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1.
Eur J Cell Biol ; 53(1): 59-74, 1990 Oct.
Article in English | MEDLINE | ID: mdl-2076709

ABSTRACT

Immunocytochemistry of eye lens cells from transgenic mice coexpressing desmin and vimentin reveals that the transgenic desmin expression is not uniform. In the same lens, some epithelial and fiber cells overexpress desmin, while in others the desmin gene seems to be silent. Conversely, the endogenous vimentin is always expressed. The concomitant expression of vimentin and desmin results in the assembly of hybrid intermediate filaments (IFs). Moreover, the overexpression of the transgene generates pleomorphic IF assembly and leads to intermingled filamentous whorls and to accumulation of amorphous desmin. The abnormalities of IF assembly induced by the genetic manipulation are correlated with perturbation of the enucleation process in the lens fibers, changes in cell shape, fiber fusion and extensive internalization of the general plasma membrane and junctional domains. The alterations of lens cells described in this study were observed in all transgenic mice examined. The level of expression of the transgene was paralleled by the degree of damage. Our results indicate that proper expression, assembly and membrane interaction of IFs play an important role in the terminal differentiation of the lenticular epithelium into fiber cells. We anticipate that alterations during these processes may initiate cataract formation.


Subject(s)
Cell Membrane/metabolism , Desmin/biosynthesis , Lens, Crystalline/metabolism , Animals , Cell Differentiation , Cell Membrane/chemistry , Cell Membrane/ultrastructure , Desmin/analysis , Desmin/genetics , Immunohistochemistry , Lens, Crystalline/chemistry , Lens, Crystalline/ultrastructure , Mice , Mice, Transgenic , Microscopy, Electron , Vimentin/analysis , Vimentin/biosynthesis , Vimentin/genetics
2.
J Cell Biol ; 108(3): 1009-24, 1989 Mar.
Article in English | MEDLINE | ID: mdl-2646305

ABSTRACT

The coding region of the hamster desmin gene was fused to the 5' flanking sequences of the hamster vimentin gene and introduced into the germ line of mice. The expression of this intermediate filament gene construct (pVDes) was analyzed at the RNA and protein level in transgenic mice as well as in fibroblast cell lines and primary hepatocyte cultures derived from these mice. In all transgenic mice, the pVDes-encoded protein was coexpressed with mouse vimentin in a tissue-specific fashion and was indistinguishable from normal hamster desmin. Culturing of transgenic hepatocytes induced desmin expression indicating that 3.2 kbp of the vimentin gene 5' region regulates both tissue-specific and tissue culture-induced intermediate filament protein expression. Immunohistochemical staining and double-label immunoelectron microscopy of cultured transgenic fibroblasts showed that the pVDes protein assembled into intermediate filaments which colocalized with the mouse vimentin filaments. Endogenous vimentin RNA levels were not influenced by high-level pVDes expression. The coexpression of desmin and vimentin in nonmuscle cells did not result in detectable developmental, morphological, or physiological abnormalities.


Subject(s)
Cytoskeleton/metabolism , Desmin/genetics , Gene Expression Regulation , Intermediate Filaments/metabolism , Liver/metabolism , Vimentin/genetics , Animals , Cell Line , Cells, Cultured , DNA, Recombinant , Desmin/biosynthesis , Fluorescent Antibody Technique , Mice , Mice, Transgenic , RNA, Messenger/genetics , Vimentin/biosynthesis
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