Cargando…

In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family

BACKGROUND: Schizophrenia endophenotypes may help elucidate functional effects of genetic risk variants in multiply affected consanguineous families that segregate recessive risk alleles of large effect size. We studied the association between a schizophrenia risk locus involving a 6.1Mb homozygous...

Descripción completa

Detalles Bibliográficos
Autores principales: Wilkinson, Iain D., Mahmood, Tariq, Yasmin, Sophia Faye, Tomlinson, Anneka, Nazari, Jamshid, Alhaj, Hamid, el din, Soumaya Nasser, Neill, Joanna, Pandit, Chhaya, Ashraf, Shahzad, Cardno, Alastair G., Clapcote, Steven J., Inglehearn, Chris F., Woodruff, Peter W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cambridge University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235651/
https://www.ncbi.nlm.nih.gov/pubmed/35125130
http://dx.doi.org/10.1017/S0033291721005250
_version_ 1785052735198986240
author Wilkinson, Iain D.
Mahmood, Tariq
Yasmin, Sophia Faye
Tomlinson, Anneka
Nazari, Jamshid
Alhaj, Hamid
el din, Soumaya Nasser
Neill, Joanna
Pandit, Chhaya
Ashraf, Shahzad
Cardno, Alastair G.
Clapcote, Steven J.
Inglehearn, Chris F.
Woodruff, Peter W.
author_facet Wilkinson, Iain D.
Mahmood, Tariq
Yasmin, Sophia Faye
Tomlinson, Anneka
Nazari, Jamshid
Alhaj, Hamid
el din, Soumaya Nasser
Neill, Joanna
Pandit, Chhaya
Ashraf, Shahzad
Cardno, Alastair G.
Clapcote, Steven J.
Inglehearn, Chris F.
Woodruff, Peter W.
author_sort Wilkinson, Iain D.
collection PubMed
description BACKGROUND: Schizophrenia endophenotypes may help elucidate functional effects of genetic risk variants in multiply affected consanguineous families that segregate recessive risk alleles of large effect size. We studied the association between a schizophrenia risk locus involving a 6.1Mb homozygous region on chromosome 13q22–31 in a consanguineous multiplex family and cognitive functioning, haemodynamic response and white matter integrity using neuroimaging. METHODS: We performed CANTAB neuropsychological testing on four affected family members (all homozygous for the risk locus), ten unaffected family members (seven homozygous and three heterozygous) and ten healthy volunteers, and tested neuronal responses on fMRI during an n-back working memory task, and white matter integrity on diffusion tensor imaging (DTI) on four affected and six unaffected family members (four homozygous and two heterozygous) and three healthy volunteers. For cognitive comparisons we used a linear mixed model (Kruskal–Wallis) test, followed by posthoc Dunn's pairwise tests with a Bonferroni adjustment. For fMRI analysis, we counted voxels exceeding the p < 0.05 corrected threshold. DTI analysis was observational. RESULTS: Family members with schizophrenia and unaffected family members homozygous for the risk haplotype showed attention (p < 0.01) and working memory deficits (p < 0.01) compared with healthy controls; a neural activation laterality bias towards the right prefrontal cortex (voxels reaching p < 0.05, corrected) and observed lower fractional anisotropy in the anterior cingulate cortex and left dorsolateral prefrontal cortex. CONCLUSIONS: In this family, homozygosity at the 13q risk locus was associated with impaired cognition, white matter integrity, and altered laterality of neural activation.
format Online
Article
Text
id pubmed-10235651
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cambridge University Press
record_format MEDLINE/PubMed
spelling pubmed-102356512023-06-03 In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family Wilkinson, Iain D. Mahmood, Tariq Yasmin, Sophia Faye Tomlinson, Anneka Nazari, Jamshid Alhaj, Hamid el din, Soumaya Nasser Neill, Joanna Pandit, Chhaya Ashraf, Shahzad Cardno, Alastair G. Clapcote, Steven J. Inglehearn, Chris F. Woodruff, Peter W. Psychol Med Original Article BACKGROUND: Schizophrenia endophenotypes may help elucidate functional effects of genetic risk variants in multiply affected consanguineous families that segregate recessive risk alleles of large effect size. We studied the association between a schizophrenia risk locus involving a 6.1Mb homozygous region on chromosome 13q22–31 in a consanguineous multiplex family and cognitive functioning, haemodynamic response and white matter integrity using neuroimaging. METHODS: We performed CANTAB neuropsychological testing on four affected family members (all homozygous for the risk locus), ten unaffected family members (seven homozygous and three heterozygous) and ten healthy volunteers, and tested neuronal responses on fMRI during an n-back working memory task, and white matter integrity on diffusion tensor imaging (DTI) on four affected and six unaffected family members (four homozygous and two heterozygous) and three healthy volunteers. For cognitive comparisons we used a linear mixed model (Kruskal–Wallis) test, followed by posthoc Dunn's pairwise tests with a Bonferroni adjustment. For fMRI analysis, we counted voxels exceeding the p < 0.05 corrected threshold. DTI analysis was observational. RESULTS: Family members with schizophrenia and unaffected family members homozygous for the risk haplotype showed attention (p < 0.01) and working memory deficits (p < 0.01) compared with healthy controls; a neural activation laterality bias towards the right prefrontal cortex (voxels reaching p < 0.05, corrected) and observed lower fractional anisotropy in the anterior cingulate cortex and left dorsolateral prefrontal cortex. CONCLUSIONS: In this family, homozygosity at the 13q risk locus was associated with impaired cognition, white matter integrity, and altered laterality of neural activation. Cambridge University Press 2023-05 2022-02-07 /pmc/articles/PMC10235651/ /pubmed/35125130 http://dx.doi.org/10.1017/S0033291721005250 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.
spellingShingle Original Article
Wilkinson, Iain D.
Mahmood, Tariq
Yasmin, Sophia Faye
Tomlinson, Anneka
Nazari, Jamshid
Alhaj, Hamid
el din, Soumaya Nasser
Neill, Joanna
Pandit, Chhaya
Ashraf, Shahzad
Cardno, Alastair G.
Clapcote, Steven J.
Inglehearn, Chris F.
Woodruff, Peter W.
In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title_full In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title_fullStr In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title_full_unstemmed In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title_short In memory of Professor Iain Wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
title_sort in memory of professor iain wilkinson: cognitive and neuroimaging endophenotypes in a consanguineous schizophrenia multiplex family
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235651/
https://www.ncbi.nlm.nih.gov/pubmed/35125130
http://dx.doi.org/10.1017/S0033291721005250
work_keys_str_mv AT wilkinsoniaind inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT mahmoodtariq inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT yasminsophiafaye inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT tomlinsonanneka inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT nazarijamshid inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT alhajhamid inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT eldinsoumayanasser inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT neilljoanna inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT panditchhaya inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT ashrafshahzad inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT cardnoalastairg inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT clapcotestevenj inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT inglehearnchrisf inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily
AT woodruffpeterw inmemoryofprofessoriainwilkinsoncognitiveandneuroimagingendophenotypesinaconsanguineousschizophreniamultiplexfamily