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  Planar cell polarity pathway and development of the human visual cortex

Shin, J., Ma, S., Hofer, E., Patel, Y., Roshchupkin, G. V., Sousa, A. M., et al. (2019). Planar cell polarity pathway and development of the human visual cortex. bioRxiv. doi:10.1101/404558.

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Shin, Jean 1, Autor
Ma, Shaojie 1, Autor
Hofer, Edith 1, Autor
Patel, Yash 1, Autor
Roshchupkin, Gennady V. 1, Autor
Sousa, André M. 1, Autor
Jian, Xueqiu 1, Autor
Gottesman, Rebecca 1, Autor
Mosley, Thomas H.1, Autor
Fornage, Myriam1, Autor
Saba, Yasaman 1, Autor
Pirpamer, Lukas 1, Autor
Schmidt, Reinhold 1, Autor
Schmidt, Helena 1, Autor
Carrion-Castillo, Amaia 1, Autor
Crivello, Fabrice 1, Autor
Mazoyer, Bernard 1, Autor
Bis, Joshua C. 1, Autor
Li, Shuo 1, Autor
Yang, Qiong 1, Autor
Luciano, Michelle 1, AutorKarama, Sherif 1, AutorLewis, Lindsay1, AutorBastin, Mark 1, AutorHarris, Mathew A. 1, AutorWardlaw, Joanna M. 1, AutorDeary, Ian E. 1, AutorScholz, Markus 1, AutorLoeffler, Markus 1, AutorWitte, A. Veronica1, 2, Autor           Beyer, Frauke1, 2, Autor           Villringer, Arno1, 2, Autor           Armstrong, Nicola J. 1, AutorMather, Karen A.1, AutorAmes, David 1, AutorJiang, Jiyang 1, AutorKwok, John B. 1, AutorSchofield, Peter R.1, AutorThalamuthu, Anbupalam 1, AutorTrollor, Julian N.1, AutorWright, Margaret J.1, AutorBrodaty, Henry 1, AutorWen, Wei 1, AutorSachdev, Perminder S.1, AutorTerzikhan, Natalie 1, AutorEvans, Tavia E.1, AutorAdams, Hieab H. H. H. 1, AutorIkram, M. Arfan 1, AutorFrenzel, Stefan 1, Autorvan der Auwera-Palitschka, Sandra 1, AutorWittfeld, Katharina 1, AutorBülow, Robin 1, AutorGrabe, Hans Jörgen 1, AutorTzourio, Christophe 1, AutorMishra , Aniket 1, AutorMaingault, Sophie 1, AutorDebette, Stephanie 1, AutorGillespie, Nathan A.1, AutorFranz, Carol E. 1, AutorKremen, William S.1, AutorDing, Linda 1, AutorJahanshad, Neda 1, AutorENIGMA Consortium, Autor              Sestan, Nenad1, AutorPausova, Zdenka 1, AutorSeshadri, Sudha 1, AutorPaus, Tomas 1, AutorneuroCHARGE Working Group, Autor               mehr..
Affiliations:
1External Organizations, ou_persistent22              
2Department Neurology, MPI for Human Cognitive and Brain Sciences, Max Planck Society, ou_634549              

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 Zusammenfassung: The radial unit hypothesis provides a framework for global (proliferation) and regional (distribution) expansion of the primate cerebral cortex. Using principal component analysis (PCA), we have identified cortical regions with shared variance in their surface area and cortical thickness, respectively, segmented from magnetic resonance images obtained in 23,800 participants. We then carried out meta-analyses of genome-wide association studies of the first two principal components for each phenotype. For surface area (but not cortical thickness), we have detected strong associations between each of the components and single nucleotide polymorphisms in a number of gene loci. The first (global) component was associated mainly with loci on chromosome 17 (9.5e-32 ≤ p ≤ 2.8e-10), including those detected previously as linked with intracranial volume and/or general cognitive function. The second (regional) component captured shared variation in the surface area of the primary and adjacent secondary visual cortices and showed a robust association with polymorphisms in a locus on chromosome 14 containing Disheveled Associated Activator of Morphogenesis 1 (DAAM1; p=2.4e-34). DAAM1 is a key component in the planar-cell-polarity signaling pathway. In follow-up studies, we have focused on the latter finding and established that: (1) DAAM1 is highly expressed between 12th and 22nd post-conception weeks in the human cerebral cortex; (2) genes co-expressed with DAAM1 in the primary visual cortex are enriched in mitochondria-related pathways; and (3) volume of the lateral geniculate nucleus, which projects to regions of the visual cortex staining for cytochrome oxidase (a mitochondrial enzyme), correlates with the surface area of the visual cortex in major-allele homozygotes but not in carriers of the minor allele. Altogether, we speculate that, in concert with thalamocortical input to cortical subplate, DAAM1 enables migration of neurons to cytochrome-oxidase rich regions of the visual cortex, and, in turn, facilitates regional expansion of this set of cortical regions during development.

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Sprache(n): eng - English
 Datum: 2019-04-25
 Publikationsstatus: Online veröffentlicht
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 Art der Begutachtung: Keine Begutachtung
 Identifikatoren: DOI: 10.1101/404558
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Titel: bioRxiv
Genre der Quelle: Zeitschrift
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