Protein phosphatase inhibition in normal and keratin 8/18 assembly-incompetent mouse strains supports a functional role of keratin intermediate filaments in preserving hepatocyte integrity
Open Access
- 1 July 1998
- journal article
- research article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 28 (1) , 116-128
- https://doi.org/10.1002/hep.510280117
Abstract
The function and regulation of keratin 8 (K8) and 18 (K18), intermediate filament (IF) proteins of the liver, are not fully understood. We employed the liver damage induced by microcystin-LR (MC-LR), a liver-specific inhibitor of type-1 and type-2A protein phosphatases, in normal and in keratin assembly-incompetent mouse strains as a model to elucidate the roles of IF phosphorylation in situ. The mouse strains used were wild-type (wt) mice and mice with abnormal filament assembly, caused by a targeted null mutation of the K8 gene or caused by expression of a point-mutated dominant negative human K18. In vivo 32P-labeled wt mice, subsequently injected with a lethal dose of MC-LR, showed hyperphosphorylation, disassembly, and reorganization of K8/K18, in particular K18, indicating high phosphate turnover on liver keratins in situ. At lethal doses, the keratin assembly-incompetent mice displayed liver lesions faster than wt mice, as indicated histopathologically and by liver-specific plasma enzyme elevations. The histological changes included centrilobular hemorrhage in all mouse strains. The assembly-incompetent mice showed a marked vacuolization of periportal hepatocytes. Indistinguishable MC-LR-induced reorganization of microfilaments was observed in all mice, indicating that this effect on microfilaments is not dependent on the presence of functional K8/K18 networks. At sublethal doses of MC-LR, all animals had the same potential to recover from the liver damage. Our study shows that K8/K18 filament assembly is regulated in vivo by serine phosphorylation. The absence or occurrence of defective K8/K18 filaments render animals more prone to liver damage, which supports the previously suggested roles of keratin IFs in maintenance of structural integrity.Keywords
This publication has 56 references indexed in Scilit:
- A Structural Scaffolding of Intermediate Filaments in Health and DiseaseScience, 1998
- Mutations in cornea-specific keratin K3 or K12 genes cause Meesmann's corneal dystrophyNature Genetics, 1997
- Keith R. Porter Lecture, 1996. Of mice and men: genetic disorders of the cytoskeleton.Molecular Biology of the Cell, 1997
- Plectin sidearms mediate interaction of intermediate filaments with microtubules and other components of the cytoskeleton.The Journal of cell biology, 1996
- An Essential Cytoskeletal Linker Protein Connecting Actin Microfilaments to Intermediate FilamentsPublished by Elsevier ,1996
- The function of intermediate filaments in cell shape and cytoskeletal integrity.The Journal of cell biology, 1996
- Intermediate filaments in diseaseCurrent Opinion in Cell Biology, 1995
- Cytokeratin expression, fibrillar organization, and subtle function in liver cellsBiochemistry and Cell Biology, 1995
- Cytokeratins and the liverLiver International, 1993
- Intermediate filaments as mechanical integrators of cellular spaceNature, 1980