| Literature DB >> 25825494 |
Li Jiang1, Yuxiao Wei2, Cecinio C Ronquillo2, Robert E Marc2, Bradley K Yoder3, Jeanne M Frederick2, Wolfgang Baehr4.
Abstract
Anterograde intraflagellar transport (IFT) employing kinesin-2 molecular motors has been implicated in trafficking of photoreceptor outer segment proteins. We generated embryonic retina-specific (prefix "emb") and adult tamoxifen-induced (prefix "tam") deletions of KIF3a and IFT88 in adult mice to study photoreceptor ciliogenesis and protein trafficking. In (emb)Kif3a(-/-) and in (emb)Ift88(-/-) mice, basal bodies failed to extend transition zones (connecting cilia) with outer segments, and visual pigments mistrafficked. In contrast, (tam)Kif3a(-/-) and (tam)Ift88(-/-) photoreceptor axonemes disintegrated slowly post-induction, starting distally, but rhodopsin and cone pigments trafficked normally for more than 2 weeks, a time interval during which the outer segment is completely renewed. The results demonstrate that visual pigments transport to the retinal outer segment despite removal of KIF3 and IFT88, and KIF3-mediated anterograde IFT is responsible for photoreceptor transition zone and axoneme formation.Entities:
Keywords: IFT88; KIF3A; anterograde intraflagellar transport (IFT); cilia; conditional IFT88 knockout; conditional KIF3A knockout; gene knockout; heterotrimeric kinesin-2; homologous recombination; intraflagellar transport; photoreceptor; retinal degeneration
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Year: 2015 PMID: 25825494 PMCID: PMC4432293 DOI: 10.1074/jbc.M115.638437
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157