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DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility

The nexin–dynein regulatory complex (N-DRC) plays a central role in the regulation of ciliary and flagellar motility. In most species, the N-DRC contains at least 11 subunits, but the specific function of each subunit is unknown. Mutations in three subunits (DRC1, DRC2/CCDC65, DRC4/GAS8) have been l...

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Autores principales: Bower, Raqual, Tritschler, Douglas, Mills, Kristyn VanderWaal, Heuser, Thomas, Nicastro, Daniela, Porter, Mary E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5909927/
https://www.ncbi.nlm.nih.gov/pubmed/29167384
http://dx.doi.org/10.1091/mbc.E17-08-0510
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author Bower, Raqual
Tritschler, Douglas
Mills, Kristyn VanderWaal
Heuser, Thomas
Nicastro, Daniela
Porter, Mary E.
author_facet Bower, Raqual
Tritschler, Douglas
Mills, Kristyn VanderWaal
Heuser, Thomas
Nicastro, Daniela
Porter, Mary E.
author_sort Bower, Raqual
collection PubMed
description The nexin–dynein regulatory complex (N-DRC) plays a central role in the regulation of ciliary and flagellar motility. In most species, the N-DRC contains at least 11 subunits, but the specific function of each subunit is unknown. Mutations in three subunits (DRC1, DRC2/CCDC65, DRC4/GAS8) have been linked to defects in ciliary motility in humans and lead to a ciliopathy known as primary ciliary dyskinesia (PCD). Here we characterize the biochemical, structural, and motility phenotypes of two mutations in the DRC2 gene of Chlamydomonas. Using high-resolution proteomic and structural approaches, we find that the C-terminal region of DRC2 is critical for the coassembly of DRC2 and DRC1 to form the base plate of N-DRC and its attachment to the outer doublet microtubule. Loss of DRC2 in drc2 mutants disrupts the assembly of several other N-DRC subunits and also destabilizes the assembly of several closely associated structures such as the inner dynein arms, the radial spokes, and the calmodulin- and spoke-associated complex. Our study provides new insights into the range of ciliary defects that can lead to PCD.
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spelling pubmed-59099272018-04-27 DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility Bower, Raqual Tritschler, Douglas Mills, Kristyn VanderWaal Heuser, Thomas Nicastro, Daniela Porter, Mary E. Mol Biol Cell Articles The nexin–dynein regulatory complex (N-DRC) plays a central role in the regulation of ciliary and flagellar motility. In most species, the N-DRC contains at least 11 subunits, but the specific function of each subunit is unknown. Mutations in three subunits (DRC1, DRC2/CCDC65, DRC4/GAS8) have been linked to defects in ciliary motility in humans and lead to a ciliopathy known as primary ciliary dyskinesia (PCD). Here we characterize the biochemical, structural, and motility phenotypes of two mutations in the DRC2 gene of Chlamydomonas. Using high-resolution proteomic and structural approaches, we find that the C-terminal region of DRC2 is critical for the coassembly of DRC2 and DRC1 to form the base plate of N-DRC and its attachment to the outer doublet microtubule. Loss of DRC2 in drc2 mutants disrupts the assembly of several other N-DRC subunits and also destabilizes the assembly of several closely associated structures such as the inner dynein arms, the radial spokes, and the calmodulin- and spoke-associated complex. Our study provides new insights into the range of ciliary defects that can lead to PCD. The American Society for Cell Biology 2018-01-15 /pmc/articles/PMC5909927/ /pubmed/29167384 http://dx.doi.org/10.1091/mbc.E17-08-0510 Text en © 2018 Bower et al. “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society for Cell Biology. http://creativecommons.org/licenses/by-nc-sa/3.0/ This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License.
spellingShingle Articles
Bower, Raqual
Tritschler, Douglas
Mills, Kristyn VanderWaal
Heuser, Thomas
Nicastro, Daniela
Porter, Mary E.
DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title_full DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title_fullStr DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title_full_unstemmed DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title_short DRC2/CCDC65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
title_sort drc2/ccdc65 is a central hub for assembly of the nexin–dynein regulatory complex and other regulators of ciliary and flagellar motility
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5909927/
https://www.ncbi.nlm.nih.gov/pubmed/29167384
http://dx.doi.org/10.1091/mbc.E17-08-0510
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