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Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice

Flagella and cilia are evolutionarily conserved cellular organelles. Abnormal formation or motility of these organelles in humans causes several syndromic diseases termed ciliopathies. The central component of flagella and cilia is the axoneme that is composed of the ‘9+2’ microtubule arrangement, d...

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Autores principales: Morohoshi, Akane, Miyata, Haruhiko, Shimada, Keisuke, Nozawa, Kaori, Matsumura, Takafumi, Yanase, Ryuji, Shiba, Kogiku, Inaba, Kazuo, Ikawa, Masahito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994161/
https://www.ncbi.nlm.nih.gov/pubmed/31961863
http://dx.doi.org/10.1371/journal.pgen.1008585
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author Morohoshi, Akane
Miyata, Haruhiko
Shimada, Keisuke
Nozawa, Kaori
Matsumura, Takafumi
Yanase, Ryuji
Shiba, Kogiku
Inaba, Kazuo
Ikawa, Masahito
author_facet Morohoshi, Akane
Miyata, Haruhiko
Shimada, Keisuke
Nozawa, Kaori
Matsumura, Takafumi
Yanase, Ryuji
Shiba, Kogiku
Inaba, Kazuo
Ikawa, Masahito
author_sort Morohoshi, Akane
collection PubMed
description Flagella and cilia are evolutionarily conserved cellular organelles. Abnormal formation or motility of these organelles in humans causes several syndromic diseases termed ciliopathies. The central component of flagella and cilia is the axoneme that is composed of the ‘9+2’ microtubule arrangement, dynein arms, radial spokes, and the Nexin-Dynein Regulatory Complex (N-DRC). The N-DRC is localized between doublet microtubules and has been extensively studied in the unicellular flagellate Chlamydomonas. Recently, it has been reported that TCTE1 (DRC5), a component of the N-DRC, is essential for proper sperm motility and male fertility in mice. Further, TCTE1 has been shown to interact with FBXL13 (DRC6) and DRC7; however, functional roles of FBXL13 and DRC7 in mammals have not been elucidated. Here we show that Fbxl13 and Drc7 expression are testes-enriched in mice. Although Fbxl13 knockout (KO) mice did not show any obvious phenotypes, Drc7 KO male mice were infertile due to their short immotile spermatozoa. In Drc7 KO spermatids, the axoneme is disorganized and the ‘9+2’ microtubule arrangement was difficult to detect. Further, other N-DRC components fail to incorporate into the flagellum without DRC7. These results indicate that Drc7, but not Fbxl13, is essential for the correct assembly of the N-DRC and flagella.
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spelling pubmed-69941612020-02-18 Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice Morohoshi, Akane Miyata, Haruhiko Shimada, Keisuke Nozawa, Kaori Matsumura, Takafumi Yanase, Ryuji Shiba, Kogiku Inaba, Kazuo Ikawa, Masahito PLoS Genet Research Article Flagella and cilia are evolutionarily conserved cellular organelles. Abnormal formation or motility of these organelles in humans causes several syndromic diseases termed ciliopathies. The central component of flagella and cilia is the axoneme that is composed of the ‘9+2’ microtubule arrangement, dynein arms, radial spokes, and the Nexin-Dynein Regulatory Complex (N-DRC). The N-DRC is localized between doublet microtubules and has been extensively studied in the unicellular flagellate Chlamydomonas. Recently, it has been reported that TCTE1 (DRC5), a component of the N-DRC, is essential for proper sperm motility and male fertility in mice. Further, TCTE1 has been shown to interact with FBXL13 (DRC6) and DRC7; however, functional roles of FBXL13 and DRC7 in mammals have not been elucidated. Here we show that Fbxl13 and Drc7 expression are testes-enriched in mice. Although Fbxl13 knockout (KO) mice did not show any obvious phenotypes, Drc7 KO male mice were infertile due to their short immotile spermatozoa. In Drc7 KO spermatids, the axoneme is disorganized and the ‘9+2’ microtubule arrangement was difficult to detect. Further, other N-DRC components fail to incorporate into the flagellum without DRC7. These results indicate that Drc7, but not Fbxl13, is essential for the correct assembly of the N-DRC and flagella. Public Library of Science 2020-01-21 /pmc/articles/PMC6994161/ /pubmed/31961863 http://dx.doi.org/10.1371/journal.pgen.1008585 Text en © 2020 Morohoshi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Morohoshi, Akane
Miyata, Haruhiko
Shimada, Keisuke
Nozawa, Kaori
Matsumura, Takafumi
Yanase, Ryuji
Shiba, Kogiku
Inaba, Kazuo
Ikawa, Masahito
Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title_full Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title_fullStr Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title_full_unstemmed Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title_short Nexin-Dynein regulatory complex component DRC7 but not FBXL13 is required for sperm flagellum formation and male fertility in mice
title_sort nexin-dynein regulatory complex component drc7 but not fbxl13 is required for sperm flagellum formation and male fertility in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994161/
https://www.ncbi.nlm.nih.gov/pubmed/31961863
http://dx.doi.org/10.1371/journal.pgen.1008585
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