Literature DB >> 16339073

Rootletin interacts with C-Nap1 and may function as a physical linker between the pair of centrioles/basal bodies in cells.

Jun Yang1, Michael Adamian, Tiansen Li.   

Abstract

Rootletin, a major structural component of the ciliary rootlet, is located at the basal bodies and centrosomes in ciliated and nonciliated cells, respectively. Here we investigated its potential role in the linkage of basal bodies/centrioles and the mechanism involved in such linkages. We show that rootletin interacts with C-Nap1, a protein restricted at the ends of centrioles and functioning in centrosome cohesion in interphase cells. Their interaction in vivo is supported by their colocalization at the basal bodies/centrioles and coordinated association with the centrioles during the cell cycle. Ultrastructural examinations demonstrate that rootletin fibers connect the basal bodies in ciliated cells and are present both at the ends of and in between the pair of centrioles in nonciliated cells. The latter finding stands in contrast with C-Nap1, which is present only at the ends of the centrioles. Transient expression of C-Nap1 fragments dissociated rootletin fibers from the centrioles, resulting in centrosome separation in interphase. Overexpression of rootletin in cells caused multinucleation, micronucleation, and irregularity of nuclear shape and size, indicative of defects in chromosome separation. These data suggest that rootletin may function as a physical linker between the pair of basal bodies/centrioles by binding to C-Nap1.

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Year:  2005        PMID: 16339073      PMCID: PMC1356609          DOI: 10.1091/mbc.e05-10-0943

Source DB:  PubMed          Journal:  Mol Biol Cell        ISSN: 1059-1524            Impact factor:   4.138


  20 in total

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8.  The respective contributions of the mother and daughter centrioles to centrosome activity and behavior in vertebrate cells.

Authors:  M Piel; P Meyer; A Khodjakov; C L Rieder; M Bornens
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9.  Rootletin, a novel coiled-coil protein, is a structural component of the ciliary rootlet.

Authors:  Jun Yang; Xiaoqing Liu; Guohua Yue; Michael Adamian; Oleg Bulgakov; Tiansen Li
Journal:  J Cell Biol       Date:  2002-11-11       Impact factor: 10.539

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  67 in total

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7.  Chronic Exposure to Particulate Chromate Induces Premature Centrosome Separation and Centriole Disengagement in Human Lung Cells.

Authors:  Julieta Martino; Amie L Holmes; Hong Xie; Sandra S Wise; John Pierce Wise
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8.  Centriolar association of ALMS1 and likely centrosomal functions of the ALMS motif-containing proteins C10orf90 and KIAA1731.

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9.  C-NAP1 and rootletin restrain DNA damage-induced centriole splitting and facilitate ciliogenesis.

Authors:  Pauline C Conroy; Chiara Saladino; Tiago J Dantas; Pierce Lalor; Peter Dockery; Ciaran G Morrison
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10.  Insights into the conformational variability and regulation of human Nek2 kinase.

Authors:  Isaac Westwood; Donna-Marie Cheary; Joanne E Baxter; Mark W Richards; Rob L M van Montfort; Andrew M Fry; Richard Bayliss
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