TitleDateAuthorsDOI
PM20D1 is a quantitative trait locus associated with Alzheimer’s disease2018-05-01Sanchez-Mut, JV; Heyn, H; Silva, BA; Dixsaut, L; Garcia-Esparcia, P; Vidal, E; Sayols, S; Glauser, L; Monteagudo-Sánchez, A; Perez-Tur, J; Ferrer, I; (2018). PM20D1 is a quantitative trait locus associated with Alzheimer’s disease. Nature Medicine, 24(5), 598-+. DOI: 10.1038/s41591-018-0013-yhttps://doi.org/10.1038/s41591-018-0013-y
Characterization of Iodine-related molecular processes in the marine microalga Tisochrysis lutea (Haptophyta)2018-04-24Javier, LH; Benzekri, H; Gut, M; Claros, MG; van Bergeijk, S; Cañavate, JP; Manchado, M (2018). Characterization of Iodine-related molecular processes in the marine microalga Tisochrysis lutea (Haptophyta). Frontiers In Marine Science, 5(APR), 134-. DOI: 10.3389/fmars.2018.00134https://doi.org/10.3389/fmars.2018.00134
Deciphering the mechanism of action of 089, a compound impairing the fungal cell cycle2018-04-13Stefanini, I; Rizzetto, L; Rivero, D; Carbonell, S; Gut, M; Heath, S; Gut, IG; Trabocchi, A; Guarna, A; Ben Ghazzi, N; Bowyer, P; Kapushesky, M; Caval (2018). Deciphering the mechanism of action of 089, a compound impairing the fungal cell cycle. Scientific Reports, 8(1), 5964-. DOI: 10.1038/s41598-018-24341-yhttps://doi.org/10.1038/s41598-018-24341-y
Machine Learning Identifies Stemness Features Associated with Oncogenic Dedifferentiation2018-04-05Malta, TM; Sokolov, A; Gentles, AJ; Burzykowski, T; Poisson, L; Weinstein, JN; Kaminska, B; Huelsken, J; Omberg, L; Gevaert, O; Colaprico, A; Czerwins (2018). Machine Learning Identifies Stemness Features Associated with Oncogenic Dedifferentiation. Cell, 173(2), 338-+. DOI: 10.1016/j.cell.2018.03.034https://doi.org/10.1016/j.cell.2018.03.034
Selection in the Introgressed Regions of the Chimpanzee Genome2018-04-01Nye, J; Laayouni, H; Kuhlwilm, M; Mondal, M; Marques-Bonet, T; Bertranpetit, J (2018). Selection in the Introgressed Regions of the Chimpanzee Genome. Genome Biology And Evolution, 10(4), 1132-1138. DOI: 10.1093/gbe/evy077https://doi.org/10.1093/gbe/evy077
Loss of function mutations in EPHB4 are responsible for vein of Galen aneurysmal malformation2018-04-01Vivanti, A; Ozanne, A; Grondin, C; Saliou, G; Quevarec, L; Maurey, H; Aubourg, P; Benachi, A; Gut, M; Gut, I; Martinovic, J; Sénat, MV; Tawk, M; Melki (2018). Loss of function mutations in EPHB4 are responsible for vein of Galen aneurysmal malformation. Brain, 141(4), 979-988. DOI: 10.1093/brain/awy020https://doi.org/10.1093/brain/awy020
Alpha-1 antitrypsin deficiency: From the lung to the heart?2018-03-01Curjuric, I; Imboden, M; Bettschart, R; Caviezel, S; Dratva, J; Pons, M; Rothe, T; Schmidt-Trucksäss, A; Stolz, D; Thun, GA; von Eckardstein, A; Krone (2018). Alpha-1 antitrypsin deficiency: From the lung to the heart?. Atherosclerosis, 270(), 166-172. DOI: 10.1016/j.atherosclerosis.2018.01.042https://doi.org/10.1016/j.atherosclerosis.2018.01.042
The impact of endogenous content, replicates and pooling on genome capture from faecal samples2018-03-01Hernandez-Rodriguez, J; Arandjelovic, M; Lester, J; de Filippo, C; Weihmann, A; Meyer, M; Angedakin, S; Casals, F; Navarro, A; Vigilant, L; Kühl, HS; (2018). The impact of endogenous content, replicates and pooling on genome capture from faecal samples. Molecular Ecology Resources, 18(2), 319-333. DOI: 10.1111/1755-0998.12728https://doi.org/10.1111/1755-0998.12728
Transcription factors orchestrate dynamic interplay between genome topology and gene regulation during cell reprogramming2018-02-01Stadhouders, R; Vidal, E; Serra, F; Di Stefano, B; Le Dily, F; Quilez, J; Gomez, A; Collombet, S; Berenguer, C; Cuartero, Y; Hecht, J; Filion, GJ; Bea (2018). Transcription factors orchestrate dynamic interplay between genome topology and gene regulation during cell reprogramming. Nature Genetics, 50(2), 238-+. DOI: 10.1038/s41588-017-0030-7https://doi.org/10.1038/s41588-017-0030-7
Mutations in Vps15 perturb neuronal migration in mice and are associated with neurodevelopmental disease in humans2018-02-01Gstrein, T; Edwards, A; Pristoupilová, A; Leca, I; Breuss, M; Pilat-Carotta, S; Hansen, AH; Tripathy, R; Traunbauer, AK; Hochstoeger, T; Rosoklijal, G (2018). Mutations in Vps15 perturb neuronal migration in mice and are associated with neurodevelopmental disease in humans. Nature Neuroscience, 21(2), 207-+. DOI: 10.1038/s41593-017-0053-5https://doi.org/10.1038/s41593-017-0053-5
Genomic and Phenotypic Variation in Morphogenetic Networks of Two Candida albicans Isolates Subtends Their Different Pathogenic Potential2018-01-19Cavalieri, D; Di Paola, M; Rizzetto, L; Tocci, N; De Filippo, C; Lionetti, P; Ardizzoni, A; Colombari, B; Paulone, S; Gut, IG; Berná, L; Gut, M; Blanc (2018). Genomic and Phenotypic Variation in Morphogenetic Networks of Two Candida albicans Isolates Subtends Their Different Pathogenic Potential. Frontiers In Immunology, 8(JAN), 1997-1997. DOI: 10.3389/fimmu.2017.01997https://doi.org/10.3389/fimmu.2017.01997
A De Novo FOXP1 Truncating Mutation in a Patient Originally Diagnosed as C Syndrome2018-01-12Urreizti, R; Damanti, S; Esteve, C; Franco-Valls, H; Castilla-Vallmanya, L; Tonda, R; Cormand, B; Vilageliu, L; Opitz, JM; Neri, G; Grinberg, D; Balce (2018). A De Novo FOXP1 Truncating Mutation in a Patient Originally Diagnosed as C Syndrome. Scientific Reports, 8(1), 694-. DOI: 10.1038/s41598-017-19109-9https://doi.org/10.1038/s41598-017-19109-9
Hippo signaling controls cell cycle and restricts cell plasticity in planarians2018-01-01de Sousa, N; Rodríguez-Esteban, G; Rojo-Laguna, JI; Saló, E; Adell, T (2018). Hippo signaling controls cell cycle and restricts cell plasticity in planarians. Plos Biology, 16(1), e2002399-. DOI: 10.1371/journal.pbio.2002399https://doi.org/10.1371/journal.pbio.2002399
Deep analysis of acquired resistance to FGFR1 inhibitor identifies MET and AKT activation and an expansion of AKT1 mutant cells.2018-01-01Gimenez-Xavier P, Pros E, Aza A, Moran S, Tonda R, Esteve-Codina A, Dabad M, Sanchez-Cespedes M (2018). Deep analysis of acquired resistance to FGFR1 inhibitor identifies MET and AKT activation and an expansion of AKT1 mutant cells.. Oncotarget, 9(59), 31549-31558. DOI: 10.18632/oncotarget.25862https://doi.org/10.18632/oncotarget.25862
Quantitative DNA Methylation Analysis at Single-Nucleotide Resolution by Pyrosequencing®2018-01-01Busato, F; Dejeux, E; El Abdalaoui, H; Gut, IG; Tost, J (2018). Quantitative DNA Methylation Analysis at Single-Nucleotide Resolution by Pyrosequencing®. Methods In Molecular Biology, 1708(), 427-445. DOI: 10.1007/978-1-4939-7481-8_22https://doi.org/10.1007/978-1-4939-7481-8_22
Using geneid to Identify Genes2018-01-01Alioto T; Blanco E; Parra G; Guigó R (2018). Using geneid to Identify Genes. Current Protocols In Bioinformatics, 64(1), e56-. DOI: 10.1002/cpbi.56https://doi.org/10.1002/cpbi.56
Hypoxia-mediated translational activation of ITGB3 in breast cancer cells enhances TGF-β signaling and malignant features in vitro and in vivo2017-12-29Sesé, M; Fuentes, P; Esteve-Codina, A; Béjar, E; McGrail, K; Thomas, G; Aasen, T; Cajal, SRY (2017). Hypoxia-mediated translational activation of ITGB3 in breast cancer cells enhances TGF-β signaling and malignant features in vitro and in vivo. Oncotarget, 8(70), 114856-114876. DOI: 10.18632/oncotarget.23145https://doi.org/10.18632/oncotarget.23145
Similar genomic proportions of copy number variation within gray wolves and modern dog breeds inferred from whole genome sequencing2017-12-19Serres-Armero, A; Povolotskaya, IS; Quilez, J; Ramirez, O; Santpere, G; Kuderna, LFK; Hernandez-Rodriguez, J; Fernandez-Callejo, M; Gomez-Sanchez, D; (2017). Similar genomic proportions of copy number variation within gray wolves and modern dog breeds inferred from whole genome sequencing. Bmc Genomics, 18(1), 977-. DOI: 10.1186/s12864-017-4318-xhttps://doi.org/10.1186/s12864-017-4318-x
Discovering the 3 ' UTR-mediated regulation of alpha-synuclein2017-12-15Marchese, D; Botta-Orfila, T; Cirillo, D; Rodriguez, JA; Livi, CM; Fernández-Santiago, R; Ezquerra, M; Martí, MJ; Bechara, E; Tartaglia, GG (2017). Discovering the 3 ' UTR-mediated regulation of alpha-synuclein. Nucleic Acids Research, 45(22), 12888-12903. DOI: 10.1093/nar/gkx1048https://doi.org/10.1093/nar/gkx1048
FOXP2 variation in great ape populations offers insight into the evolution of communication skills2017-12-04Staes, N; Sherwood, CC; Wright, K; de Manuel, M; Guevara, EE; Marques-Bonet, T; Krützen, M; Massiah, M; Hopkins, WD; Ely, JJ; Bradley, BJ (2017). FOXP2 variation in great ape populations offers insight into the evolution of communication skills. Scientific Reports, 7(1), 16866-. DOI: 10.1038/s41598-017-16844-xhttps://doi.org/10.1038/s41598-017-16844-x