Cargando…
Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice
Mutations in SLURP1 cause mal de Meleda, a rare palmoplantar keratoderma (PPK). SLURP1 is a secreted protein that is expressed highly in keratinocytes but has also been identified elsewhere (e.g., spinal cord neurons). Here, we examined Slurp1-deficient mice (Slurp1(−/−)) created by replacing exon 2...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4214150/ https://www.ncbi.nlm.nih.gov/pubmed/24499735 http://dx.doi.org/10.1038/jid.2014.19 |
_version_ | 1782341915340963840 |
---|---|
author | Adeyo, Oludotun Allan, Bernard B. Barnes, Richard H. Goulbourne, Chris N. Tatar, Angelica Tu, Yiping Young, Lorraine C. Weinstein, Michael Tontonoz, Peter Fong, Loren G. Beigneux, Anne P. Young, Stephen G. |
author_facet | Adeyo, Oludotun Allan, Bernard B. Barnes, Richard H. Goulbourne, Chris N. Tatar, Angelica Tu, Yiping Young, Lorraine C. Weinstein, Michael Tontonoz, Peter Fong, Loren G. Beigneux, Anne P. Young, Stephen G. |
author_sort | Adeyo, Oludotun |
collection | PubMed |
description | Mutations in SLURP1 cause mal de Meleda, a rare palmoplantar keratoderma (PPK). SLURP1 is a secreted protein that is expressed highly in keratinocytes but has also been identified elsewhere (e.g., spinal cord neurons). Here, we examined Slurp1-deficient mice (Slurp1(−/−)) created by replacing exon 2 with β-gal and neo cassettes. Slurp1(−/−) mice developed severe PPK characterized by increased keratinocyte proliferation, an accumulation of lipid droplets in the stratum corneum, and a water barrier defect. In addition, Slurp1(−/−) mice exhibited reduced adiposity, protection from obesity on a high-fat diet, low plasma lipid levels, and a neuromuscular abnormality (hind limb clasping). Initially, it was unclear whether the metabolic and neuromuscular phenotypes were due to Slurp1 deficiency because we found that the targeted Slurp1 mutation reduced the expression of several neighboring genes (e.g., Slurp2, Lypd2). We therefore created a new line of knockout mice (Slurp1X(−/−) mice) with a simple nonsense mutation in exon 2. The Slurp1X mutation did not reduce the expression of adjacent genes, but Slurp1X(−/−) mice exhibited all of the phenotypes observed in the original line of knockout mice. Thus, Slurp1 deficiency in mice elicits metabolic and neuromuscular abnormalities in addition to PPK. |
format | Online Article Text |
id | pubmed-4214150 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
record_format | MEDLINE/PubMed |
spelling | pubmed-42141502014-12-01 Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice Adeyo, Oludotun Allan, Bernard B. Barnes, Richard H. Goulbourne, Chris N. Tatar, Angelica Tu, Yiping Young, Lorraine C. Weinstein, Michael Tontonoz, Peter Fong, Loren G. Beigneux, Anne P. Young, Stephen G. J Invest Dermatol Article Mutations in SLURP1 cause mal de Meleda, a rare palmoplantar keratoderma (PPK). SLURP1 is a secreted protein that is expressed highly in keratinocytes but has also been identified elsewhere (e.g., spinal cord neurons). Here, we examined Slurp1-deficient mice (Slurp1(−/−)) created by replacing exon 2 with β-gal and neo cassettes. Slurp1(−/−) mice developed severe PPK characterized by increased keratinocyte proliferation, an accumulation of lipid droplets in the stratum corneum, and a water barrier defect. In addition, Slurp1(−/−) mice exhibited reduced adiposity, protection from obesity on a high-fat diet, low plasma lipid levels, and a neuromuscular abnormality (hind limb clasping). Initially, it was unclear whether the metabolic and neuromuscular phenotypes were due to Slurp1 deficiency because we found that the targeted Slurp1 mutation reduced the expression of several neighboring genes (e.g., Slurp2, Lypd2). We therefore created a new line of knockout mice (Slurp1X(−/−) mice) with a simple nonsense mutation in exon 2. The Slurp1X mutation did not reduce the expression of adjacent genes, but Slurp1X(−/−) mice exhibited all of the phenotypes observed in the original line of knockout mice. Thus, Slurp1 deficiency in mice elicits metabolic and neuromuscular abnormalities in addition to PPK. 2014-01-17 2014-06 /pmc/articles/PMC4214150/ /pubmed/24499735 http://dx.doi.org/10.1038/jid.2014.19 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download 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 Adeyo, Oludotun Allan, Bernard B. Barnes, Richard H. Goulbourne, Chris N. Tatar, Angelica Tu, Yiping Young, Lorraine C. Weinstein, Michael Tontonoz, Peter Fong, Loren G. Beigneux, Anne P. Young, Stephen G. Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title | Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title_full | Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title_fullStr | Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title_full_unstemmed | Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title_short | Palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in Slurp1-deficient mice |
title_sort | palmoplantar keratoderma along with neuromuscular and metabolic phenotypes in slurp1-deficient mice |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4214150/ https://www.ncbi.nlm.nih.gov/pubmed/24499735 http://dx.doi.org/10.1038/jid.2014.19 |
work_keys_str_mv | AT adeyooludotun palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT allanbernardb palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT barnesrichardh palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT goulbournechrisn palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT tatarangelica palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT tuyiping palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT younglorrainec palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT weinsteinmichael palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT tontonozpeter palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT fongloreng palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT beigneuxannep palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice AT youngstepheng palmoplantarkeratodermaalongwithneuromuscularandmetabolicphenotypesinslurp1deficientmice |