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Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance

SLC7A7 deficiency, or lysinuric protein intolerance (LPI), causes loss of function of the y(+)LAT1 transporter critical for efflux of arginine, lysine and ornithine in certain cells. LPI is characterized by urea cycle dysfunction, renal disease, immune dysregulation, growth failure, delayed bone age...

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Autores principales: Stroup, Bridget M., Li, Xiaohui, Ho, Sara, Zhouyao, Haonan, Chen, Yuqing, Ani, Safa, Dawson, Brian, Jin, Zixue, Marom, Ronit, Jiang, Ming-Ming, Lorenzo, Isabel, Rosen, Daniel, Lanza, Denise, Aceves, Nathalie, Koh, Sara, Seavitt, John R., Heaney, Jason D., Lee, Brendan, Burrage, Lindsay C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445726/
https://www.ncbi.nlm.nih.gov/pubmed/37486182
http://dx.doi.org/10.1242/dmm.050118
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author Stroup, Bridget M.
Li, Xiaohui
Ho, Sara
Zhouyao, Haonan
Chen, Yuqing
Ani, Safa
Dawson, Brian
Jin, Zixue
Marom, Ronit
Jiang, Ming-Ming
Lorenzo, Isabel
Rosen, Daniel
Lanza, Denise
Aceves, Nathalie
Koh, Sara
Seavitt, John R.
Heaney, Jason D.
Lee, Brendan
Burrage, Lindsay C.
author_facet Stroup, Bridget M.
Li, Xiaohui
Ho, Sara
Zhouyao, Haonan
Chen, Yuqing
Ani, Safa
Dawson, Brian
Jin, Zixue
Marom, Ronit
Jiang, Ming-Ming
Lorenzo, Isabel
Rosen, Daniel
Lanza, Denise
Aceves, Nathalie
Koh, Sara
Seavitt, John R.
Heaney, Jason D.
Lee, Brendan
Burrage, Lindsay C.
author_sort Stroup, Bridget M.
collection PubMed
description SLC7A7 deficiency, or lysinuric protein intolerance (LPI), causes loss of function of the y(+)LAT1 transporter critical for efflux of arginine, lysine and ornithine in certain cells. LPI is characterized by urea cycle dysfunction, renal disease, immune dysregulation, growth failure, delayed bone age and osteoporosis. We previously reported that Slc7a7 knockout mice (C57BL/6×129/SvEv F2) recapitulate LPI phenotypes, including growth failure. Our main objective in this study was to characterize the skeletal phenotype in these mice. Compared to wild-type littermates, juvenile Slc7a7 knockout mice demonstrated 70% lower body weights, 87% lower plasma IGF-1 concentrations and delayed skeletal development. Because poor survival prevents evaluation of mature knockout mice, we generated a conditional Slc7a7 deletion in mature osteoblasts or mesenchymal cells of the osteo-chondroprogenitor lineage, but no differences in bone architecture were observed. Overall, global Slc7a7 deficiency caused growth failure with low plasma IGF-1 concentrations and delayed skeletal development, but Slc7a7 deficiency in the osteoblastic lineage was not a major contributor to these phenotypes. Future studies utilizing additional tissue-specific Slc7a7 knockout models may help dissect cell-autonomous and non-cell-autonomous mechanisms underlying phenotypes in LPI.
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spelling pubmed-104457262023-08-24 Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance Stroup, Bridget M. Li, Xiaohui Ho, Sara Zhouyao, Haonan Chen, Yuqing Ani, Safa Dawson, Brian Jin, Zixue Marom, Ronit Jiang, Ming-Ming Lorenzo, Isabel Rosen, Daniel Lanza, Denise Aceves, Nathalie Koh, Sara Seavitt, John R. Heaney, Jason D. Lee, Brendan Burrage, Lindsay C. Dis Model Mech Research Article SLC7A7 deficiency, or lysinuric protein intolerance (LPI), causes loss of function of the y(+)LAT1 transporter critical for efflux of arginine, lysine and ornithine in certain cells. LPI is characterized by urea cycle dysfunction, renal disease, immune dysregulation, growth failure, delayed bone age and osteoporosis. We previously reported that Slc7a7 knockout mice (C57BL/6×129/SvEv F2) recapitulate LPI phenotypes, including growth failure. Our main objective in this study was to characterize the skeletal phenotype in these mice. Compared to wild-type littermates, juvenile Slc7a7 knockout mice demonstrated 70% lower body weights, 87% lower plasma IGF-1 concentrations and delayed skeletal development. Because poor survival prevents evaluation of mature knockout mice, we generated a conditional Slc7a7 deletion in mature osteoblasts or mesenchymal cells of the osteo-chondroprogenitor lineage, but no differences in bone architecture were observed. Overall, global Slc7a7 deficiency caused growth failure with low plasma IGF-1 concentrations and delayed skeletal development, but Slc7a7 deficiency in the osteoblastic lineage was not a major contributor to these phenotypes. Future studies utilizing additional tissue-specific Slc7a7 knockout models may help dissect cell-autonomous and non-cell-autonomous mechanisms underlying phenotypes in LPI. The Company of Biologists Ltd 2023-08-17 /pmc/articles/PMC10445726/ /pubmed/37486182 http://dx.doi.org/10.1242/dmm.050118 Text en © 2023. Published by The Company of Biologists Ltd 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 (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Stroup, Bridget M.
Li, Xiaohui
Ho, Sara
Zhouyao, Haonan
Chen, Yuqing
Ani, Safa
Dawson, Brian
Jin, Zixue
Marom, Ronit
Jiang, Ming-Ming
Lorenzo, Isabel
Rosen, Daniel
Lanza, Denise
Aceves, Nathalie
Koh, Sara
Seavitt, John R.
Heaney, Jason D.
Lee, Brendan
Burrage, Lindsay C.
Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title_full Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title_fullStr Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title_full_unstemmed Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title_short Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance
title_sort delayed skeletal development and igf-1 deficiency in a mouse model of lysinuric protein intolerance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445726/
https://www.ncbi.nlm.nih.gov/pubmed/37486182
http://dx.doi.org/10.1242/dmm.050118
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