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Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy

Hyaline fibromatosis syndrome (HFS), resulting from ANTXR2 mutations, is an ultra-rare disease that causes intestinal lymphangiectasia and protein-losing enteropathy (PLE). The mechanisms leading to the gastrointestinal phenotype in these patients are not well defined. We present two patients with c...

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Autores principales: van Rijn, Jorik M., Werner, Lael, Aydemir, Yusuf, Spronck, Joey M.A., Pode-Shakked, Ben, van Hoesel, Marliek, Shimshoni, Elee, Polak-Charcon, Sylvie, Talmi, Liron, Eren, Makbule, Weiss, Batia, H.J. Houwen, Roderick, Barshack, Iris, Somech, Raz, Nieuwenhuis, Edward E.S., Sagi, Irit, Raas-Rothschild, Annick, Middendorp, Sabine, Shouval, Dror S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7662532/
https://www.ncbi.nlm.nih.gov/pubmed/33147779
http://dx.doi.org/10.3390/ijms21218200
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author van Rijn, Jorik M.
Werner, Lael
Aydemir, Yusuf
Spronck, Joey M.A.
Pode-Shakked, Ben
van Hoesel, Marliek
Shimshoni, Elee
Polak-Charcon, Sylvie
Talmi, Liron
Eren, Makbule
Weiss, Batia
H.J. Houwen, Roderick
Barshack, Iris
Somech, Raz
Nieuwenhuis, Edward E.S.
Sagi, Irit
Raas-Rothschild, Annick
Middendorp, Sabine
Shouval, Dror S.
author_facet van Rijn, Jorik M.
Werner, Lael
Aydemir, Yusuf
Spronck, Joey M.A.
Pode-Shakked, Ben
van Hoesel, Marliek
Shimshoni, Elee
Polak-Charcon, Sylvie
Talmi, Liron
Eren, Makbule
Weiss, Batia
H.J. Houwen, Roderick
Barshack, Iris
Somech, Raz
Nieuwenhuis, Edward E.S.
Sagi, Irit
Raas-Rothschild, Annick
Middendorp, Sabine
Shouval, Dror S.
author_sort van Rijn, Jorik M.
collection PubMed
description Hyaline fibromatosis syndrome (HFS), resulting from ANTXR2 mutations, is an ultra-rare disease that causes intestinal lymphangiectasia and protein-losing enteropathy (PLE). The mechanisms leading to the gastrointestinal phenotype in these patients are not well defined. We present two patients with congenital diarrhea, severe PLE and unique clinical features resulting from deleterious ANTXR2 mutations. Intestinal organoids were generated from one of the patients, along with CRISPR-Cas9 ANTXR2 knockout, and compared with organoids from two healthy controls. The ANTXR2-deficient organoids displayed normal growth and polarity, compared to controls. Using an anthrax-toxin assay we showed that the c.155C>T mutation causes loss-of-function of ANTXR2 protein. An intrinsic defect of monolayer formation in patient-derived or ANTXR2(KO) organoids was not apparent, suggesting normal epithelial function. However, electron microscopy and second harmonic generation imaging showed abnormal collagen deposition in duodenal samples of these patients. Specifically, collagen VI, which is known to bind ANTXR2, was highly expressed in the duodenum of these patients. In conclusion, despite resistance to anthrax-toxin, epithelial cell function, and specifically monolayer formation, is intact in patients with HFS. Nevertheless, loss of ANTXR2-mediated signaling leads to collagen VI accumulation in the duodenum and abnormal extracellular matrix composition, which likely plays a role in development of PLE.
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spelling pubmed-76625322020-11-14 Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy van Rijn, Jorik M. Werner, Lael Aydemir, Yusuf Spronck, Joey M.A. Pode-Shakked, Ben van Hoesel, Marliek Shimshoni, Elee Polak-Charcon, Sylvie Talmi, Liron Eren, Makbule Weiss, Batia H.J. Houwen, Roderick Barshack, Iris Somech, Raz Nieuwenhuis, Edward E.S. Sagi, Irit Raas-Rothschild, Annick Middendorp, Sabine Shouval, Dror S. Int J Mol Sci Article Hyaline fibromatosis syndrome (HFS), resulting from ANTXR2 mutations, is an ultra-rare disease that causes intestinal lymphangiectasia and protein-losing enteropathy (PLE). The mechanisms leading to the gastrointestinal phenotype in these patients are not well defined. We present two patients with congenital diarrhea, severe PLE and unique clinical features resulting from deleterious ANTXR2 mutations. Intestinal organoids were generated from one of the patients, along with CRISPR-Cas9 ANTXR2 knockout, and compared with organoids from two healthy controls. The ANTXR2-deficient organoids displayed normal growth and polarity, compared to controls. Using an anthrax-toxin assay we showed that the c.155C>T mutation causes loss-of-function of ANTXR2 protein. An intrinsic defect of monolayer formation in patient-derived or ANTXR2(KO) organoids was not apparent, suggesting normal epithelial function. However, electron microscopy and second harmonic generation imaging showed abnormal collagen deposition in duodenal samples of these patients. Specifically, collagen VI, which is known to bind ANTXR2, was highly expressed in the duodenum of these patients. In conclusion, despite resistance to anthrax-toxin, epithelial cell function, and specifically monolayer formation, is intact in patients with HFS. Nevertheless, loss of ANTXR2-mediated signaling leads to collagen VI accumulation in the duodenum and abnormal extracellular matrix composition, which likely plays a role in development of PLE. MDPI 2020-11-02 /pmc/articles/PMC7662532/ /pubmed/33147779 http://dx.doi.org/10.3390/ijms21218200 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
van Rijn, Jorik M.
Werner, Lael
Aydemir, Yusuf
Spronck, Joey M.A.
Pode-Shakked, Ben
van Hoesel, Marliek
Shimshoni, Elee
Polak-Charcon, Sylvie
Talmi, Liron
Eren, Makbule
Weiss, Batia
H.J. Houwen, Roderick
Barshack, Iris
Somech, Raz
Nieuwenhuis, Edward E.S.
Sagi, Irit
Raas-Rothschild, Annick
Middendorp, Sabine
Shouval, Dror S.
Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title_full Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title_fullStr Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title_full_unstemmed Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title_short Enhanced Collagen Deposition in the Duodenum of Patients with Hyaline Fibromatosis Syndrome and Protein Losing Enteropathy
title_sort enhanced collagen deposition in the duodenum of patients with hyaline fibromatosis syndrome and protein losing enteropathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7662532/
https://www.ncbi.nlm.nih.gov/pubmed/33147779
http://dx.doi.org/10.3390/ijms21218200
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