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Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C

Experimental autoimmune orchitis (EAO), the principal model of non-infectious testicular inflammatory disease, can be induced in susceptible mouse strains by immunization with autologous testicular homogenate and appropriate adjuvants. As previously established, the genome of DBA/2J mice encodes gen...

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Autores principales: del Rio, Roxana, McAllister, Ryan D., Meeker, Nathan D., Wall, Emma H., Bond, Jeffrey P., Kyttaris, Vasileios C., Tsokos, George C., Tung, Kenneth S. K., Teuscher, Cory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3531464/
https://www.ncbi.nlm.nih.gov/pubmed/23300462
http://dx.doi.org/10.1371/journal.pgen.1003140
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author del Rio, Roxana
McAllister, Ryan D.
Meeker, Nathan D.
Wall, Emma H.
Bond, Jeffrey P.
Kyttaris, Vasileios C.
Tsokos, George C.
Tung, Kenneth S. K.
Teuscher, Cory
author_facet del Rio, Roxana
McAllister, Ryan D.
Meeker, Nathan D.
Wall, Emma H.
Bond, Jeffrey P.
Kyttaris, Vasileios C.
Tsokos, George C.
Tung, Kenneth S. K.
Teuscher, Cory
author_sort del Rio, Roxana
collection PubMed
description Experimental autoimmune orchitis (EAO), the principal model of non-infectious testicular inflammatory disease, can be induced in susceptible mouse strains by immunization with autologous testicular homogenate and appropriate adjuvants. As previously established, the genome of DBA/2J mice encodes genes that are capable of conferring dominant resistance to EAO, while the genome of BALB/cByJ mice does not and they are therefore susceptible to EAO. In a genome scan, we previously identified Orch3 as the major quantitative trait locus controlling dominant resistance to EAO and mapped it to chromosome 11. Here, by utilizing a forward genetic approach, we identified kinesin family member 1C (Kif1c) as a positional candidate for Orch3 and, using a transgenic approach, demonstrated that Kif1c is Orch3. Mechanistically, we showed that the resistant Kif1c(D2) allele leads to a reduced antigen-specific T cell proliferative response as a consequence of decreased MHC class II expression by antigen presenting cells, and that the L(578)→P(578) and S(1027)→P(1027) polymorphisms distinguishing the BALB/cByJ and DBA/2J alleles, respectively, can play a role in transcriptional regulation. These findings may provide mechanistic insight into how polymorphism in other kinesins such as KIF21B and KIF5A influence susceptibility and resistance to human autoimmune diseases.
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spelling pubmed-35314642013-01-08 Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C del Rio, Roxana McAllister, Ryan D. Meeker, Nathan D. Wall, Emma H. Bond, Jeffrey P. Kyttaris, Vasileios C. Tsokos, George C. Tung, Kenneth S. K. Teuscher, Cory PLoS Genet Research Article Experimental autoimmune orchitis (EAO), the principal model of non-infectious testicular inflammatory disease, can be induced in susceptible mouse strains by immunization with autologous testicular homogenate and appropriate adjuvants. As previously established, the genome of DBA/2J mice encodes genes that are capable of conferring dominant resistance to EAO, while the genome of BALB/cByJ mice does not and they are therefore susceptible to EAO. In a genome scan, we previously identified Orch3 as the major quantitative trait locus controlling dominant resistance to EAO and mapped it to chromosome 11. Here, by utilizing a forward genetic approach, we identified kinesin family member 1C (Kif1c) as a positional candidate for Orch3 and, using a transgenic approach, demonstrated that Kif1c is Orch3. Mechanistically, we showed that the resistant Kif1c(D2) allele leads to a reduced antigen-specific T cell proliferative response as a consequence of decreased MHC class II expression by antigen presenting cells, and that the L(578)→P(578) and S(1027)→P(1027) polymorphisms distinguishing the BALB/cByJ and DBA/2J alleles, respectively, can play a role in transcriptional regulation. These findings may provide mechanistic insight into how polymorphism in other kinesins such as KIF21B and KIF5A influence susceptibility and resistance to human autoimmune diseases. Public Library of Science 2012-12-27 /pmc/articles/PMC3531464/ /pubmed/23300462 http://dx.doi.org/10.1371/journal.pgen.1003140 Text en © 2012 del Rio 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
del Rio, Roxana
McAllister, Ryan D.
Meeker, Nathan D.
Wall, Emma H.
Bond, Jeffrey P.
Kyttaris, Vasileios C.
Tsokos, George C.
Tung, Kenneth S. K.
Teuscher, Cory
Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title_full Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title_fullStr Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title_full_unstemmed Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title_short Identification of Orch3, a Locus Controlling Dominant Resistance to Autoimmune Orchitis, as Kinesin Family Member 1C
title_sort identification of orch3, a locus controlling dominant resistance to autoimmune orchitis, as kinesin family member 1c
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3531464/
https://www.ncbi.nlm.nih.gov/pubmed/23300462
http://dx.doi.org/10.1371/journal.pgen.1003140
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