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Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes

Pelger-Huët anomaly (PHA) in humans is an autosomal dominant hematological phenotype without major clinical consequences. PHA involves a characteristic hyposegmentation of granulocytes (HG). Human PHA is caused by heterozygous loss of function variants in the LBR gene encoding lamin receptor B. Bi-a...

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Autores principales: Lourdes Frehner, Bianca, Christen, Matthias, Reichler, Iris M., Jagannathan, Vidhya, Novacco, Marilisa, Riond, Barbara, Peters, Laureen M., Suárez Sánchez-Andrade, José, Pieńkowska-Schelling, Aldona, Schelling, Claude, Kipar, Anja, Leeb, Tosso, Balogh, Orsolya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10321630/
https://www.ncbi.nlm.nih.gov/pubmed/37347778
http://dx.doi.org/10.1371/journal.pgen.1010805
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author Lourdes Frehner, Bianca
Christen, Matthias
Reichler, Iris M.
Jagannathan, Vidhya
Novacco, Marilisa
Riond, Barbara
Peters, Laureen M.
Suárez Sánchez-Andrade, José
Pieńkowska-Schelling, Aldona
Schelling, Claude
Kipar, Anja
Leeb, Tosso
Balogh, Orsolya
author_facet Lourdes Frehner, Bianca
Christen, Matthias
Reichler, Iris M.
Jagannathan, Vidhya
Novacco, Marilisa
Riond, Barbara
Peters, Laureen M.
Suárez Sánchez-Andrade, José
Pieńkowska-Schelling, Aldona
Schelling, Claude
Kipar, Anja
Leeb, Tosso
Balogh, Orsolya
author_sort Lourdes Frehner, Bianca
collection PubMed
description Pelger-Huët anomaly (PHA) in humans is an autosomal dominant hematological phenotype without major clinical consequences. PHA involves a characteristic hyposegmentation of granulocytes (HG). Human PHA is caused by heterozygous loss of function variants in the LBR gene encoding lamin receptor B. Bi-allelic variants and complete deficiency of LBR cause the much more severe Greenberg skeletal dysplasia which is lethal in utero and characterized by massive skeletal malformation and gross fetal hydrops. HG phenotypes have also been described in domestic animals and homology to human PHA has been claimed in the literature. We studied a litter of Australian Shepherd Dogs with four stillborn puppies in which both parents had an HG phenotype. Linkage analysis excluded LBR as responsible gene for the stillborn puppies. We then investigated the HG phenotype in Australian Shepherd Dogs independently of the prenatal lethality. Genome-wide association mapped the HG locus to chromosome 27 and established an autosomal recessive mode of inheritance. Whole genome sequencing identified a splice site variant in LMBR1L, c.191+1G>A, as most likely causal variant for the HG phenotype. The mutant allele abrogates the expression of the longer X2 isoform but does not affect transcripts encoding the shorter X1 isoform of the LMBR1L protein. The homozygous mutant LMBR1L genotype associated with HG is common in Australian Shepherd Dogs and was found in 39 of 300 genotyped dogs (13%). Our results point to a previously unsuspected function of LMBR1L in the myeloid lineage of leukocytes.
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spelling pubmed-103216302023-07-06 Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes Lourdes Frehner, Bianca Christen, Matthias Reichler, Iris M. Jagannathan, Vidhya Novacco, Marilisa Riond, Barbara Peters, Laureen M. Suárez Sánchez-Andrade, José Pieńkowska-Schelling, Aldona Schelling, Claude Kipar, Anja Leeb, Tosso Balogh, Orsolya PLoS Genet Research Article Pelger-Huët anomaly (PHA) in humans is an autosomal dominant hematological phenotype without major clinical consequences. PHA involves a characteristic hyposegmentation of granulocytes (HG). Human PHA is caused by heterozygous loss of function variants in the LBR gene encoding lamin receptor B. Bi-allelic variants and complete deficiency of LBR cause the much more severe Greenberg skeletal dysplasia which is lethal in utero and characterized by massive skeletal malformation and gross fetal hydrops. HG phenotypes have also been described in domestic animals and homology to human PHA has been claimed in the literature. We studied a litter of Australian Shepherd Dogs with four stillborn puppies in which both parents had an HG phenotype. Linkage analysis excluded LBR as responsible gene for the stillborn puppies. We then investigated the HG phenotype in Australian Shepherd Dogs independently of the prenatal lethality. Genome-wide association mapped the HG locus to chromosome 27 and established an autosomal recessive mode of inheritance. Whole genome sequencing identified a splice site variant in LMBR1L, c.191+1G>A, as most likely causal variant for the HG phenotype. The mutant allele abrogates the expression of the longer X2 isoform but does not affect transcripts encoding the shorter X1 isoform of the LMBR1L protein. The homozygous mutant LMBR1L genotype associated with HG is common in Australian Shepherd Dogs and was found in 39 of 300 genotyped dogs (13%). Our results point to a previously unsuspected function of LMBR1L in the myeloid lineage of leukocytes. Public Library of Science 2023-06-22 /pmc/articles/PMC10321630/ /pubmed/37347778 http://dx.doi.org/10.1371/journal.pgen.1010805 Text en © 2023 Lourdes Frehner et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lourdes Frehner, Bianca
Christen, Matthias
Reichler, Iris M.
Jagannathan, Vidhya
Novacco, Marilisa
Riond, Barbara
Peters, Laureen M.
Suárez Sánchez-Andrade, José
Pieńkowska-Schelling, Aldona
Schelling, Claude
Kipar, Anja
Leeb, Tosso
Balogh, Orsolya
Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title_full Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title_fullStr Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title_full_unstemmed Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title_short Autosomal recessive hyposegmentation of granulocytes in Australian Shepherd Dogs indicates a role for LMBR1L in myeloid leukocytes
title_sort autosomal recessive hyposegmentation of granulocytes in australian shepherd dogs indicates a role for lmbr1l in myeloid leukocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10321630/
https://www.ncbi.nlm.nih.gov/pubmed/37347778
http://dx.doi.org/10.1371/journal.pgen.1010805
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