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Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations

Mutations in the actin motor protein myosinVb (myo5b) cause aberrant apical cargo transport and the congenital enteropathy microvillus inclusion disease (MVID). Recently, missense mutations in myo5b were also associated with progressive familial intrahepatic cholestasis (MYO5B-PFIC). Here, we thorou...

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Autores principales: Hess, Michael W., Krainer, Iris M., Filipek, Przemyslaw A., Witting, Barbara, Gutleben, Karin, Vietor, Ilja, Zoller, Heinz, Aldrian, Denise, Sturm, Ekkehard, Goldenring, James R., Janecke, Andreas R., Müller, Thomas, Huber, Lukas A., Vogel, Georg F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125609/
https://www.ncbi.nlm.nih.gov/pubmed/33924896
http://dx.doi.org/10.3390/jcm10091901
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author Hess, Michael W.
Krainer, Iris M.
Filipek, Przemyslaw A.
Witting, Barbara
Gutleben, Karin
Vietor, Ilja
Zoller, Heinz
Aldrian, Denise
Sturm, Ekkehard
Goldenring, James R.
Janecke, Andreas R.
Müller, Thomas
Huber, Lukas A.
Vogel, Georg F.
author_facet Hess, Michael W.
Krainer, Iris M.
Filipek, Przemyslaw A.
Witting, Barbara
Gutleben, Karin
Vietor, Ilja
Zoller, Heinz
Aldrian, Denise
Sturm, Ekkehard
Goldenring, James R.
Janecke, Andreas R.
Müller, Thomas
Huber, Lukas A.
Vogel, Georg F.
author_sort Hess, Michael W.
collection PubMed
description Mutations in the actin motor protein myosinVb (myo5b) cause aberrant apical cargo transport and the congenital enteropathy microvillus inclusion disease (MVID). Recently, missense mutations in myo5b were also associated with progressive familial intrahepatic cholestasis (MYO5B-PFIC). Here, we thoroughly characterized the ultrastructural and immuno-cytochemical phenotype of hepatocytes and duodenal enterocytes from a unique case of an adult MYO5B-PFIC patient who showed constant hepatopathy but only periodic enteric symptoms. Selected data from two other patients supported the findings. Advanced methods such as cryo-fixation, freeze-substitution, immuno-gold labeling, electron tomography and immuno-fluorescence microscopy complemented the standard procedures. Liver biopsies showed mislocalization of Rab11 and bile canalicular membrane proteins. Rab11-positive vesicles clustered around bile canaliculi and resembled subapical clusters of aberrant recycling endosomes in enterocytes from MVID patients. The adult patient studied in detail showed a severe, MVID-specific enterocyte phenotype, despite only a mild clinical intestinal presentation. This included mislocalization of numerous proteins essential for apical cargo transport and morphological alterations. We characterized the heterogeneous population of large catabolic organelles regarding their complex ultrastructure and differential distribution of autophagic and lysosomal marker proteins. Finally, we generated duodenal organoids/enteroids from biopsies that recapitulated all MVID hallmarks, demonstrating the potential of this disease model for personalized medicine.
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spelling pubmed-81256092021-05-17 Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations Hess, Michael W. Krainer, Iris M. Filipek, Przemyslaw A. Witting, Barbara Gutleben, Karin Vietor, Ilja Zoller, Heinz Aldrian, Denise Sturm, Ekkehard Goldenring, James R. Janecke, Andreas R. Müller, Thomas Huber, Lukas A. Vogel, Georg F. J Clin Med Article Mutations in the actin motor protein myosinVb (myo5b) cause aberrant apical cargo transport and the congenital enteropathy microvillus inclusion disease (MVID). Recently, missense mutations in myo5b were also associated with progressive familial intrahepatic cholestasis (MYO5B-PFIC). Here, we thoroughly characterized the ultrastructural and immuno-cytochemical phenotype of hepatocytes and duodenal enterocytes from a unique case of an adult MYO5B-PFIC patient who showed constant hepatopathy but only periodic enteric symptoms. Selected data from two other patients supported the findings. Advanced methods such as cryo-fixation, freeze-substitution, immuno-gold labeling, electron tomography and immuno-fluorescence microscopy complemented the standard procedures. Liver biopsies showed mislocalization of Rab11 and bile canalicular membrane proteins. Rab11-positive vesicles clustered around bile canaliculi and resembled subapical clusters of aberrant recycling endosomes in enterocytes from MVID patients. The adult patient studied in detail showed a severe, MVID-specific enterocyte phenotype, despite only a mild clinical intestinal presentation. This included mislocalization of numerous proteins essential for apical cargo transport and morphological alterations. We characterized the heterogeneous population of large catabolic organelles regarding their complex ultrastructure and differential distribution of autophagic and lysosomal marker proteins. Finally, we generated duodenal organoids/enteroids from biopsies that recapitulated all MVID hallmarks, demonstrating the potential of this disease model for personalized medicine. MDPI 2021-04-28 /pmc/articles/PMC8125609/ /pubmed/33924896 http://dx.doi.org/10.3390/jcm10091901 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hess, Michael W.
Krainer, Iris M.
Filipek, Przemyslaw A.
Witting, Barbara
Gutleben, Karin
Vietor, Ilja
Zoller, Heinz
Aldrian, Denise
Sturm, Ekkehard
Goldenring, James R.
Janecke, Andreas R.
Müller, Thomas
Huber, Lukas A.
Vogel, Georg F.
Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title_full Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title_fullStr Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title_full_unstemmed Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title_short Advanced Microscopy for Liver and Gut Ultrastructural Pathology in Patients with MVID and PFIC Caused by MYO5B Mutations
title_sort advanced microscopy for liver and gut ultrastructural pathology in patients with mvid and pfic caused by myo5b mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125609/
https://www.ncbi.nlm.nih.gov/pubmed/33924896
http://dx.doi.org/10.3390/jcm10091901
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