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American Journal of Human Genetics|August 8, 2020
Myeloperoxidase Modulates Inflammation in Generalized Pustular Psoriasis and Additional Rare Pustular Skin DiseasesStefan Haskamp, Heiko Bruns, Madelaine Hahn, et al.Genetics in Medicine : Official Journal of the American College of Medical Genetics|May 4, 2021
Loss-of-function and missense variants in NSD2 cause decreased methylation activity and are associated with a distinct developmental phenotypePaolo Zanoni, Katharina Steindl, Deepanwita Sengupta, et al.Lancet (London, England)|October 2, 2012
Range of genetic mutations associated with severe non-syndromic sporadic intellectual disability: an exome sequencing studyAnita Rauch, Dagmar Wieczorek, Elisabeth Graf, et al.American Journal of Human Genetics|January 8, 2019
De Novo Variants in MAPK8IP3 Cause Intellectual Disability with Variable Brain AnomaliesKonrad Platzer, Heinrich Sticht, Stacey L Edwards, et al.American Journal of Human Genetics|March 31, 2022
De novo variants in ATP2B1 lead to neurodevelopmental delayMeer Jacob Rahimi, Nicole Urban, Meret Wegler, et al.European Journal of Human Genetics : EJHG|January 22, 2019
Spatially clustering de novo variants in CYFIP2, encoding the cytoplasmic FMRP interacting protein 2, cause intellectual disability and seizuresMarkus Zweier, Anaïs Begemann, Kirsty McWalter, et al.American Journal of Human Genetics|June 19, 2026
De novo variants in LDB1 are linked to distinct neurodevelopmental phenotypes determined by variant location and differing pathomechanismsRebecca Fluri, Mireia Coll-Tané, Theresa Brunet, et al.Human Molecular Genetics|September 10, 2021
De novo missense variants in FBXO11 alter its protein expression and subcellular localizationAnne Gregor, Tanja Meerbrei, Thorsten Gerstner, et al.American Journal of Human Genetics|July 31, 2018
De Novo Variants in the F-Box Protein FBXO11 in 20 Individuals with a Variable Neurodevelopmental DisorderAnne Gregor, Lynette G Sadleir, Reza Asadollahi, et al.Circulation. Cardiovascular Genetics|September 24, 2014
Genome-wide association study of L-arginine and dimethylarginines reveals novel metabolic pathway for symmetric dimethylarginineNicole Lüneburg, Wolfgang Lieb, Tanja Zeller, et al.Pageof 31