution confocal time-lapse imaging in mitotic cells revealed LBR-GFP redistributing into the interconnected ER membrane system in prometaphase, exhibiting the same high mobility and diffusion constant as observed in interphase ER membranes. LBR-GFP rapidly diffused across the cell within the membrane network defined by the ER, suggesting the integrity of the ER was maintained in mitosis, with little or no fragmentation and vesiculation. At the end of mitosis, nuclear membrane reformation coincided with immobilization of LBR-GFP in ER elements at contact sites with chromatin. LBR-GFP-containing ER membranes then wrapped around chromatin over the course of 2-3 min, quickly and efficiently compartmentalizing nuclear material. Expansion of the NE followed over the course of 30-80 min. Thus, selective changes in lateral mobility of LBR-GFP within the ER/NE membrane system form the basis for its localization to the inner nuclear membrane during interphase. Such changes, rather than vesiculation mechanisms, also underlie the redistribution of this molecule during NE disassembly and reformation in mitosis.

MeSH Terms
Animals COS Cells DNA/analysis Endoplasmic Reticulum/chemistry,metabolism,ultrastructure Fluorescent Dyes Gene Expression/physiology Green Fluorescent Proteins Interphase/physiology Kinetics Luminescent Proteins Microscopy, Electron Mitosis/physiology Nuclear Envelope/chemistry,metabolism,ultrastructure Receptors, Cytoplasmic and Nuclear/analysis,genetics,metabolism
Chemicals
Fluorescent Dyes Luminescent Proteins Receptors, Cytoplasmic and Nuclear lamin B receptor Green Fluorescent Proteins DNA
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Ellenberg J
Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, National Institutes of Health (NIH), Bethesda, Maryland 20892, USA.
Siggia E D
Moreira J E
Smith C L
Presley J F
Worman H J
Lippincott-Schwartz J
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Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1997-09-22
Pages
1193-206
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2132565
Subset
IM
Grants
NCI NIH HHS · R01-CA66974 · United States
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