Literature DB >> 19386764

Specificity of cytoplasmic dynein subunits in discrete membrane-trafficking steps.

Krysten J Palmer1, Helen Hughes, David J Stephens.   

Abstract

The cytoplasmic dynein motor complex is known to exist in multiple forms, but few specific functions have been assigned to individual subunits. A key limitation in the analysis of dynein in intact mammalian cells has been the reliance on gross perturbation of dynein function, e.g., inhibitory antibodies, depolymerization of the entire microtubule network, or the use of expression of dominant negative proteins that inhibit dynein indirectly. Here, we have used RNAi and automated image analysis to define roles for dynein subunits in distinct membrane-trafficking processes. Depletion of a specific subset of dynein subunits, notably LIC1 (DYNC1LI1) but not LIC2 (DYNC1LI2), recapitulates a direct block of ER export, revealing that dynein is required to maintain the steady-state composition of the Golgi, through ongoing ER-to-Golgi transport. Suppression of LIC2 but not of LIC1 results in a defect in recycling endosome distribution and cytokinesis. Biochemical analyses also define the role of each subunit in stabilization of the dynein complex; notably, suppression of DHC1 or IC2 results in concomitant loss of Tctex1. Our data demonstrate that LIC1 and LIC2 define distinct dynein complexes that function at the Golgi versus recycling endosomes, respectively, suggesting that functional populations of dynein mediate discrete intracellular trafficking pathways.

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Year:  2009        PMID: 19386764      PMCID: PMC2695796          DOI: 10.1091/mbc.e08-12-1160

Source DB:  PubMed          Journal:  Mol Biol Cell        ISSN: 1059-1524            Impact factor:   4.138


  62 in total

1.  The Roadblock light chains are ubiquitous components of cytoplasmic dynein that form homo- and heterodimers.

Authors:  Karina Nikulina; Ramila S Patel-King; Sachiko Takebe; K Kevin Pfister; Stephen M King
Journal:  Cell Motil Cytoskeleton       Date:  2004-04

2.  Dynein light intermediate chain 1 is required for progress through the spindle assembly checkpoint.

Authors:  Mylavarapu V S Sivaram; Thomas L Wadzinski; Sambra D Redick; Tapas Manna; Stephen J Doxsey
Journal:  EMBO J       Date:  2009-02-19       Impact factor: 11.598

3.  Cytoplasmic dynein is localized to kinetochores during mitosis.

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Journal:  Nature       Date:  1990-05-17       Impact factor: 49.962

Review 4.  Microtubules and the organization of the Golgi complex.

Authors:  J Thyberg; S Moskalewski
Journal:  Exp Cell Res       Date:  1985-07       Impact factor: 3.905

5.  Cytoplasmic dynein is a minus end-directed motor for membranous organelles.

Authors:  T A Schroer; E R Steuer; M P Sheetz
Journal:  Cell       Date:  1989-03-24       Impact factor: 41.582

6.  The membrane spanning domain of beta-1,4-galactosyltransferase specifies trans Golgi localization.

Authors:  T Nilsson; J M Lucocq; D Mackay; G Warren
Journal:  EMBO J       Date:  1991-12       Impact factor: 11.598

7.  Cytoplasmic dynein-dependent vesicular transport from early to late endosomes.

Authors:  F Aniento; N Emans; G Griffiths; J Gruenberg
Journal:  J Cell Biol       Date:  1993-12       Impact factor: 10.539

8.  Cytoplasmic dynein participates in the centrosomal localization of the Golgi complex.

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Journal:  J Cell Biol       Date:  1992-09       Impact factor: 10.539

9.  Characterization of a cis-Golgi matrix protein, GM130.

Authors:  N Nakamura; C Rabouille; R Watson; T Nilsson; N Hui; P Slusarewicz; T E Kreis; G Warren
Journal:  J Cell Biol       Date:  1995-12       Impact factor: 10.539

10.  Dynactin, a conserved, ubiquitously expressed component of an activator of vesicle motility mediated by cytoplasmic dynein.

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Journal:  J Cell Biol       Date:  1991-12       Impact factor: 10.539

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  59 in total

1.  Endosomal recycling regulation during cytokinesis.

Authors:  Erkang Ai; Ahna R Skop
Journal:  Commun Integr Biol       Date:  2009-09

Review 2.  Golgi positioning.

Authors:  Smita Yadav; Adam D Linstedt
Journal:  Cold Spring Harb Perspect Biol       Date:  2011-05-01       Impact factor: 10.005

3.  POPX2 phosphatase regulates cell polarity and centrosome placement.

Authors:  Jing-Ling Hoon; Hoi-Yeung Li; Cheng-Gee Koh
Journal:  Cell Cycle       Date:  2014       Impact factor: 4.534

4.  Golgin160 recruits the dynein motor to position the Golgi apparatus.

Authors:  Smita Yadav; Manojkumar A Puthenveedu; Adam D Linstedt
Journal:  Dev Cell       Date:  2012-07-17       Impact factor: 12.270

5.  Cdc42 regulates microtubule-dependent Golgi positioning.

Authors:  Heidi Hehnly; Weidong Xu; Ji-Long Chen; Mark Stamnes
Journal:  Traffic       Date:  2010-05-26       Impact factor: 6.215

6.  Photocleavable dimerizer for the rapid reversal of molecular trap antagonists.

Authors:  Shubbir Ahmed; Jun Xie; David Horne; John C Williams
Journal:  J Biol Chem       Date:  2014-01-13       Impact factor: 5.157

7.  Microtubules are required for efficient epithelial tight junction homeostasis and restoration.

Authors:  Lila G Glotfelty; Anita Zahs; Catalin Iancu; Le Shen; Gail A Hecht
Journal:  Am J Physiol Cell Physiol       Date:  2014-06-11       Impact factor: 4.249

Review 8.  'Life is a highway': membrane trafficking during cytokinesis.

Authors:  Heather F McKay; David R Burgess
Journal:  Traffic       Date:  2010-11-24       Impact factor: 6.215

9.  Dynein light intermediate chain in Aspergillus nidulans is essential for the interaction between heavy and intermediate chains.

Authors:  Jun Zhang; Shihe Li; Shamsideen Musa; Henry Zhou; Xin Xiang
Journal:  J Biol Chem       Date:  2009-10-16       Impact factor: 5.157

10.  Specific functions of BIG1 and BIG2 in endomembrane organization.

Authors:  Frédéric Boal; David J Stephens
Journal:  PLoS One       Date:  2010-03-25       Impact factor: 3.240

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