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X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes

X-linked intellectual disability (XLID) is a clinically and genetically heterogeneous disorder. During the past two decades in excess of 100 X-chromosome ID genes have been identified. Yet, a large number of families mapping to the X-chromosome remained unresolved suggesting that more XLID genes or...

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Autores principales: Hu, H, Haas, S A, Chelly, J, Van Esch, H, Raynaud, M, de Brouwer, A P M, Weinert, S, Froyen, G, Frints, S G M, Laumonnier, F, Zemojtel, T, Love, M I, Richard, H, Emde, A-K, Bienek, M, Jensen, C, Hambrock, M, Fischer, U, Langnick, C, Feldkamp, M, Wissink-Lindhout, W, Lebrun, N, Castelnau, L, Rucci, J, Montjean, R, Dorseuil, O, Billuart, P, Stuhlmann, T, Shaw, M, Corbett, M A, Gardner, A, Willis-Owen, S, Tan, C, Friend, K L, Belet, S, van Roozendaal, K E P, Jimenez-Pocquet, M, Moizard, M-P, Ronce, N, Sun, R, O'Keeffe, S, Chenna, R, van Bömmel, A, Göke, J, Hackett, A, Field, M, Christie, L, Boyle, J, Haan, E, Nelson, J, Turner, G, Baynam, G, Gillessen-Kaesbach, G, Müller, U, Steinberger, D, Budny, B, Badura-Stronka, M, Latos-Bieleńska, A, Ousager, L B, Wieacker, P, Rodríguez Criado, G, Bondeson, M-L, Annerén, G, Dufke, A, Cohen, M, Van Maldergem, L, Vincent-Delorme, C, Echenne, B, Simon-Bouy, B, Kleefstra, T, Willemsen, M, Fryns, J-P, Devriendt, K, Ullmann, R, Vingron, M, Wrogemann, K, Wienker, T F, Tzschach, A, van Bokhoven, H, Gecz, J, Jentsch, T J, Chen, W, Ropers, H-H, Kalscheuer, V M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5414091/
https://www.ncbi.nlm.nih.gov/pubmed/25644381
http://dx.doi.org/10.1038/mp.2014.193
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author Hu, H
Haas, S A
Chelly, J
Van Esch, H
Raynaud, M
de Brouwer, A P M
Weinert, S
Froyen, G
Frints, S G M
Laumonnier, F
Zemojtel, T
Love, M I
Richard, H
Emde, A-K
Bienek, M
Jensen, C
Hambrock, M
Fischer, U
Langnick, C
Feldkamp, M
Wissink-Lindhout, W
Lebrun, N
Castelnau, L
Rucci, J
Montjean, R
Dorseuil, O
Billuart, P
Stuhlmann, T
Shaw, M
Corbett, M A
Gardner, A
Willis-Owen, S
Tan, C
Friend, K L
Belet, S
van Roozendaal, K E P
Jimenez-Pocquet, M
Moizard, M-P
Ronce, N
Sun, R
O'Keeffe, S
Chenna, R
van Bömmel, A
Göke, J
Hackett, A
Field, M
Christie, L
Boyle, J
Haan, E
Nelson, J
Turner, G
Baynam, G
Gillessen-Kaesbach, G
Müller, U
Steinberger, D
Budny, B
Badura-Stronka, M
Latos-Bieleńska, A
Ousager, L B
Wieacker, P
Rodríguez Criado, G
Bondeson, M-L
Annerén, G
Dufke, A
Cohen, M
Van Maldergem, L
Vincent-Delorme, C
Echenne, B
Simon-Bouy, B
Kleefstra, T
Willemsen, M
Fryns, J-P
Devriendt, K
Ullmann, R
Vingron, M
Wrogemann, K
Wienker, T F
Tzschach, A
van Bokhoven, H
Gecz, J
Jentsch, T J
Chen, W
Ropers, H-H
Kalscheuer, V M
author_facet Hu, H
Haas, S A
Chelly, J
Van Esch, H
Raynaud, M
de Brouwer, A P M
Weinert, S
Froyen, G
Frints, S G M
Laumonnier, F
Zemojtel, T
Love, M I
Richard, H
Emde, A-K
Bienek, M
Jensen, C
Hambrock, M
Fischer, U
Langnick, C
Feldkamp, M
Wissink-Lindhout, W
Lebrun, N
Castelnau, L
Rucci, J
Montjean, R
Dorseuil, O
Billuart, P
Stuhlmann, T
Shaw, M
Corbett, M A
Gardner, A
Willis-Owen, S
Tan, C
Friend, K L
Belet, S
van Roozendaal, K E P
Jimenez-Pocquet, M
Moizard, M-P
Ronce, N
Sun, R
O'Keeffe, S
Chenna, R
van Bömmel, A
Göke, J
Hackett, A
Field, M
Christie, L
Boyle, J
Haan, E
Nelson, J
Turner, G
Baynam, G
Gillessen-Kaesbach, G
Müller, U
Steinberger, D
Budny, B
Badura-Stronka, M
Latos-Bieleńska, A
Ousager, L B
Wieacker, P
Rodríguez Criado, G
Bondeson, M-L
Annerén, G
Dufke, A
Cohen, M
Van Maldergem, L
Vincent-Delorme, C
Echenne, B
Simon-Bouy, B
Kleefstra, T
Willemsen, M
Fryns, J-P
Devriendt, K
Ullmann, R
Vingron, M
Wrogemann, K
Wienker, T F
Tzschach, A
van Bokhoven, H
Gecz, J
Jentsch, T J
Chen, W
Ropers, H-H
Kalscheuer, V M
author_sort Hu, H
collection PubMed
description X-linked intellectual disability (XLID) is a clinically and genetically heterogeneous disorder. During the past two decades in excess of 100 X-chromosome ID genes have been identified. Yet, a large number of families mapping to the X-chromosome remained unresolved suggesting that more XLID genes or loci are yet to be identified. Here, we have investigated 405 unresolved families with XLID. We employed massively parallel sequencing of all X-chromosome exons in the index males. The majority of these males were previously tested negative for copy number variations and for mutations in a subset of known XLID genes by Sanger sequencing. In total, 745 X-chromosomal genes were screened. After stringent filtering, a total of 1297 non-recurrent exonic variants remained for prioritization. Co-segregation analysis of potential clinically relevant changes revealed that 80 families (20%) carried pathogenic variants in established XLID genes. In 19 families, we detected likely causative protein truncating and missense variants in 7 novel and validated XLID genes (CLCN4, CNKSR2, FRMPD4, KLHL15, LAS1L, RLIM and USP27X) and potentially deleterious variants in 2 novel candidate XLID genes (CDK16 and TAF1). We show that the CLCN4 and CNKSR2 variants impair protein functions as indicated by electrophysiological studies and altered differentiation of cultured primary neurons from Clcn4(−/−) mice or after mRNA knock-down. The newly identified and candidate XLID proteins belong to pathways and networks with established roles in cognitive function and intellectual disability in particular. We suggest that systematic sequencing of all X-chromosomal genes in a cohort of patients with genetic evidence for X-chromosome locus involvement may resolve up to 58% of Fragile X-negative cases.
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spelling pubmed-54140912017-05-17 X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes Hu, H Haas, S A Chelly, J Van Esch, H Raynaud, M de Brouwer, A P M Weinert, S Froyen, G Frints, S G M Laumonnier, F Zemojtel, T Love, M I Richard, H Emde, A-K Bienek, M Jensen, C Hambrock, M Fischer, U Langnick, C Feldkamp, M Wissink-Lindhout, W Lebrun, N Castelnau, L Rucci, J Montjean, R Dorseuil, O Billuart, P Stuhlmann, T Shaw, M Corbett, M A Gardner, A Willis-Owen, S Tan, C Friend, K L Belet, S van Roozendaal, K E P Jimenez-Pocquet, M Moizard, M-P Ronce, N Sun, R O'Keeffe, S Chenna, R van Bömmel, A Göke, J Hackett, A Field, M Christie, L Boyle, J Haan, E Nelson, J Turner, G Baynam, G Gillessen-Kaesbach, G Müller, U Steinberger, D Budny, B Badura-Stronka, M Latos-Bieleńska, A Ousager, L B Wieacker, P Rodríguez Criado, G Bondeson, M-L Annerén, G Dufke, A Cohen, M Van Maldergem, L Vincent-Delorme, C Echenne, B Simon-Bouy, B Kleefstra, T Willemsen, M Fryns, J-P Devriendt, K Ullmann, R Vingron, M Wrogemann, K Wienker, T F Tzschach, A van Bokhoven, H Gecz, J Jentsch, T J Chen, W Ropers, H-H Kalscheuer, V M Mol Psychiatry Original Article X-linked intellectual disability (XLID) is a clinically and genetically heterogeneous disorder. During the past two decades in excess of 100 X-chromosome ID genes have been identified. Yet, a large number of families mapping to the X-chromosome remained unresolved suggesting that more XLID genes or loci are yet to be identified. Here, we have investigated 405 unresolved families with XLID. We employed massively parallel sequencing of all X-chromosome exons in the index males. The majority of these males were previously tested negative for copy number variations and for mutations in a subset of known XLID genes by Sanger sequencing. In total, 745 X-chromosomal genes were screened. After stringent filtering, a total of 1297 non-recurrent exonic variants remained for prioritization. Co-segregation analysis of potential clinically relevant changes revealed that 80 families (20%) carried pathogenic variants in established XLID genes. In 19 families, we detected likely causative protein truncating and missense variants in 7 novel and validated XLID genes (CLCN4, CNKSR2, FRMPD4, KLHL15, LAS1L, RLIM and USP27X) and potentially deleterious variants in 2 novel candidate XLID genes (CDK16 and TAF1). We show that the CLCN4 and CNKSR2 variants impair protein functions as indicated by electrophysiological studies and altered differentiation of cultured primary neurons from Clcn4(−/−) mice or after mRNA knock-down. The newly identified and candidate XLID proteins belong to pathways and networks with established roles in cognitive function and intellectual disability in particular. We suggest that systematic sequencing of all X-chromosomal genes in a cohort of patients with genetic evidence for X-chromosome locus involvement may resolve up to 58% of Fragile X-negative cases. Nature Publishing Group 2016-01 2015-02-03 /pmc/articles/PMC5414091/ /pubmed/25644381 http://dx.doi.org/10.1038/mp.2014.193 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Hu, H
Haas, S A
Chelly, J
Van Esch, H
Raynaud, M
de Brouwer, A P M
Weinert, S
Froyen, G
Frints, S G M
Laumonnier, F
Zemojtel, T
Love, M I
Richard, H
Emde, A-K
Bienek, M
Jensen, C
Hambrock, M
Fischer, U
Langnick, C
Feldkamp, M
Wissink-Lindhout, W
Lebrun, N
Castelnau, L
Rucci, J
Montjean, R
Dorseuil, O
Billuart, P
Stuhlmann, T
Shaw, M
Corbett, M A
Gardner, A
Willis-Owen, S
Tan, C
Friend, K L
Belet, S
van Roozendaal, K E P
Jimenez-Pocquet, M
Moizard, M-P
Ronce, N
Sun, R
O'Keeffe, S
Chenna, R
van Bömmel, A
Göke, J
Hackett, A
Field, M
Christie, L
Boyle, J
Haan, E
Nelson, J
Turner, G
Baynam, G
Gillessen-Kaesbach, G
Müller, U
Steinberger, D
Budny, B
Badura-Stronka, M
Latos-Bieleńska, A
Ousager, L B
Wieacker, P
Rodríguez Criado, G
Bondeson, M-L
Annerén, G
Dufke, A
Cohen, M
Van Maldergem, L
Vincent-Delorme, C
Echenne, B
Simon-Bouy, B
Kleefstra, T
Willemsen, M
Fryns, J-P
Devriendt, K
Ullmann, R
Vingron, M
Wrogemann, K
Wienker, T F
Tzschach, A
van Bokhoven, H
Gecz, J
Jentsch, T J
Chen, W
Ropers, H-H
Kalscheuer, V M
X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title_full X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title_fullStr X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title_full_unstemmed X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title_short X-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
title_sort x-exome sequencing of 405 unresolved families identifies seven novel intellectual disability genes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5414091/
https://www.ncbi.nlm.nih.gov/pubmed/25644381
http://dx.doi.org/10.1038/mp.2014.193
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