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Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation

To identify rate-limiting steps in T cell-independent type 2 (TI-2) antibody production against polysaccharide antigens, we performed a genome-wide screen by immunizing several hundred pedigrees of C57BL/6 mice segregating ENU-induced mis-sense mutations. Two independent mutations, Tilcara and Untie...

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Autores principales: Teh, CE, Horikawa, K, Arnold, CN, Beutler, B, Kucharska, EM, Vinuesa, CG, Bertram, EM, Goodnow, CC, Enders, A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3676473/
https://www.ncbi.nlm.nih.gov/pubmed/23552399
http://dx.doi.org/10.1038/gene.2013.11
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author Teh, CE
Horikawa, K
Arnold, CN
Beutler, B
Kucharska, EM
Vinuesa, CG
Bertram, EM
Goodnow, CC
Enders, A
author_facet Teh, CE
Horikawa, K
Arnold, CN
Beutler, B
Kucharska, EM
Vinuesa, CG
Bertram, EM
Goodnow, CC
Enders, A
author_sort Teh, CE
collection PubMed
description To identify rate-limiting steps in T cell-independent type 2 (TI-2) antibody production against polysaccharide antigens, we performed a genome-wide screen by immunizing several hundred pedigrees of C57BL/6 mice segregating ENU-induced mis-sense mutations. Two independent mutations, Tilcara and Untied, were isolated that semi-dominantly diminished antibody against polysaccharide but not protein antigens. Both mutations resulted from single amino acid substitutions within the kinase domain of Protein Kinase C Beta (PKCβ). In Tilcara, a Ser552>Pro mutation occurred in helix G, in close proximity to a docking site for the inhibitory N-terminal pseudosubstrate domain of the enzyme, resulting in almost complete loss of active, autophosphorylated PKCβI whereas the amount of alternatively spliced PKCβII protein was not markedly reduced. Circulating B cell subsets were normal and acute responses to BCR-stimulation such as CD25 induction and initiation of DNA synthesis were only measurably diminished in Tilcara homozygotes, whereas the fraction of cells that had divided multiple times was decreased to an intermediate degree in heterozygotes. These results, coupled with evidence of numerous mis-sense PRKCB mutations in the human genome, identify Prkcb as a genetically sensitive step likely to contribute substantially to population variability in anti-polysaccharide antibody levels.
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spelling pubmed-36764732013-12-01 Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation Teh, CE Horikawa, K Arnold, CN Beutler, B Kucharska, EM Vinuesa, CG Bertram, EM Goodnow, CC Enders, A Genes Immun Article To identify rate-limiting steps in T cell-independent type 2 (TI-2) antibody production against polysaccharide antigens, we performed a genome-wide screen by immunizing several hundred pedigrees of C57BL/6 mice segregating ENU-induced mis-sense mutations. Two independent mutations, Tilcara and Untied, were isolated that semi-dominantly diminished antibody against polysaccharide but not protein antigens. Both mutations resulted from single amino acid substitutions within the kinase domain of Protein Kinase C Beta (PKCβ). In Tilcara, a Ser552>Pro mutation occurred in helix G, in close proximity to a docking site for the inhibitory N-terminal pseudosubstrate domain of the enzyme, resulting in almost complete loss of active, autophosphorylated PKCβI whereas the amount of alternatively spliced PKCβII protein was not markedly reduced. Circulating B cell subsets were normal and acute responses to BCR-stimulation such as CD25 induction and initiation of DNA synthesis were only measurably diminished in Tilcara homozygotes, whereas the fraction of cells that had divided multiple times was decreased to an intermediate degree in heterozygotes. These results, coupled with evidence of numerous mis-sense PRKCB mutations in the human genome, identify Prkcb as a genetically sensitive step likely to contribute substantially to population variability in anti-polysaccharide antibody levels. 2013-04-04 2013-06 /pmc/articles/PMC3676473/ /pubmed/23552399 http://dx.doi.org/10.1038/gene.2013.11 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
Teh, CE
Horikawa, K
Arnold, CN
Beutler, B
Kucharska, EM
Vinuesa, CG
Bertram, EM
Goodnow, CC
Enders, A
Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title_full Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title_fullStr Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title_full_unstemmed Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title_short Heterozygous mis-sense mutations in Prkcb as a critical determinant of anti-polysaccharide antibody formation
title_sort heterozygous mis-sense mutations in prkcb as a critical determinant of anti-polysaccharide antibody formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3676473/
https://www.ncbi.nlm.nih.gov/pubmed/23552399
http://dx.doi.org/10.1038/gene.2013.11
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