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Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia

BACKGROUND: Schizophrenia is a severe mental disorder with high heritability, and cognitive dysfunction is one of the core features. Growing evidence suggests the genetic risk of schizophrenia may contribute to cognitive impairments. The variant rs1635 (nucleotide sequence: c.455C>A; amino acid s...

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Autores principales: Yang, Yang, Su, Yi, Wei, Guiming, Kang, Zhewei, Lu, Zhe, Liao, Yundan, Lu, Tianlan, Yan, Hao, Yue, Weihua, Qin, Ying, Zhang, Yuyanan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9253766/
https://www.ncbi.nlm.nih.gov/pubmed/35801084
http://dx.doi.org/10.3389/fgene.2022.941171
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author Yang, Yang
Su, Yi
Wei, Guiming
Kang, Zhewei
Lu, Zhe
Liao, Yundan
Lu, Tianlan
Yan, Hao
Yue, Weihua
Qin, Ying
Zhang, Yuyanan
author_facet Yang, Yang
Su, Yi
Wei, Guiming
Kang, Zhewei
Lu, Zhe
Liao, Yundan
Lu, Tianlan
Yan, Hao
Yue, Weihua
Qin, Ying
Zhang, Yuyanan
author_sort Yang, Yang
collection PubMed
description BACKGROUND: Schizophrenia is a severe mental disorder with high heritability, and cognitive dysfunction is one of the core features. Growing evidence suggests the genetic risk of schizophrenia may contribute to cognitive impairments. The variant rs1635 (nucleotide sequence: c.455C>A; amino acid sequence: T152N) located on the (NFKB activating protein like) NKAPL gene confers risk for schizophrenia and might play a role in the neurodevelopmental process, which is particularly relevant to cognitive function. However, the relationship between rs1635 and cognitive function remains unclear. METHODS: A total of 130 patients with early-onset schizophrenia (EOS) and 300 patients with adult-onset schizophrenia (AOS) of Han Chinese were recruited and underwent neurocognitive tests by using the MATRICS Consensus Cognitive Battery (MCCB). The NKAPL rs1635 was genotyped by using DNA sequencing. The peripheral blood NKAPL mRNA expression level was examined in 152T or 152N carriers (n = 20) in EOS patients, by using the qRT-PCR. The phosphorylation level of NAKPL T152N polymorphism was detected by cell experiments. In utero electroporation of mouse embryos was examined to explore the effect of Nkapl on neuronal migration. RESULTS: Compared with rs1635 AA and AC carriers, CC (the CC genotype encodes the protein NKAPL-152T) carriers of EOS patients performed better in cognitive domain of speed of processing (t = 2.644, p = 0.009), trail making test (t = 2.221, p = 0.028) and category fluency (t = 2.578, p = 0.011). However, patients with AOS exhibited no significant differences in seven domains among the three genotype groups. There were no significant differences in cognitive performance between EOS and AOS. In EOS patients, NKAPL mRNA level in NKAPL-152N carriers is significantly lower than that of NKAPL-152T carriers. The phosphorylation level of NKAPL-152N is significantly decreased compared to NKAPL-152T. In utero electroporation showed that Nkapl deletion impairs the embryonic radial migration process. CONCLUSION: The present study found that NKAPL rs1635 was associated with cognitive impairments and peripheral blood mRNA expression level in EOS patients. The NKAPL full-length protein is required for embryonic cortical neuronal migration. The phosphorylation level of NKAPL-152N is significantly decreased. The NKAPL T152N may affect the NAKPL mRNA expression level and embryonic cortical neuronal migration by regulating the NAKPL protein phosphorylation. These data suggest that NKAPL rs1635 affects cognitive function by regulating early brain development in early-onset schizophrenia.
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spelling pubmed-92537662022-07-06 Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia Yang, Yang Su, Yi Wei, Guiming Kang, Zhewei Lu, Zhe Liao, Yundan Lu, Tianlan Yan, Hao Yue, Weihua Qin, Ying Zhang, Yuyanan Front Genet Genetics BACKGROUND: Schizophrenia is a severe mental disorder with high heritability, and cognitive dysfunction is one of the core features. Growing evidence suggests the genetic risk of schizophrenia may contribute to cognitive impairments. The variant rs1635 (nucleotide sequence: c.455C>A; amino acid sequence: T152N) located on the (NFKB activating protein like) NKAPL gene confers risk for schizophrenia and might play a role in the neurodevelopmental process, which is particularly relevant to cognitive function. However, the relationship between rs1635 and cognitive function remains unclear. METHODS: A total of 130 patients with early-onset schizophrenia (EOS) and 300 patients with adult-onset schizophrenia (AOS) of Han Chinese were recruited and underwent neurocognitive tests by using the MATRICS Consensus Cognitive Battery (MCCB). The NKAPL rs1635 was genotyped by using DNA sequencing. The peripheral blood NKAPL mRNA expression level was examined in 152T or 152N carriers (n = 20) in EOS patients, by using the qRT-PCR. The phosphorylation level of NAKPL T152N polymorphism was detected by cell experiments. In utero electroporation of mouse embryos was examined to explore the effect of Nkapl on neuronal migration. RESULTS: Compared with rs1635 AA and AC carriers, CC (the CC genotype encodes the protein NKAPL-152T) carriers of EOS patients performed better in cognitive domain of speed of processing (t = 2.644, p = 0.009), trail making test (t = 2.221, p = 0.028) and category fluency (t = 2.578, p = 0.011). However, patients with AOS exhibited no significant differences in seven domains among the three genotype groups. There were no significant differences in cognitive performance between EOS and AOS. In EOS patients, NKAPL mRNA level in NKAPL-152N carriers is significantly lower than that of NKAPL-152T carriers. The phosphorylation level of NKAPL-152N is significantly decreased compared to NKAPL-152T. In utero electroporation showed that Nkapl deletion impairs the embryonic radial migration process. CONCLUSION: The present study found that NKAPL rs1635 was associated with cognitive impairments and peripheral blood mRNA expression level in EOS patients. The NKAPL full-length protein is required for embryonic cortical neuronal migration. The phosphorylation level of NKAPL-152N is significantly decreased. The NKAPL T152N may affect the NAKPL mRNA expression level and embryonic cortical neuronal migration by regulating the NAKPL protein phosphorylation. These data suggest that NKAPL rs1635 affects cognitive function by regulating early brain development in early-onset schizophrenia. Frontiers Media S.A. 2022-06-21 /pmc/articles/PMC9253766/ /pubmed/35801084 http://dx.doi.org/10.3389/fgene.2022.941171 Text en Copyright © 2022 Yang, Su, Wei, Kang, Lu, Liao, Lu, Yan, Yue, Qin and Zhang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Yang, Yang
Su, Yi
Wei, Guiming
Kang, Zhewei
Lu, Zhe
Liao, Yundan
Lu, Tianlan
Yan, Hao
Yue, Weihua
Qin, Ying
Zhang, Yuyanan
Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title_full Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title_fullStr Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title_full_unstemmed Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title_short Association of NKAPL rs1635 With Cognitive Function in Early-Onset Schizophrenia
title_sort association of nkapl rs1635 with cognitive function in early-onset schizophrenia
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9253766/
https://www.ncbi.nlm.nih.gov/pubmed/35801084
http://dx.doi.org/10.3389/fgene.2022.941171
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