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Motion Events in Nepali ; L'expression des événements de mouvement en népalais
Parajuli, Krishna. - : HAL CCSD, 2021
In: https://tel.archives-ouvertes.fr/tel-03406099 ; Linguistics. Université de Lyon, 2021. English. ⟨NNT : 2021LYSE2032⟩ (2021)
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2
Gene Expression Imputation Across Multiple Tissue Types Provides Insight Into the Genetic Architecture of Frontotemporal Dementia and Its Clinical Subtypes
Reus L.M.; Pasaniuc B.; Posthuma D.; Boltz T.; Ferrari R.; Hernandez D.G.; Nalls M.A.; Rohrer J.D.; Ramasamy A.; Kwok J.B.J.; Dobson-Stone C.; Brooks W.S.; Schofield P.R.; Halliday G.M.; Hodges J.R.; Piguet O.; Bartley L.; Thompson E.; Hernandez I.; Ruiz A.; Boada M.; Borroni B.; Padovani A.; Cruchaga C.; Cairns N.J.; Benussi L.; Binetti G.; Ghidoni R.; Forloni G.; Galimberti D.; Fenoglio C.; Serpente M.; Scarpini E.; Clarimon J.; Lleo A.; Blesa R.; Waldo M.L.; Nilsson K.; Nilsson C.; Mackenzie I.R.A.; Hsiung G.-Y.R.; Mann D.M.A.; Grafman J.; Morris C.M.; Attems J.; Griffiths T.D.; McKeith I.G.; Thomas A.J.; Pietrini P.; Huey E.D.; Wassermann E.M.; Baborie A.; Jaros E.; Tierney M.C.; Pastor P.; Razquin C.; Ortega-Cubero S.; Alonso E.; Perneczky R.; Diehl-Schmid J.; Alexopoulos P.; Kurz A.; Rainero I.; Rubino E.; Pinessi L.; Rogaeva E.; St. George-Hyslop P.; Rossi G.; Tagliavini F.; Giaccone G.; Rowe J.B.; Schlachetzki J.C.M.; Uphill J.; Collinge J.; Mead S.; Danek A.; Van Deerlin V.M.; Grossman M.; Trojanowski J.Q.; van der Zee J.; Van Broeckhoven C.; Cappa S.F.; Le Ber I.; Hannequin D.; Golfier V.; Vercelletto M.; Brice A.; Nacmias B.; Sorbi S.; Bagnoli S.; Piaceri I.; Nielsen J.E.; Hjermind L.E.; Riemenschneider M.; Mayhaus M.; Ibach B.; Gasparoni G.; Pichler S.; Gu W.; Rossor M.N.; Fox N.C.; Warren J.D.; Spillantini M.G.; Morris H.R.; Rizzu P.; Heutink P.; Snowden J.S.; Rollinson S.; Richardson A.; Gerhard A.; Bruni A.C.; Maletta R.; Frangipane F.; Cupidi C.; Bernardi L.; Anfossi M.; Gallo M.; Conidi M.E.; Smirne N.; Rademakers R.; Baker M.; Dickson D.W.; Graff-Radford N.R.; Petersen R.C.; Knopman D.; Josephs K.A.; Boeve B.F.; Parisi J.E.; Seeley W.W.; Miller B.L.; Karydas A.M.; Rosen H.; van Swieten J.C.; Dopper E.G.P.; Seelaar H.; Pijnenburg Y.A.L.; Scheltens P.; Logroscino G.; Capozzo R.; Novelli V.; Puca A.A.; Franceschi M.; Postiglione A.; Milan G.; Sorrentino P.; Kristiansen M.; Chiang H.-H.; Graff C.; Pasquier F.; Rollin A.; Deramecourt V.; Lebert F.; Kapogiannis D.; Ferrucci L.; Pickering-Brown S.; Singleton A.B.; Hardy J.; Momeni P.; Ophoff R.A.. - 2021
Abstract: Background: The etiology of frontotemporal dementia (FTD) is poorly understood. To identify genes with predicted expression levels associated with FTD, we integrated summary statistics with external reference gene expression data using a transcriptome-wide association study approach. Methods: FUSION software was used to leverage FTD summary statistics (all FTD: n = 2154 cases, n = 4308 controls; behavioral variant FTD: n = 1337 cases, n = 2754 controls; semantic dementia: n = 308 cases, n = 616 controls; progressive nonfluent aphasia: n = 269 cases, n = 538 controls; FTD with motor neuron disease: n = 200 cases, n = 400 controls) from the International FTD-Genomics Consortium with 53 expression quantitative loci tissue type panels (n = 12,205; 5 consortia). Significance was assessed using a 5% false discovery rate threshold. Results: We identified 73 significant gene–tissue associations for FTD, representing 44 unique genes in 34 tissue types. Most significant findings were derived from dorsolateral prefrontal cortex splicing data (n = 19 genes, 26%). The 17q21.31 inversion locus contained 23 significant associations, representing 6 unique genes. Other top hits included SEC22B (a gene involved in vesicle trafficking), TRGV5, and ZNF302. A single gene finding (RAB38) was observed for behavioral variant FTD. For other clinical subtypes, no significant associations were observed. Conclusions: We identified novel candidate genes (e.g., SEC22B) and previously reported risk regions (e.g., 17q21.31) for FTD. Most significant associations were observed in dorsolateral prefrontal cortex splicing data despite the modest sample size of this reference panel. This suggests that our findings are specific to FTD and are likely to be biologically relevant highlights of genes at different FTD risk loci that are contributing to the disease pathology.
Keyword: 17q21.31 inversion region; Dorsolateral prefrontal cortex; Expression quantitative trait loci (eQTL); Frontotemporal dementia; SEC22B; Transcriptome-wide association study
URL: https://doi.org/10.1016/j.biopsych.2020.12.023
http://hdl.handle.net/2318/1783267
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3
The trans-ancestral genomic architecture of glycemic traits.
In: Nature genetics, vol. 53, no. 6, pp. 840-860 (2021)
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4
Contributions of common genetic variants to risk of schizophrenia among individuals of African and Latino ancestry.
In: Molecular psychiatry, vol 25, iss 10 (2020)
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5
Contributions of common genetic variants to risk of schizophrenia among individuals of African and Latino ancestry.
In: Molecular psychiatry, vol 25, iss 10 (2020)
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6
Functionally distinct ERAP1 and ERAP2 are a hallmark of HLA-A29-(Birdshot) Uveitis.
In: Human molecular genetics, vol 27, iss 24 (2018)
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7
Genome-wide association meta-analysis in 269,867 individuals identifies new genetic and functional links to intelligence.
In: Nature genetics, vol 50, iss 7 (2018)
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8
Locative Shift
In: Glossa: a journal of general linguistics (2016-2021) ; https://hal.archives-ouvertes.fr/hal-03052067 ; Glossa: a journal of general linguistics (2016-2021), Ubiquity Press, 2018, 3 (1), pp.1-46. ⟨10.5334/gjgl.561⟩ (2018)
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9
Locative Shift
In: Glossa: a journal of general linguistics; Vol 3, No 1 (2018); 115 ; 2397-1835 (2018)
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10
The interaction between duration of study abroad, diversity of loci of learning and sociopragmatic variation patterns: a comparative study
Devlin, Anne Marie. - : Elsevier, 2018
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11
Global genetic differentiation of complex traits shaped by natural selection in humans.
In: Nature communications, vol. 9, no. 1, pp. 1865 (2018)
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12
Imprint of assortative mating on the human genome
Yengo, Loic; Robinson, Matthew R.; Keller, Matthew C.. - : Nature Publishing Group, 2018
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13
Dans le sillage du mythe : rémanence de la Route 66
In: Communication & langages, N 195, 1, 2018-01-19, pp.59-76 (2018)
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14
GWAS meta-analysis reveals novel loci and genetic correlates for general cognitive function: a report from the COGENT consortium.
In: Molecular psychiatry, vol 22, iss 3 (2017)
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15
Data from: 3D sorghum reconstructions from depth images identify QTL regulating shoot architecture ...
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16
Amplifying Lgbtqia+ Presence Through Queer Legal Worldmaking: the Role of Affect in Renegotiating Value Hierarchies in Political Argument
In: Theses and Dissertations (2017)
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УСТОЙЧИВЫЕ КОНСТРУКЦИИ В ОЛОНХО«ЭРИС ХАЛЛААН УОЛА ЭР СОГОТОХ» Г. Ф. НИКУЛИНА ... : Stable phrases in olonkho “Eris khallaan uola Er Sogotokh” by G. F. Nikulin ...
Борисов, Ю.П.. - : Вестник Северо-Восточного федерального университета имени М.К. Аммосова. Vestnik of North-Eastern Federal University. Серия “Эпосоведение. Epic studies”, 2016
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Images and meshes for the BTx623 x IS3620C RIL population part "ae" ...
McCormick, Ryan F.; Truong, Sandra K.; Mullet, John E.. - : Dryad Digital Repository, 2016
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Images and meshes for the BTx623 x IS3620C RIL population part "aa" ...
McCormick, Ryan F.; Truong, Sandra K.; Mullet, John E.. - : Dryad Digital Repository, 2016
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20
Images and meshes for the BTx623 x IS3620C RIL population part "ac" ...
McCormick, Ryan F.; Truong, Sandra K.; Mullet, John E.. - : Dryad Digital Repository, 2016
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