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PreviewIssue DateTitleAuthor(s)
2016TBC1D24 genotype-phenotype correlationBalestrini, S.; Milh, M.; Castiglioni, C.; Lüthy, K.; Finelli, M.; Verstreken, P.; Cardon, A.; Stražišar, B.; Holder, J.; Lesca, G.; Mancardi, M.; Poulat, A.; Repetto, G.; Banka, S.; Bilo, L.; Birkeland, L.; Bosch, F.; Brockmann, K.; Cross, J.; Doummar, D.; et al.
2015Novel IL1RAPL1 mutations associated with intellectual disability impair synaptogenesisRamos-Brossier, M.; Montani, C.; Lebrun, N.; Gritti, L.; Martin, C.; Seminatore-Nole, C.; Toussaint, A.; Moreno, S.; Poirier, K.; Dorseuil, O.; Chelly, J.; Hackett, A.; Gecz, J.; Bieth, E.; Faudet, A.; Heron, D.; Kooy, R.; Loeys, B.; Humeau, Y.; Sala, C.; et al.
2011Association between common variation at the FTO locus and changes in body mass index from infancy to late childhood: the complex nature of genetic association through growth and developmentSovio, U.; Mook-Kanamori, D.; Warrington, N.; Lawrence, R.; Briollais, L.; Palmer, C.; Cecil, J.; Sandling, J.; Syvanen, A.; Kaakinen, M.; Beilin, L.; Millwood, I.; Bennett, A.; Laitneen, J.; Pouta, A.; Molitor, J.; Smith, G.; Ben-Shlomo, Y.; Jaddoe, V.; Palmer, L.; et al.; Gibson, G.
2013Identification Of KLHL41 mutations implicates BTB-Kelch-Mediated Ubiquitination as an alternate pathway to myofibrillar disruption in nemaline myopathyGupta, V.; Ravenscroft, G.; Shaheen, R.; Todd, E.; Swanson, L.; Shiina, M.; Ogata, K.; Hsu, C.; Clarke, N.; Darras, B.; Farrar, M.; Hashem, A.; Manton, N.; Muntoni, F.; North, K.; Sandaradura, S.; Nishino, I.; Hayashi, Y.; Sewry, C.; Thompson, E.; et al.
2013Rare variants in single-minded 1 (SIM1) are associated with severe obesityRamachandrappa, S.; Raimondo, A.; Cali, A.; Keogh, J.; Henning, E.; Saeed, S.; Thompson, A.; Garg, S.; Bochukova, E.; Brage, S.; Trowse, V.; Wheeler, E.; Sullivan, A.; Dattani, M.; Clayton, P.; Datta, V.; Bruning, J.; Wareham, N.; O'Rahilly, S.; Peet, D.; et al.
2012KCNQ2 encephalopathy: Emerging phenotype of a neonatal epileptic encephalopathyWeckhuysen, S.; Mandelstam, S.; Suls, A.; Audenaert, D.; Deconinck, T.; Claes, L.; Deprez, L.; Smets, K.; Hristova, D.; Yordanova, I.; Jordanova, A.; Ceulemans, B.; Jansen, A.; Hasaerts, D.; Roelens, F.; Lagae, L.; Yendle, S.; Stanley, T.; Heron, S.; Mulley, J.; et al.
2013Loss-of-function mutations in SIM1 contribute to obesity and Prader-Willi-like featuresBonnefond, A.; Raimondo, A.; Stutzmann, F.; Ghoussaini, M.; Ramachandrappa, S.; Bersten, D.; Durand, E.; Vatin, V.; Balkau, B.; Lantieri, O.; Raverdy, V.; Pattou, F.; Van Hul, W.; Van Gaal, L.; Peet, D.; Weill, J.; Miller, J.; Horber, F.; Goldstone, A.; Driscoll, D.; et al.
2016Disruptive de novo mutations of DYRK1A lead to a syndromic form of autism and IDvan Bon, B.W.M.; Coe, B.P.; Bernier, R.; Green, C.; Gerdts, J.; Witherspoon, K.; Kleefstra, T.; Willemsen, M.H.; Kumar, R.; Bosco, P.; Fichera, M.; Li, D.; Amaral, D.; Cristofoli, F.; Peeters, H.; Haan, E.; Romano, C.; Mefford, H.C.; Scheffer, I.; Gecz, J.; et al.
2013Gain-of-function mutations in RIT1 cause Noonan syndrome, a RAS/MAPK pathway syndromeAoki, Y.; Niihori, T.; Banjo, T.; Okamoto, N.; Mizuno, S.; Kurosawa, K.; Ogata, T.; Takada, F.; Yano, M.; Ando, T.; Hoshika, T.; Barnett, C.; Ohashi, H.; Kawame, H.; Hasegawa, T.; Okutani, T.; Nagashima, T.; Hasegawa, S.; Funayama, R.; Nagashima, T.; et al.
2012Death adder envenoming causes neurotoxicity not reversed by antivenom - Australian snakebite project (ASP-16)Johnston, C.; O'Leary, M.; Brown, S.; Currie, B.; Halkidis, L.; Whitaker, R.; Close, B.; Isbister, G.; Nagree, Y.; Ker, F.; Greene, S.; Taylor, M.; Macrokanis, C.; Wilke, G.; Coulson, A.; Barnes, C.; Bonni, R.; Whitake, R.; Halkidis, L.; Isbiste, G.; et al.; de Silva, J.