Kif3a guides microtubular dynamics, migration and lumen formation of MDCK cells
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Author
Contributions
- Kotsis, Fruzsina 1978- Verfasser - Contributor
- Buchholz, Björn 1978- Verfasser - Contributor
- Powelske, Christian Verfasser - Contributor
- Walz, Gerd 1957- Verfasser - Contributor
- Nitschke, Roland Verfasser - Contributor
and 7 more
- Verfasser - Contributor
- Klinik für Innere Medizin IV - Contributor
- Albert-Ludwigs-Universität Freiburg Centre for Biological Signalling Studies - Contributor
- Zentrum für Biosystemanalyse - Contributor
- Albert-Ludwigs-Universität Freiburg Medizinische Fakultät - Contributor
- Albert-Ludwigs-Universität Freiburg Fakultät für Biologie - Contributor
- Albert-Ludwigs-Universität Freiburg - Contributor
Publication
2013 - Universität, Freiburg, Germany
Language
English
Word Count
0 words, Guess
Page Count
0 pages
Identifiers
- OCLC Control Number992999490
- Open LibraryOL37839516M
Classifications
- DDC616.079
Description
Abstract: The microtubular motor Kinesin-2 and its subunit Kif3a are essential for the formation of primary cilia, an organelle implicated in a wide spectrum of developmental abnormalities. Outside cilia, Kinesin-2 mediated transport has been implicated in vesicle and N-cadherin transport, but it is unknown if and how extraciliary Kif3a affects basic cellular functions such as migration or the formation of multicellular structures. Here we show that tetracycline inducible depletion of Kif3a in MDCK cells slows epithelial cell migration. Microtubules at the leading edge of Kif3a depleted cells failed to grow perpendicularly into the leading edge and microtubular dynamics were dampened in Kif3a depleted cells. Loss of Kif3a retarded lateral membrane specification and completely prevented the formation of three-dimensional spheres in collagen. These data uncover that Kif3a regulates the microtubular cytoskeleton in the cell periphery and imply that extra-ciliary Kif3a has an unexpected function in morphogenesis
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