Cargando…

Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders

Psychiatric disorders are a collection of heterogeneous mental disorders arising from a contribution of genetic and environmental insults, many of which molecularly converge on transcriptional dysregulation, resulting in altered synaptic functions. The underlying mechanisms linking the genetic lesio...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Xinyuan, Ye, Fei, Wen, Zhexing, Guo, Ziyuan, Yu, Chuan, Huang, Wei-Kai, Ringeling, Francisca Rojas, Su, Yijing, Zheng, Wei, Zhou, Guomin, Christian, Kimberly M., Song, Hongjun, Zhang, Mingjie, Ming, Guo-li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8444148/
https://www.ncbi.nlm.nih.gov/pubmed/31444471
http://dx.doi.org/10.1038/s41380-019-0485-2
_version_ 1784568429302251520
author Wang, Xinyuan
Ye, Fei
Wen, Zhexing
Guo, Ziyuan
Yu, Chuan
Huang, Wei-Kai
Ringeling, Francisca Rojas
Su, Yijing
Zheng, Wei
Zhou, Guomin
Christian, Kimberly M.
Song, Hongjun
Zhang, Mingjie
Ming, Guo-li
author_facet Wang, Xinyuan
Ye, Fei
Wen, Zhexing
Guo, Ziyuan
Yu, Chuan
Huang, Wei-Kai
Ringeling, Francisca Rojas
Su, Yijing
Zheng, Wei
Zhou, Guomin
Christian, Kimberly M.
Song, Hongjun
Zhang, Mingjie
Ming, Guo-li
author_sort Wang, Xinyuan
collection PubMed
description Psychiatric disorders are a collection of heterogeneous mental disorders arising from a contribution of genetic and environmental insults, many of which molecularly converge on transcriptional dysregulation, resulting in altered synaptic functions. The underlying mechanisms linking the genetic lesion and functional phenotypes remain largely unknown. Patient iPSC-derived neurons with a rare frame-shift DISC1 (Disrupted-in-schizophrenia 1) mutation have previously been shown to exhibit aberrant gene expression and deficits in synaptic functions. How DISC1 regulates gene expression is largely unknown. Here we show that activating transcription factor 4 (ATF4), a DISC1 binding partner, is more abundant in the nucleus of DISC1 mutant human neurons and exhibits enhanced binding to a collection of dysregulated genes. Functionally, overexpressing ATF4 in control neurons recapitulates deficits seen in DISC1 mutant neurons, whereas transcriptional and synaptic deficits are rescued in DISC1 mutant neurons with CRISPR-mediated heterozygous ATF4 knockout. By solving the high-resolution atomic structure of the DISC1-ATF4 complex, we show that mechanistically, the mutation of DISC1 disrupts normal DISC1-ATF4 interaction, and results in excessive ATF4 binding to DNA targets and deregulated gene expression. Together, our study identifies the molecular and structural basis of an DISC1-ATF4 interaction underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders.
format Online
Article
Text
id pubmed-8444148
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-84441482021-09-16 Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders Wang, Xinyuan Ye, Fei Wen, Zhexing Guo, Ziyuan Yu, Chuan Huang, Wei-Kai Ringeling, Francisca Rojas Su, Yijing Zheng, Wei Zhou, Guomin Christian, Kimberly M. Song, Hongjun Zhang, Mingjie Ming, Guo-li Mol Psychiatry Article Psychiatric disorders are a collection of heterogeneous mental disorders arising from a contribution of genetic and environmental insults, many of which molecularly converge on transcriptional dysregulation, resulting in altered synaptic functions. The underlying mechanisms linking the genetic lesion and functional phenotypes remain largely unknown. Patient iPSC-derived neurons with a rare frame-shift DISC1 (Disrupted-in-schizophrenia 1) mutation have previously been shown to exhibit aberrant gene expression and deficits in synaptic functions. How DISC1 regulates gene expression is largely unknown. Here we show that activating transcription factor 4 (ATF4), a DISC1 binding partner, is more abundant in the nucleus of DISC1 mutant human neurons and exhibits enhanced binding to a collection of dysregulated genes. Functionally, overexpressing ATF4 in control neurons recapitulates deficits seen in DISC1 mutant neurons, whereas transcriptional and synaptic deficits are rescued in DISC1 mutant neurons with CRISPR-mediated heterozygous ATF4 knockout. By solving the high-resolution atomic structure of the DISC1-ATF4 complex, we show that mechanistically, the mutation of DISC1 disrupts normal DISC1-ATF4 interaction, and results in excessive ATF4 binding to DNA targets and deregulated gene expression. Together, our study identifies the molecular and structural basis of an DISC1-ATF4 interaction underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders. 2019-08-23 2021-04 /pmc/articles/PMC8444148/ /pubmed/31444471 http://dx.doi.org/10.1038/s41380-019-0485-2 Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Wang, Xinyuan
Ye, Fei
Wen, Zhexing
Guo, Ziyuan
Yu, Chuan
Huang, Wei-Kai
Ringeling, Francisca Rojas
Su, Yijing
Zheng, Wei
Zhou, Guomin
Christian, Kimberly M.
Song, Hongjun
Zhang, Mingjie
Ming, Guo-li
Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title_full Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title_fullStr Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title_full_unstemmed Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title_short Structural interaction between DISC1 and ATF4 underlying transcriptional and synaptic dysregulation in an iPSC model of mental disorders
title_sort structural interaction between disc1 and atf4 underlying transcriptional and synaptic dysregulation in an ipsc model of mental disorders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8444148/
https://www.ncbi.nlm.nih.gov/pubmed/31444471
http://dx.doi.org/10.1038/s41380-019-0485-2
work_keys_str_mv AT wangxinyuan structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT yefei structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT wenzhexing structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT guoziyuan structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT yuchuan structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT huangweikai structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT ringelingfranciscarojas structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT suyijing structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT zhengwei structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT zhouguomin structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT christiankimberlym structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT songhongjun structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT zhangmingjie structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders
AT mingguoli structuralinteractionbetweendisc1andatf4underlyingtranscriptionalandsynapticdysregulationinanipscmodelofmentaldisorders