Essential Role of the Chaperonin CCT in Rod Outer Segment Biogenesis

被引:9
作者
Sinha, Satyabrata [1 ]
Belcastro, Marycharmain [1 ]
Datta, Poppy [2 ]
Seo, Seongjin [2 ,3 ]
Sokolov, Maxim [1 ]
机构
[1] W Virginia Univ, Dept Ophthalmol, Morgantown, WV 26506 USA
[2] Univ Iowa, Dept Ophthalmol & Visual Sci, Iowa City, IA USA
[3] W Virginia Univ, Dept Biochem, Morgantown, WV 26506 USA
基金
美国国家卫生研究院;
关键词
rods; chaperonin CCT; outer segments; Bardet-Biedl Syndrome; BBSome; EUKARYOTIC CHAPERONIN; CRYSTAL-STRUCTURE; PROTEIN; COMPLEX; MICROTUBULE; ACTIN; GENE; CILIOGENESIS; MUTATIONS; GAMMA;
D O I
10.1167/iovs.14-13889
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
PURPOSE. While some evidence suggests an essential role for the chaperonin containing t-complex protein 1 (CCT) in ciliogenesis, this function remains poorly understood mechanistically. We used transgenic mice, previously generated in our lab, and characterized by a genetically-induced suppression of CCT in rod photoreceptors as well as a malformation of the rod sensory cilia, the outer segments, to gain new insights into this underlying molecular mechanism. METHODS. The CCT activity in rod photoreceptors of mice was suppressed by overexpressing the chaperonin inhibitor, phosducin-like protein short, and the ensuing changes of cellular morphology were analyzed by light and electron microscopy. Protein expression levels were studied by fluorescent microscopy and Western blotting. RESULTS. Suppressing the chaperonin made the photoreceptors incompetent to build their outer segments. Specifically, the CCT-deficient rods appeared unable to expand the outer segment plasma membrane, and accommodate growth of this compartment. Seeking the molecular mechanisms underlying such a shortcoming, we found that the affected rods could not express normal levels of Bardet-Biedl Syndrome (BBS) proteins 2, 5, and 7 and, owing to that deficiency, were unable to assemble the BBSome, a multisubunit complex responsible for ciliary trafficking. A similar effect in response to the chaperonin suppression was also observed in cultured ciliated cells. CONCLUSIONS. Our data provide new evidence indicating the essential role of the chaperonin CCT in the biogenesis of vertebrate photoreceptor sensory cilia, and suggest that it may be due to the direct participation of the chaperonin in the posttranslational processing of selected BBS proteins and assembly of the BBSome.
引用
收藏
页码:3775 / 3784
页数:10
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