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Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification

Primary familial brain calcification (PFBC) is a rare neurodegenerative disorder characterized by a combination of neurological, psychiatric, and cognitive decline associated with calcium deposition on brain imaging. To date, mutations in five genes have been linked to PFBC. However, more than 50% o...

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Autores principales: Schottlaender, Lucia V., Abeti, Rosella, Jaunmuktane, Zane, Macmillan, Carol, Chelban, Viorica, O’Callaghan, Benjamin, McKinley, John, Maroofian, Reza, Efthymiou, Stephanie, Athanasiou-Fragkouli, Alkyoni, Forbes, Raeburn, Soutar, Marc P.M., Livingston, John H., Kalmar, Bernardett, Swayne, Orlando, Hotton, Gary, Pittman, Alan, Mendes de Oliveira, João Ricardo, de Grandis, Maria, Richard-Loendt, Angela, Launchbury, Francesca, Althonayan, Juri, McDonnell, Gavin, Carr, Aisling, Khan, Suliman, Beetz, Christian, Bisgin, Atil, Tug Bozdogan, Sevcan, Begtrup, Amber, Torti, Erin, Greensmith, Linda, Giunti, Paola, Morrison, Patrick J., Brandner, Sebastian, Aurrand-Lions, Michel, Houlden, Henry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058839/
https://www.ncbi.nlm.nih.gov/pubmed/32142645
http://dx.doi.org/10.1016/j.ajhg.2020.02.007
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author Schottlaender, Lucia V.
Abeti, Rosella
Jaunmuktane, Zane
Macmillan, Carol
Chelban, Viorica
O’Callaghan, Benjamin
McKinley, John
Maroofian, Reza
Efthymiou, Stephanie
Athanasiou-Fragkouli, Alkyoni
Forbes, Raeburn
Soutar, Marc P.M.
Livingston, John H.
Kalmar, Bernardett
Swayne, Orlando
Hotton, Gary
Pittman, Alan
Mendes de Oliveira, João Ricardo
de Grandis, Maria
Richard-Loendt, Angela
Launchbury, Francesca
Althonayan, Juri
McDonnell, Gavin
Carr, Aisling
Khan, Suliman
Beetz, Christian
Bisgin, Atil
Tug Bozdogan, Sevcan
Begtrup, Amber
Torti, Erin
Greensmith, Linda
Giunti, Paola
Morrison, Patrick J.
Brandner, Sebastian
Aurrand-Lions, Michel
Houlden, Henry
author_facet Schottlaender, Lucia V.
Abeti, Rosella
Jaunmuktane, Zane
Macmillan, Carol
Chelban, Viorica
O’Callaghan, Benjamin
McKinley, John
Maroofian, Reza
Efthymiou, Stephanie
Athanasiou-Fragkouli, Alkyoni
Forbes, Raeburn
Soutar, Marc P.M.
Livingston, John H.
Kalmar, Bernardett
Swayne, Orlando
Hotton, Gary
Pittman, Alan
Mendes de Oliveira, João Ricardo
de Grandis, Maria
Richard-Loendt, Angela
Launchbury, Francesca
Althonayan, Juri
McDonnell, Gavin
Carr, Aisling
Khan, Suliman
Beetz, Christian
Bisgin, Atil
Tug Bozdogan, Sevcan
Begtrup, Amber
Torti, Erin
Greensmith, Linda
Giunti, Paola
Morrison, Patrick J.
Brandner, Sebastian
Aurrand-Lions, Michel
Houlden, Henry
author_sort Schottlaender, Lucia V.
collection PubMed
description Primary familial brain calcification (PFBC) is a rare neurodegenerative disorder characterized by a combination of neurological, psychiatric, and cognitive decline associated with calcium deposition on brain imaging. To date, mutations in five genes have been linked to PFBC. However, more than 50% of individuals affected by PFBC have no molecular diagnosis. We report four unrelated families presenting with initial learning difficulties and seizures and later psychiatric symptoms, cerebellar ataxia, extrapyramidal signs, and extensive calcifications on brain imaging. Through a combination of homozygosity mapping and exome sequencing, we mapped this phenotype to chromosome 21q21.3 and identified bi-allelic variants in JAM2. JAM2 encodes for the junctional-adhesion-molecule-2, a key tight-junction protein in blood-brain-barrier permeability. We show that JAM2 variants lead to reduction of JAM2 mRNA expression and absence of JAM2 protein in patient’s fibroblasts, consistent with a loss-of-function mechanism. We show that the human phenotype is replicated in the jam2 complete knockout mouse (jam2 KO). Furthermore, neuropathology of jam2 KO mouse showed prominent vacuolation in the cerebral cortex, thalamus, and cerebellum and particularly widespread vacuolation in the midbrain with reactive astrogliosis and neuronal density reduction. The regions of the human brain affected on neuroimaging are similar to the affected brain areas in the myorg PFBC null mouse. Along with JAM3 and OCLN, JAM2 is the third tight-junction gene in which bi-allelic variants are associated with brain calcification, suggesting that defective cell-to-cell adhesion and dysfunction of the movement of solutes through the paracellular spaces in the neurovascular unit is a key mechanism in CNS calcification.
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spelling pubmed-70588392020-07-02 Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification Schottlaender, Lucia V. Abeti, Rosella Jaunmuktane, Zane Macmillan, Carol Chelban, Viorica O’Callaghan, Benjamin McKinley, John Maroofian, Reza Efthymiou, Stephanie Athanasiou-Fragkouli, Alkyoni Forbes, Raeburn Soutar, Marc P.M. Livingston, John H. Kalmar, Bernardett Swayne, Orlando Hotton, Gary Pittman, Alan Mendes de Oliveira, João Ricardo de Grandis, Maria Richard-Loendt, Angela Launchbury, Francesca Althonayan, Juri McDonnell, Gavin Carr, Aisling Khan, Suliman Beetz, Christian Bisgin, Atil Tug Bozdogan, Sevcan Begtrup, Amber Torti, Erin Greensmith, Linda Giunti, Paola Morrison, Patrick J. Brandner, Sebastian Aurrand-Lions, Michel Houlden, Henry Am J Hum Genet Report Primary familial brain calcification (PFBC) is a rare neurodegenerative disorder characterized by a combination of neurological, psychiatric, and cognitive decline associated with calcium deposition on brain imaging. To date, mutations in five genes have been linked to PFBC. However, more than 50% of individuals affected by PFBC have no molecular diagnosis. We report four unrelated families presenting with initial learning difficulties and seizures and later psychiatric symptoms, cerebellar ataxia, extrapyramidal signs, and extensive calcifications on brain imaging. Through a combination of homozygosity mapping and exome sequencing, we mapped this phenotype to chromosome 21q21.3 and identified bi-allelic variants in JAM2. JAM2 encodes for the junctional-adhesion-molecule-2, a key tight-junction protein in blood-brain-barrier permeability. We show that JAM2 variants lead to reduction of JAM2 mRNA expression and absence of JAM2 protein in patient’s fibroblasts, consistent with a loss-of-function mechanism. We show that the human phenotype is replicated in the jam2 complete knockout mouse (jam2 KO). Furthermore, neuropathology of jam2 KO mouse showed prominent vacuolation in the cerebral cortex, thalamus, and cerebellum and particularly widespread vacuolation in the midbrain with reactive astrogliosis and neuronal density reduction. The regions of the human brain affected on neuroimaging are similar to the affected brain areas in the myorg PFBC null mouse. Along with JAM3 and OCLN, JAM2 is the third tight-junction gene in which bi-allelic variants are associated with brain calcification, suggesting that defective cell-to-cell adhesion and dysfunction of the movement of solutes through the paracellular spaces in the neurovascular unit is a key mechanism in CNS calcification. Elsevier 2020-03-05 2020-03-05 /pmc/articles/PMC7058839/ /pubmed/32142645 http://dx.doi.org/10.1016/j.ajhg.2020.02.007 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Report
Schottlaender, Lucia V.
Abeti, Rosella
Jaunmuktane, Zane
Macmillan, Carol
Chelban, Viorica
O’Callaghan, Benjamin
McKinley, John
Maroofian, Reza
Efthymiou, Stephanie
Athanasiou-Fragkouli, Alkyoni
Forbes, Raeburn
Soutar, Marc P.M.
Livingston, John H.
Kalmar, Bernardett
Swayne, Orlando
Hotton, Gary
Pittman, Alan
Mendes de Oliveira, João Ricardo
de Grandis, Maria
Richard-Loendt, Angela
Launchbury, Francesca
Althonayan, Juri
McDonnell, Gavin
Carr, Aisling
Khan, Suliman
Beetz, Christian
Bisgin, Atil
Tug Bozdogan, Sevcan
Begtrup, Amber
Torti, Erin
Greensmith, Linda
Giunti, Paola
Morrison, Patrick J.
Brandner, Sebastian
Aurrand-Lions, Michel
Houlden, Henry
Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title_full Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title_fullStr Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title_full_unstemmed Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title_short Bi-allelic JAM2 Variants Lead to Early-Onset Recessive Primary Familial Brain Calcification
title_sort bi-allelic jam2 variants lead to early-onset recessive primary familial brain calcification
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058839/
https://www.ncbi.nlm.nih.gov/pubmed/32142645
http://dx.doi.org/10.1016/j.ajhg.2020.02.007
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