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PMID: 9763516 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Transport of ER vesicles on actin filaments in neurons by myosin V.

Journal of cell science ·Vol. 111 ( Pt 21) ·1998-11-00 ·Pages 3221-34

Tabb JS, Molyneaux BJ, Cohen DL, Kuznetsov SA, Langford GM

Abstract

Axoplasmic organelles in the giant axon of the squid have been shown to move on both actin filaments and microtubules and to switch between actin filaments and microtubules during fast axonal transport. The objectives of this investigation were to identify the specific classes of axoplasmic organelles that move on actin filaments and the myosin motors involved. We developed a procedure to isolate endoplasmic reticulum (ER) from extruded axoplasm and to reconstitute its movement in vitro. The isolated ER vesicles moved on exogenous actin filaments adsorbed to coverslips in an ATP-dependent manner without the addition of soluble factors. Therefore myosin was tightly bound and not extracted during isolation. These vesicles were identified as smooth ER by use of an antibody to an ER-resident protein, ERcalcistorin/protein disulfide isomerase (EcaSt/PDI). Furthermore, an antibody to squid myosin V was used in immunogold EM studies to show that myosin V localized to these vesicles. The antibody was generated to a squid brain myosin (p196) that was classified as myosin V based on comparisons of amino acid sequences of tryptic peptides of this myosin with those of other known members of the myosin V family. Dual labeling with the squid myosin V antibody and a kinesin heavy chain antibody showed that the two motors colocalized on the same vesicles. Finally, antibody inhibition experiments were performed with two myosin V-specific antibodies to show that myosin V motor activity is required for transport of vesicles on actin filaments in axoplasm. One antibody was made to a peptide in the globular tail domain and the other to the globular head fragment of myosin V. Both antibodies inhibited vesicle transport on actin filaments by greater than 90% compared to controls. These studies provide the first direct evidence that ER vesicles are transported on actin filaments by myosin V. These data confirm the role of actin filaments in fast axonal transport and provide support for the dual filament model of vesicle transport.

MeSH Terms
Actin Cytoskeleton/physiology Actins/physiology Adenosine Triphosphate/metabolism Amino Acid Sequence Animals Antibodies, Monoclonal/immunology Biological Transport, Active Biomarkers Calcium-Binding Proteins/immunology Decapodiformes Egg Proteins Endoplasmic Reticulum, Smooth/metabolism Models, Biological Molecular Motor Proteins Molecular Sequence Data Myosins/physiology Nerve Tissue Proteins/immunology,isolation & purification,physiology Neurons/metabolism Optic Lobe, Nonmammalian/chemistry Protein Isoforms/physiology Sequence Alignment Sequence Homology, Amino Acid Species Specificity
Chemicals
Actins Antibodies, Monoclonal Biomarkers Calcium-Binding Proteins ERcalcistorin protein, Strongylocentrotus purpuratus Egg Proteins Molecular Motor Proteins Nerve Tissue Proteins Protein Isoforms Adenosine Triphosphate Myosins
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Tabb J S
Department of Biological Sciences, Dartmouth College, Hanover, NH 03755-3576, USA.
Molyneaux B J
Cohen D L
Kuznetsov S A
Langford G M
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
0021-9533
Published
1998-11-00
Pages
3221-34
Language
English
Region
England
NLM ID
0052457
Subset
IM
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