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Using the emerging Collaborative Cross to probe the immune system

The Collaborative Cross (CC) is an emerging panel of recombinant inbred mouse strains. Each strain is genetically distinct but all descended from the same eight inbred founders. In 66 strains from incipient lines of the CC (pre-CC), as well as the 8 CC founders and some of their F1 offspring, we exa...

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Autores principales: Phillippi, Jason, Xie, Yuying, Miller, Darla R, Bell, Timothy A, Zhang, Zhaojun, Lenarcic, Alan B, Aylor, David L, Krovi, S Harsha, Threadgill, David W., de Villena, Fernando Pardo-Manuel, Wang, Wei, Valdar, William, Frelinger, Jeffrey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004367/
https://www.ncbi.nlm.nih.gov/pubmed/24195963
http://dx.doi.org/10.1038/gene.2013.59
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author Phillippi, Jason
Xie, Yuying
Miller, Darla R
Bell, Timothy A
Zhang, Zhaojun
Lenarcic, Alan B
Aylor, David L
Krovi, S Harsha
Threadgill, David W.
de Villena, Fernando Pardo-Manuel
Wang, Wei
Valdar, William
Frelinger, Jeffrey A.
author_facet Phillippi, Jason
Xie, Yuying
Miller, Darla R
Bell, Timothy A
Zhang, Zhaojun
Lenarcic, Alan B
Aylor, David L
Krovi, S Harsha
Threadgill, David W.
de Villena, Fernando Pardo-Manuel
Wang, Wei
Valdar, William
Frelinger, Jeffrey A.
author_sort Phillippi, Jason
collection PubMed
description The Collaborative Cross (CC) is an emerging panel of recombinant inbred mouse strains. Each strain is genetically distinct but all descended from the same eight inbred founders. In 66 strains from incipient lines of the CC (pre-CC), as well as the 8 CC founders and some of their F1 offspring, we examined subsets of lymphocytes and antigen-presenting cells. We found significant variation among the founders, with even greater diversity in the pre-CC. Genome-wide association using inferred haplotypes detected highly significant loci controlling B-to-T cell ratio, CD8 T-cell numbers, CD11c and CD23 expression. Comparison of overall strain effects in the CC founders with strain effects at QTL in the pre-CC revealed sharp contrasts in the genetic architecture of two traits with significant loci: variation in CD23 can be explained largely by additive genetics at one locus, whereas variation in B-to-T ratio has a more complex etiology. For CD23, we found a strong QTL whose confidence interval contained the CD23 structural gene Fcer2a. Our data on the pre-CC demonstrate the utility of the CC for studying immunophenotypes and the value of integrating founder, CC, and F1 data. The extreme immunophenotypes observed could have pleiotropic effects in other CC experiments.
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spelling pubmed-40043672014-07-01 Using the emerging Collaborative Cross to probe the immune system Phillippi, Jason Xie, Yuying Miller, Darla R Bell, Timothy A Zhang, Zhaojun Lenarcic, Alan B Aylor, David L Krovi, S Harsha Threadgill, David W. de Villena, Fernando Pardo-Manuel Wang, Wei Valdar, William Frelinger, Jeffrey A. Genes Immun Article The Collaborative Cross (CC) is an emerging panel of recombinant inbred mouse strains. Each strain is genetically distinct but all descended from the same eight inbred founders. In 66 strains from incipient lines of the CC (pre-CC), as well as the 8 CC founders and some of their F1 offspring, we examined subsets of lymphocytes and antigen-presenting cells. We found significant variation among the founders, with even greater diversity in the pre-CC. Genome-wide association using inferred haplotypes detected highly significant loci controlling B-to-T cell ratio, CD8 T-cell numbers, CD11c and CD23 expression. Comparison of overall strain effects in the CC founders with strain effects at QTL in the pre-CC revealed sharp contrasts in the genetic architecture of two traits with significant loci: variation in CD23 can be explained largely by additive genetics at one locus, whereas variation in B-to-T ratio has a more complex etiology. For CD23, we found a strong QTL whose confidence interval contained the CD23 structural gene Fcer2a. Our data on the pre-CC demonstrate the utility of the CC for studying immunophenotypes and the value of integrating founder, CC, and F1 data. The extreme immunophenotypes observed could have pleiotropic effects in other CC experiments. 2013-11-07 2014-01 /pmc/articles/PMC4004367/ /pubmed/24195963 http://dx.doi.org/10.1038/gene.2013.59 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Phillippi, Jason
Xie, Yuying
Miller, Darla R
Bell, Timothy A
Zhang, Zhaojun
Lenarcic, Alan B
Aylor, David L
Krovi, S Harsha
Threadgill, David W.
de Villena, Fernando Pardo-Manuel
Wang, Wei
Valdar, William
Frelinger, Jeffrey A.
Using the emerging Collaborative Cross to probe the immune system
title Using the emerging Collaborative Cross to probe the immune system
title_full Using the emerging Collaborative Cross to probe the immune system
title_fullStr Using the emerging Collaborative Cross to probe the immune system
title_full_unstemmed Using the emerging Collaborative Cross to probe the immune system
title_short Using the emerging Collaborative Cross to probe the immune system
title_sort using the emerging collaborative cross to probe the immune system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004367/
https://www.ncbi.nlm.nih.gov/pubmed/24195963
http://dx.doi.org/10.1038/gene.2013.59
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