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      Lessons from Keratin 18 Knockout Mice: Formation of Novel Keratin Filaments, Secondary Loss of Keratin 7 and Accumulation of Liver-specific Keratin 8-Positive Aggregates

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          Abstract

          Here, we report on the analysis of keratin 18 null mice. Unlike the ablation of K8, which together with K18 is expressed in embryonic and simple adult epithelia, K18 null mice are viable, fertile, and show a normal lifespan. In young K18 null mice, hepatocytes were completely devoid of keratin filaments. Nevertheless, typical desmosomes were formed and maintained. Old K18 null mice, however, developed a distinctive liver pathology with abnormal hepatocytes containing K8-positive aggregates. These stained positively for ubiquitin and M M120-1 and were identified as Mallory bodies, one hallmark of human alcoholic hepatitis. This is the first demonstration that the ablation of one keratin leads to the accumulation of its single partner. Another striking finding was the absence or drastic down regulation of K7 in several tissues despite its ongoing transcription. Moreover, K18 null mice revealed new insights in the filament-forming capacity of the tail-less K19 in vivo. Due to the unexpected secondary loss of K7, only K8/19 are expressed in the uterine epithelium of K18 null mice. Immunoelectron microscopy of this tissue demonstrated the presence of typical K8/19 IF, thus highlighting in vivo that K19 is a fully competent partner for K8.

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          Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction.

          A new method of total RNA isolation by a single extraction with an acid guanidinium thiocyanate-phenol-chloroform mixture is described. The method provides a pure preparation of undegraded RNA in high yield and can be completed within 4 h. It is particularly useful for processing large numbers of samples and for isolation of RNA from minute quantities of cells or tissue samples.
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            • Record: found
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            The catalog of human cytokeratins: patterns of expression in normal epithelia, tumors and cultured cells.

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              • Record: found
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              • Article: not found

              The ubiquitin system for protein degradation.

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                Author and article information

                Journal
                J Cell Biol
                The Journal of Cell Biology
                The Rockefeller University Press
                0021-9525
                1540-8140
                23 March 1998
                : 140
                : 6
                : 1441-1451
                Affiliations
                [* ]Institut fuer Genetik, Abteilung Molekulargenetik, []Bonner Forum Biomedizin, [§ ]Neurologische Klinik und Poliklinik, Universitaet Bonn, 53117 Bonn, Germany; []Institute of Cell and Molecular Biology, University of Edinburgh, Edinburgh EH9 3JR, United Kingdom; []Institut fuer Pathologie, Universitaet Graz, A-8036 Graz, Austria; [** ]Abteilung fuer Zellbiologie, Deutsches Krebsforschungszentrum, 69120 Heidelberg, Germany
                Article
                10.1083/jcb.140.6.1441
                2132680
                9508776
                0e0d9c84-6f4b-4036-a283-bb53255ab68f
                Copyright @ 1998
                History
                : 3 September 1997
                : 15 January 1998
                Categories
                Article

                Cell biology
                Cell biology

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