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High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5

BACKGROUND: Forward genetic screens in mice provide an unbiased means to identify genes and other functional genetic elements in the genome. Previously, a large scale ENU mutagenesis screen was conducted to query the functional content of a ~50 Mb region of the mouse genome on proximal Chr 5. The ma...

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Autores principales: Ching, Yung-Hao, Munroe, Robert J, Moran, Jennifer L, Barker, Anna K, Mauceli, Evan, Fennell, Tim, diPalma, Frederica, Lindblad-Toh, Kerstin, Abcunas, Lindsay M, Gilmour, Joyanna F, Harris, Tanya P, Kloet, Susan L, Luo, Yunhai, McElwee, John L, Mu, Weipeng, Park, Hyo K, Rogal, David L, Schimenti, Kerry J, Shen, Lishuang, Shindo, Mami, Shou, James Y, Stenson, Erin K, Stover, Patrick J, Schimenti, John C
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3009607/
https://www.ncbi.nlm.nih.gov/pubmed/21118569
http://dx.doi.org/10.1186/1471-2156-11-106
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author Ching, Yung-Hao
Munroe, Robert J
Moran, Jennifer L
Barker, Anna K
Mauceli, Evan
Fennell, Tim
diPalma, Frederica
Lindblad-Toh, Kerstin
Abcunas, Lindsay M
Gilmour, Joyanna F
Harris, Tanya P
Kloet, Susan L
Luo, Yunhai
McElwee, John L
Mu, Weipeng
Park, Hyo K
Rogal, David L
Schimenti, Kerry J
Shen, Lishuang
Shindo, Mami
Shou, James Y
Stenson, Erin K
Stover, Patrick J
Schimenti, John C
author_facet Ching, Yung-Hao
Munroe, Robert J
Moran, Jennifer L
Barker, Anna K
Mauceli, Evan
Fennell, Tim
diPalma, Frederica
Lindblad-Toh, Kerstin
Abcunas, Lindsay M
Gilmour, Joyanna F
Harris, Tanya P
Kloet, Susan L
Luo, Yunhai
McElwee, John L
Mu, Weipeng
Park, Hyo K
Rogal, David L
Schimenti, Kerry J
Shen, Lishuang
Shindo, Mami
Shou, James Y
Stenson, Erin K
Stover, Patrick J
Schimenti, John C
author_sort Ching, Yung-Hao
collection PubMed
description BACKGROUND: Forward genetic screens in mice provide an unbiased means to identify genes and other functional genetic elements in the genome. Previously, a large scale ENU mutagenesis screen was conducted to query the functional content of a ~50 Mb region of the mouse genome on proximal Chr 5. The majority of phenotypic mutants recovered were embryonic lethals. RESULTS: We report the high resolution genetic mapping, complementation analyses, and positional cloning of mutations in the target region. The collection of identified alleles include several with known or presumed functions for which no mutant models have been reported (Tbc1d14, Nol14, Tyms, Cad, Fbxl5, Haus3), and mutations in genes we or others previously reported (Tapt1, Rest, Ugdh, Paxip1, Hmx1, Otoe, Nsun7). We also confirmed the causative nature of a homeotic mutation with a targeted allele, mapped a lethal mutation to a large gene desert, and localized a spermiogenesis mutation to a region in which no annotated genes have coding mutations. The mutation in Tbc1d14 provides the first implication of a critical developmental role for RAB-GAP-mediated protein transport in early embryogenesis. CONCLUSION: This collection of alleles contributes to the goal of assigning biological functions to all known genes, as well as identifying novel functional elements that would be missed by reverse genetic approaches.
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spelling pubmed-30096072010-12-24 High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5 Ching, Yung-Hao Munroe, Robert J Moran, Jennifer L Barker, Anna K Mauceli, Evan Fennell, Tim diPalma, Frederica Lindblad-Toh, Kerstin Abcunas, Lindsay M Gilmour, Joyanna F Harris, Tanya P Kloet, Susan L Luo, Yunhai McElwee, John L Mu, Weipeng Park, Hyo K Rogal, David L Schimenti, Kerry J Shen, Lishuang Shindo, Mami Shou, James Y Stenson, Erin K Stover, Patrick J Schimenti, John C BMC Genet Research Article BACKGROUND: Forward genetic screens in mice provide an unbiased means to identify genes and other functional genetic elements in the genome. Previously, a large scale ENU mutagenesis screen was conducted to query the functional content of a ~50 Mb region of the mouse genome on proximal Chr 5. The majority of phenotypic mutants recovered were embryonic lethals. RESULTS: We report the high resolution genetic mapping, complementation analyses, and positional cloning of mutations in the target region. The collection of identified alleles include several with known or presumed functions for which no mutant models have been reported (Tbc1d14, Nol14, Tyms, Cad, Fbxl5, Haus3), and mutations in genes we or others previously reported (Tapt1, Rest, Ugdh, Paxip1, Hmx1, Otoe, Nsun7). We also confirmed the causative nature of a homeotic mutation with a targeted allele, mapped a lethal mutation to a large gene desert, and localized a spermiogenesis mutation to a region in which no annotated genes have coding mutations. The mutation in Tbc1d14 provides the first implication of a critical developmental role for RAB-GAP-mediated protein transport in early embryogenesis. CONCLUSION: This collection of alleles contributes to the goal of assigning biological functions to all known genes, as well as identifying novel functional elements that would be missed by reverse genetic approaches. BioMed Central 2010-11-30 /pmc/articles/PMC3009607/ /pubmed/21118569 http://dx.doi.org/10.1186/1471-2156-11-106 Text en Copyright ©2010 Ching et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ching, Yung-Hao
Munroe, Robert J
Moran, Jennifer L
Barker, Anna K
Mauceli, Evan
Fennell, Tim
diPalma, Frederica
Lindblad-Toh, Kerstin
Abcunas, Lindsay M
Gilmour, Joyanna F
Harris, Tanya P
Kloet, Susan L
Luo, Yunhai
McElwee, John L
Mu, Weipeng
Park, Hyo K
Rogal, David L
Schimenti, Kerry J
Shen, Lishuang
Shindo, Mami
Shou, James Y
Stenson, Erin K
Stover, Patrick J
Schimenti, John C
High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title_full High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title_fullStr High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title_full_unstemmed High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title_short High resolution mapping and positional cloning of ENU-induced mutations in the Rw region of mouse chromosome 5
title_sort high resolution mapping and positional cloning of enu-induced mutations in the rw region of mouse chromosome 5
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3009607/
https://www.ncbi.nlm.nih.gov/pubmed/21118569
http://dx.doi.org/10.1186/1471-2156-11-106
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