Generalized connective tissue disease in Crtap-/- mouse.

Mutations in CRTAP (coding for cartilage-associated protein), LEPRE1 (coding for prolyl 3-hydroxylase 1 [P3H1]) or PPIB (coding for Cyclophilin B [CYPB]) cause recessive forms of osteogenesis imperfecta and loss or decrease of type I collagen prolyl 3-hydroxylation. A comprehensive analysis of the p...

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Main Authors: Dustin Baldridge, Jennifer Lennington, MaryAnn Weis, Erica P Homan, Ming-Ming Jiang, Elda Munivez, Douglas R Keene, William R Hogue, Shawna Pyott, Peter H Byers, Deborah Krakow, Daniel H Cohn, David R Eyre, Brendan Lee, Roy Morello
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-05-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2868021?pdf=render
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spelling doaj-a2455921e2124b3abb340b3b7c2df9422020-11-25T01:02:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-05-0155e1056010.1371/journal.pone.0010560Generalized connective tissue disease in Crtap-/- mouse.Dustin BaldridgeJennifer LenningtonMaryAnn WeisErica P HomanMing-Ming JiangElda MunivezDouglas R KeeneWilliam R HogueShawna PyottPeter H ByersDeborah KrakowDaniel H CohnDavid R EyreBrendan LeeRoy MorelloMutations in CRTAP (coding for cartilage-associated protein), LEPRE1 (coding for prolyl 3-hydroxylase 1 [P3H1]) or PPIB (coding for Cyclophilin B [CYPB]) cause recessive forms of osteogenesis imperfecta and loss or decrease of type I collagen prolyl 3-hydroxylation. A comprehensive analysis of the phenotype of the Crtap-/- mice revealed multiple abnormalities of connective tissue, including in the lungs, kidneys, and skin, consistent with systemic dysregulation of collagen homeostasis within the extracellular matrix. Both Crtap-/- lung and kidney glomeruli showed increased cellular proliferation. Histologically, the lungs showed increased alveolar spacing, while the kidneys showed evidence of segmental glomerulosclerosis, with abnormal collagen deposition. The Crtap-/- skin had decreased mechanical integrity. In addition to the expected loss of proline 986 3-hydroxylation in alpha1(I) and alpha1(II) chains, there was also loss of 3Hyp at proline 986 in alpha2(V) chains. In contrast, at two of the known 3Hyp sites in alpha1(IV) chains from Crtap-/- kidneys there were normal levels of 3-hydroxylation. On a cellular level, loss of CRTAP in human OI fibroblasts led to a secondary loss of P3H1, and vice versa. These data suggest that both CRTAP and P3H1 are required to maintain a stable complex that 3-hydroxylates canonical proline sites within clade A (types I, II, and V) collagen chains. Loss of this activity leads to a multi-systemic connective tissue disease that affects bone, cartilage, lung, kidney, and skin.http://europepmc.org/articles/PMC2868021?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dustin Baldridge
Jennifer Lennington
MaryAnn Weis
Erica P Homan
Ming-Ming Jiang
Elda Munivez
Douglas R Keene
William R Hogue
Shawna Pyott
Peter H Byers
Deborah Krakow
Daniel H Cohn
David R Eyre
Brendan Lee
Roy Morello
spellingShingle Dustin Baldridge
Jennifer Lennington
MaryAnn Weis
Erica P Homan
Ming-Ming Jiang
Elda Munivez
Douglas R Keene
William R Hogue
Shawna Pyott
Peter H Byers
Deborah Krakow
Daniel H Cohn
David R Eyre
Brendan Lee
Roy Morello
Generalized connective tissue disease in Crtap-/- mouse.
PLoS ONE
author_facet Dustin Baldridge
Jennifer Lennington
MaryAnn Weis
Erica P Homan
Ming-Ming Jiang
Elda Munivez
Douglas R Keene
William R Hogue
Shawna Pyott
Peter H Byers
Deborah Krakow
Daniel H Cohn
David R Eyre
Brendan Lee
Roy Morello
author_sort Dustin Baldridge
title Generalized connective tissue disease in Crtap-/- mouse.
title_short Generalized connective tissue disease in Crtap-/- mouse.
title_full Generalized connective tissue disease in Crtap-/- mouse.
title_fullStr Generalized connective tissue disease in Crtap-/- mouse.
title_full_unstemmed Generalized connective tissue disease in Crtap-/- mouse.
title_sort generalized connective tissue disease in crtap-/- mouse.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-05-01
description Mutations in CRTAP (coding for cartilage-associated protein), LEPRE1 (coding for prolyl 3-hydroxylase 1 [P3H1]) or PPIB (coding for Cyclophilin B [CYPB]) cause recessive forms of osteogenesis imperfecta and loss or decrease of type I collagen prolyl 3-hydroxylation. A comprehensive analysis of the phenotype of the Crtap-/- mice revealed multiple abnormalities of connective tissue, including in the lungs, kidneys, and skin, consistent with systemic dysregulation of collagen homeostasis within the extracellular matrix. Both Crtap-/- lung and kidney glomeruli showed increased cellular proliferation. Histologically, the lungs showed increased alveolar spacing, while the kidneys showed evidence of segmental glomerulosclerosis, with abnormal collagen deposition. The Crtap-/- skin had decreased mechanical integrity. In addition to the expected loss of proline 986 3-hydroxylation in alpha1(I) and alpha1(II) chains, there was also loss of 3Hyp at proline 986 in alpha2(V) chains. In contrast, at two of the known 3Hyp sites in alpha1(IV) chains from Crtap-/- kidneys there were normal levels of 3-hydroxylation. On a cellular level, loss of CRTAP in human OI fibroblasts led to a secondary loss of P3H1, and vice versa. These data suggest that both CRTAP and P3H1 are required to maintain a stable complex that 3-hydroxylates canonical proline sites within clade A (types I, II, and V) collagen chains. Loss of this activity leads to a multi-systemic connective tissue disease that affects bone, cartilage, lung, kidney, and skin.
url http://europepmc.org/articles/PMC2868021?pdf=render
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