Cargando…
A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder
Aging is a complex biological process. A study of pyrroline-5-carboxylate reductase 1 (PYCR1) deficiency, which causes a progeroid syndrome, may not only shed light on its genetic contribution to autosomal recessive cutis laxa (ARCL) but also help elucidate the functional mechanisms associated with...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
JKL International LLC
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6284769/ https://www.ncbi.nlm.nih.gov/pubmed/30574417 http://dx.doi.org/10.14336/AD.2018.0222 |
_version_ | 1783379372530466816 |
---|---|
author | Huang, Yu-Wen Chiang, Ming-Fu Ho, Che-Sheng Hung, Pi-Lien Hsu, Mei-Hsin Lee, Tsung-Han Chu, Lichieh Julie Liu, Hsuan Tang, Petrus Victor Ng, Wailap Lin, Dar-Shong |
author_facet | Huang, Yu-Wen Chiang, Ming-Fu Ho, Che-Sheng Hung, Pi-Lien Hsu, Mei-Hsin Lee, Tsung-Han Chu, Lichieh Julie Liu, Hsuan Tang, Petrus Victor Ng, Wailap Lin, Dar-Shong |
author_sort | Huang, Yu-Wen |
collection | PubMed |
description | Aging is a complex biological process. A study of pyrroline-5-carboxylate reductase 1 (PYCR1) deficiency, which causes a progeroid syndrome, may not only shed light on its genetic contribution to autosomal recessive cutis laxa (ARCL) but also help elucidate the functional mechanisms associated with aging. In this study, we used RNA-Seq technology to examine gene expression changes in primary skin fibroblasts from healthy controls and patients with PYCR1 mutations. Approximately 22 and 32 candidate genes were found to be up- and downregulated, respectively, in fibroblasts from patients. Among the downregulated candidates in fibroblasts with PYCR1 mutations, a strong reduction in the expression of 17 genes (53.1%) which protein products are localized in the extracellular space was detected. These proteins included several important ECM components, periostin (POSTN), elastin (ELN), and decorin (DCN); genetic mutations in these proteins are associated with different phenotypes of aging, such as cutis laxa and joint and dermal manifestations. The differential expression of ten selected extracellular space genes was further validated using quantitative RT-PCR. Ingenuity Pathway Analysis revealed that some of the affected genes may be associated with cardiovascular system development and function, dermatological diseases and conditions, and cardiovascular disease. POSTN, one of the most downregulated gene candidates in affected individuals, is a matricellular protein with pivotal functions in heart valvulogenesis, skin wound healing, and brain development. Perturbation of PYCR1 expression revealed that it is positively correlated with the POSTN levels. Taken together, POSTN might be one of the key molecules that deserves further investigation for its role in this progeroid neurocutaneous syndrome. |
format | Online Article Text |
id | pubmed-6284769 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | JKL International LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-62847692018-12-20 A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder Huang, Yu-Wen Chiang, Ming-Fu Ho, Che-Sheng Hung, Pi-Lien Hsu, Mei-Hsin Lee, Tsung-Han Chu, Lichieh Julie Liu, Hsuan Tang, Petrus Victor Ng, Wailap Lin, Dar-Shong Aging Dis Orginal Article Aging is a complex biological process. A study of pyrroline-5-carboxylate reductase 1 (PYCR1) deficiency, which causes a progeroid syndrome, may not only shed light on its genetic contribution to autosomal recessive cutis laxa (ARCL) but also help elucidate the functional mechanisms associated with aging. In this study, we used RNA-Seq technology to examine gene expression changes in primary skin fibroblasts from healthy controls and patients with PYCR1 mutations. Approximately 22 and 32 candidate genes were found to be up- and downregulated, respectively, in fibroblasts from patients. Among the downregulated candidates in fibroblasts with PYCR1 mutations, a strong reduction in the expression of 17 genes (53.1%) which protein products are localized in the extracellular space was detected. These proteins included several important ECM components, periostin (POSTN), elastin (ELN), and decorin (DCN); genetic mutations in these proteins are associated with different phenotypes of aging, such as cutis laxa and joint and dermal manifestations. The differential expression of ten selected extracellular space genes was further validated using quantitative RT-PCR. Ingenuity Pathway Analysis revealed that some of the affected genes may be associated with cardiovascular system development and function, dermatological diseases and conditions, and cardiovascular disease. POSTN, one of the most downregulated gene candidates in affected individuals, is a matricellular protein with pivotal functions in heart valvulogenesis, skin wound healing, and brain development. Perturbation of PYCR1 expression revealed that it is positively correlated with the POSTN levels. Taken together, POSTN might be one of the key molecules that deserves further investigation for its role in this progeroid neurocutaneous syndrome. JKL International LLC 2018-12-04 /pmc/articles/PMC6284769/ /pubmed/30574417 http://dx.doi.org/10.14336/AD.2018.0222 Text en Copyright: © 2018 Yu-Wen et al. http://creativecommons.org/licenses/by/2.0/ 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 that the original work is properly attributed. |
spellingShingle | Orginal Article Huang, Yu-Wen Chiang, Ming-Fu Ho, Che-Sheng Hung, Pi-Lien Hsu, Mei-Hsin Lee, Tsung-Han Chu, Lichieh Julie Liu, Hsuan Tang, Petrus Victor Ng, Wailap Lin, Dar-Shong A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title | A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title_full | A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title_fullStr | A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title_full_unstemmed | A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title_short | A Transcriptome Study of Progeroid Neurocutaneous Syndrome Reveals POSTN As a New Element in Proline Metabolic Disorder |
title_sort | transcriptome study of progeroid neurocutaneous syndrome reveals postn as a new element in proline metabolic disorder |
topic | Orginal Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6284769/ https://www.ncbi.nlm.nih.gov/pubmed/30574417 http://dx.doi.org/10.14336/AD.2018.0222 |
work_keys_str_mv | AT huangyuwen atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT chiangmingfu atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hochesheng atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hungpilien atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hsumeihsin atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT leetsunghan atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT chulichiehjulie atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT liuhsuan atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT tangpetrus atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT victorngwailap atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT lindarshong atranscriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT huangyuwen transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT chiangmingfu transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hochesheng transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hungpilien transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT hsumeihsin transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT leetsunghan transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT chulichiehjulie transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT liuhsuan transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT tangpetrus transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT victorngwailap transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder AT lindarshong transcriptomestudyofprogeroidneurocutaneoussyndromerevealspostnasanewelementinprolinemetabolicdisorder |