4.7 Article

Insights into the dynamic properties of keratin intermediate filaments in living epithelial cells

Journal

JOURNAL OF CELL BIOLOGY
Volume 153, Issue 3, Pages 503-516

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.153.3.503

Keywords

keratin; tonofibrils; squiggles; dynamics; motility

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Funding

  1. NIDCR NIH HHS [1 PO1 DE12328] Funding Source: Medline

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The properties of keratin intermediate filaments (IFs) have been studied after transfection with green fluorescent protein (GFP)-tagged K18 and/or K8 (type I/II IF proteins). GFP-K8 and -K18 become incorporated into tonofibrils, which are comprised of bundles of keratin Ifs. These tonofibrils exhibit a remarkably wide range of motile and dynamic activities. Fluorescence recovery after photobleaching (FRAP) analyses show that they recover their fluorescence slowly with a recovery t(1/2) of similar to 100 min. The movements of bleach zones during recovery show that closely spaced tonofibrils (<1 mum apart) often move at different rates and in different directions. Individual tonofibrils frequently change their shapes, and in some cases these changes appear as propagated waveforms along their long axes. In addition, short fibrils, termed keratin squiggles, are seen at the cell periphery where they move mainly towards the cell center. The motile properties of keratin Ifs are also compared with those of type III IFs (vimentin) in PtK2 cells. Intriguingly, the dynamic properties of keratin tonofibrils and squiggles are dramatically different from those of vimentin fibrils and squiggles within the same cytoplasmic regions. This suggests that there are different factors regulating the dynamic properties of different types of IFs within the same cytoplasmic regions.

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