Cargando…
A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel
With rare exception, ciliated cells entering mitosis lose their cilia, thereby freeing basal bodies to serve as centrosomes in the formation of high-fidelity mitotic spindles. Cilia can be lost by shedding or disassembly, but either way, it appears that the final release may be via a coordinated sev...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Genetics Society of America
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5068960/ https://www.ncbi.nlm.nih.gov/pubmed/27520959 http://dx.doi.org/10.1534/g3.116.034264 |
_version_ | 1782460872764948480 |
---|---|
author | Hilton, Laura K. Meili, Fabian Buckoll, Paul D. Rodriguez-Pike, Julie C. Choutka, Courtney P. Kirschner, Jaime A. Warner, Freda Lethan, Mette Garces, Fabian A. Qi, Jingnan Quarmby, Lynne M. |
author_facet | Hilton, Laura K. Meili, Fabian Buckoll, Paul D. Rodriguez-Pike, Julie C. Choutka, Courtney P. Kirschner, Jaime A. Warner, Freda Lethan, Mette Garces, Fabian A. Qi, Jingnan Quarmby, Lynne M. |
author_sort | Hilton, Laura K. |
collection | PubMed |
description | With rare exception, ciliated cells entering mitosis lose their cilia, thereby freeing basal bodies to serve as centrosomes in the formation of high-fidelity mitotic spindles. Cilia can be lost by shedding or disassembly, but either way, it appears that the final release may be via a coordinated severing of the nine axonemal outer doublet microtubules linking the basal body to the ciliary transition zone. Little is known about the mechanism or regulation of this important process. The stress-induced deflagellation response of Chlamydomonas provides a basis to identifying key players in axonemal severing. In an earlier screen we uncovered multiple alleles for each of three deflagellation genes, ADF1, FA1, and FA2. Products of the two FA genes localize to the site of axonemal severing and encode a scaffolding protein and a member of the NIMA-related family of ciliary-cell cycle kinases. The identity of the ADF1 gene remained elusive. Here, we report a new screen using a mutagenesis that yields point mutations in Chlamydomonas, an enhanced screening methodology, and whole genome sequencing. We isolated numerous new alleles of the three known genes, and one or two alleles each of at least four new genes. We identify ADF1 as a TRP ion channel, which we suggest may reside at the flagellar transition zone. |
format | Online Article Text |
id | pubmed-5068960 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Genetics Society of America |
record_format | MEDLINE/PubMed |
spelling | pubmed-50689602016-10-24 A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel Hilton, Laura K. Meili, Fabian Buckoll, Paul D. Rodriguez-Pike, Julie C. Choutka, Courtney P. Kirschner, Jaime A. Warner, Freda Lethan, Mette Garces, Fabian A. Qi, Jingnan Quarmby, Lynne M. G3 (Bethesda) Mutant Screen Report With rare exception, ciliated cells entering mitosis lose their cilia, thereby freeing basal bodies to serve as centrosomes in the formation of high-fidelity mitotic spindles. Cilia can be lost by shedding or disassembly, but either way, it appears that the final release may be via a coordinated severing of the nine axonemal outer doublet microtubules linking the basal body to the ciliary transition zone. Little is known about the mechanism or regulation of this important process. The stress-induced deflagellation response of Chlamydomonas provides a basis to identifying key players in axonemal severing. In an earlier screen we uncovered multiple alleles for each of three deflagellation genes, ADF1, FA1, and FA2. Products of the two FA genes localize to the site of axonemal severing and encode a scaffolding protein and a member of the NIMA-related family of ciliary-cell cycle kinases. The identity of the ADF1 gene remained elusive. Here, we report a new screen using a mutagenesis that yields point mutations in Chlamydomonas, an enhanced screening methodology, and whole genome sequencing. We isolated numerous new alleles of the three known genes, and one or two alleles each of at least four new genes. We identify ADF1 as a TRP ion channel, which we suggest may reside at the flagellar transition zone. Genetics Society of America 2016-08-12 /pmc/articles/PMC5068960/ /pubmed/27520959 http://dx.doi.org/10.1534/g3.116.034264 Text en Copyright © 2016 Hilton et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Mutant Screen Report Hilton, Laura K. Meili, Fabian Buckoll, Paul D. Rodriguez-Pike, Julie C. Choutka, Courtney P. Kirschner, Jaime A. Warner, Freda Lethan, Mette Garces, Fabian A. Qi, Jingnan Quarmby, Lynne M. A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title | A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title_full | A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title_fullStr | A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title_full_unstemmed | A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title_short | A Forward Genetic Screen and Whole Genome Sequencing Identify Deflagellation Defective Mutants in Chlamydomonas, Including Assignment of ADF1 as a TRP Channel |
title_sort | forward genetic screen and whole genome sequencing identify deflagellation defective mutants in chlamydomonas, including assignment of adf1 as a trp channel |
topic | Mutant Screen Report |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5068960/ https://www.ncbi.nlm.nih.gov/pubmed/27520959 http://dx.doi.org/10.1534/g3.116.034264 |
work_keys_str_mv | AT hiltonlaurak aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT meilifabian aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT buckollpauld aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT rodriguezpikejuliec aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT choutkacourtneyp aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT kirschnerjaimea aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT warnerfreda aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT lethanmette aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT garcesfabiana aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT qijingnan aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT quarmbylynnem aforwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT hiltonlaurak forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT meilifabian forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT buckollpauld forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT rodriguezpikejuliec forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT choutkacourtneyp forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT kirschnerjaimea forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT warnerfreda forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT lethanmette forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT garcesfabiana forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT qijingnan forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel AT quarmbylynnem forwardgeneticscreenandwholegenomesequencingidentifydeflagellationdefectivemutantsinchlamydomonasincludingassignmentofadf1asatrpchannel |