Differential organization of desmin and vimentin in muscle is due to differences in their head domains.
Open Access
- 15 July 1994
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 126 (2) , 445-456
- https://doi.org/10.1083/jcb.126.2.445
Abstract
In most myogenic systems, synthesis of the intermediate filament (IF) protein vimentin precedes the synthesis of the muscle-specific IF protein desmin. In the dorsal myotome of the Xenopus embryo, however, there is no preexisting vimentin filament system and desmin's initial organization is quite different from that seen in vimentin-containing myocytes (Cary and Klymkowsky, 1994. Differentiation. In press.). To determine whether the organization of IFs in the Xenopus myotome reflects features unique to Xenopus or is due to specific properties of desmin, we used the injection of plasmid DNA to drive the synthesis of vimentin or desmin in myotomal cells. At low levels of accumulation, exogenous vimentin and desmin both enter into the endogenous desmin system of the myotomal cell. At higher levels exogenous vimentin forms longitudinal IF systems similar to those seen in vimentin-expressing myogenic systems and massive IF bundles. Exogenous desmin, on the other hand, formed a reticular IF meshwork and non-filamentous aggregates. In embryonic epithelial cells, both vimentin and desmin formed extended IF networks. Vimentin and desmin differ most dramatically in their NH2-terminal "head" regions. To determine whether the head region was responsible for the differences in the behavior of these two proteins, we constructed plasmids encoding chimeric proteins in which the head of one was attached to the body of the other. In muscle, the vimentin head-desmin body (VDD) polypeptide formed longitudinal IFs and massive IF bundles like vimentin. The desmin head-vimentin body (DVV) polypeptide, on the other hand, formed IF meshworks and non-filamentous structures like desmin. In embryonic epithelial cells DVV formed a discrete filament network while VDD did not. Based on the behavior of these chimeric proteins, we conclude that the head domains of vimentin and desmin are structurally distinct and not interchangeable, and that the head domain of desmin is largely responsible for desmin's muscle-specific behaviors.Keywords
This publication has 58 references indexed in Scilit:
- Temperature-sensitive Intermediate Filament AssemblyJournal of Molecular Biology, 1993
- Intermediate filaments: regulation of gene expression and assemblyEuropean Journal of Biochemistry, 1993
- Ectopic synthesis of epidermal cytokeratins in pancreatic islet cells of transgenic mice interferes with cytoskeletal order and insulin production.The Journal of cell biology, 1993
- Assembly properties of dominant and recessive mutations in the small mouse neurofilament (NF-L) subunit.The Journal of cell biology, 1990
- Characterization of dominant and recessive assembly-defective mutations in mouse neurofilament NF-M.The Journal of cell biology, 1990
- Regulated expression of vimentin cDNA in cells in the presence and absence of a preexisting vimentin filament network.The Journal of cell biology, 1990
- Overexpression of the vimentin gene in transgenic mice inhibits normal lens cell differentiation.The Journal of cell biology, 1989
- Phosphorylation in vitro of vimentin by protein kinases A and C is restricted to the head domainEuropean Journal of Biochemistry, 1989
- Gamma actin, spectrin, and intermediate filament proteins colocalize with vinculin at costameres, myofibril‐to‐sarcolemma attachment sitesCell Motility, 1983
- Idiopathic postpartum cardiomyopathy: Report of a case with special reference to its ultrastructural changes in the myocardium as studied by endomyocardial biopsyAmerican Heart Journal, 1970