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The dynamin-like protein DLP1 is essential for normal distribution and morphology of the endoplasmic reticulum and mitochondria in mammalian cells

  • K. R. Pitts
    ,
  • Y. Yoon
    ,
  • E. W. Krueger
    ,
  • M. A. McNiven(corresponding author)
*Corresponding author for this work
  • Mayo Clinic College of Medicine and Science
Scholary Output:
Contribution to journal
Article
Peer-review

Abstract

The dynamin family of large GTPases has been implicated in vesicle formation from both the plasma membrane and various intracellular membrane compartments. The dynamin-like protein DLP1, recently identified in mammalian tissues, has been shown to be more closely related to the yeast dynamin proteins Vps1p and Dnm1p (42%) than to the mammalian dynamins (37%). Furthermore, DLP1 has been shown to associate with punctate vesicles that are in intimate contact with microtubules and the endoplasmic reticulum (ER) in mammalian cells. To define the function of DLP1, we have transiently expressed both wild-type and two mutant DLP1 proteins, tagged with green fluorescent protein, in cultured mammalian cells. Point mutations in the GTP- binding domain of DLP1 (K38A and D231N) dramatically changed its intracellular distribution from punctate vesicular structures to either an aggregated or a diffuse pattern. Strikingly, cells expressing DLP1 mutants or microinjected with DLP1 antibodies showed a marked reduction in ER fluorescence and a significant aggregation and tubulation of mitochondria by immunofluorescence microscopy. Consistent with these observations, electron microscopy of DLP1 mutant cells revealed a striking and quantitative change in the distribution and morphology of mitochondria and the ER. These data support very recent studies by other authors implicating DLP1 in the maintenance of mitochondrial morphology in both yeast and mammalian cells. Furthermore, this study provides the first evidence that a dynamin family member participates in the maintenance and distribution of the ER. How DLP1 might participate in the biogenesis of two presumably distinct organelle systems is discussed.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 4403-4417 (15 pages)

Journal (Volume, Issue Number)

Molecular Biology of the Cell (Volume 10, Issue 12)

Publication milestones

  • Published - 12/1999

Publication status

Published - 12/1999

ISSN

1059-1524

Publication IDs

  • Scopus: 0032734577
  • PubMed: 10588666
  • ORCID: /0000-0002-1618-5439/work/71658399

Publication metrics

Metrics

Scopus
citations
SciVal
citations
240
Fractional count
1
Fractional count
0.25
Fractional count
3
Fractional count
0.75
Fractional count
1
Fractional count
1
SciVal
FWCI
1.38
SciVal
Author count
4
SciVal
Paper percentile
98
SciVal
Top percentile
5

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Captures
175
Citation count
284

Funding Details

FunderFunding number
NIDDK
R37DK044650