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Scharf, Jeremiah

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Scharf

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Jeremiah

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Scharf, Jeremiah

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  • Publication

    TS-EUROTRAIN: A European-Wide Investigation and Training Network on the Etiology and Pathophysiology of Gilles de la Tourette Syndrome

    (Frontiers Media S.A., 2016) Forde, Natalie J.; Kanaan, Ahmad S.; Widomska, Joanna; Padmanabhuni, Shanmukha S.; Nespoli, Ester; Alexander, John; Rodriguez Arranz, Juan I.; Fan, Siyan; Houssari, Rayan; Nawaz, Muhammad S.; Rizzo, Francesca; Pagliaroli, Luca; Zilhäo, Nuno R.; Aranyi, Tamas; Barta, Csaba; Boeckers, Tobias M.; Boomsma, Dorret I.; Buisman, Wim R.; Buitelaar, Jan K.; Cath, Danielle; Dietrich, Andrea; Driessen, Nicole; Drineas, Petros; Dunlap, Michelle; Gerasch, Sarah; Glennon, Jeffrey; Hengerer, Bastian; van den Heuvel, Odile A.; Jespersgaard, Cathrine; Möller, Harald E.; Müller-Vahl, Kirsten R.; Openneer, Thaïra J. C.; Poelmans, Geert; Pouwels, Petra J. W.; Scharf, Jeremiah; Stefansson, Hreinn; Tümer, Zeynep; Veltman, Dick J.; van der Werf, Ysbrand D.; Hoekstra, Pieter J.; Ludolph, Andrea; Paschou, Peristera

    Gilles de la Tourette Syndrome (GTS) is characterized by the presence of multiple motor and phonic tics with a fluctuating course of intensity, frequency, and severity. Up to 90% of patients with GTS present with comorbid conditions, most commonly attention-deficit/hyperactivity disorder (ADHD), and obsessive-compulsive disorder (OCD), thus providing an excellent model for the exploration of shared etiology across disorders. TS-EUROTRAIN (FP7-PEOPLE-2012-ITN, Grant Agr.No. 316978) is a Marie Curie Initial Training Network (http://ts-eurotrain.eu) that aims to elucidate the complex etiology of the onset and clinical course of GTS, investigate the neurobiological underpinnings of GTS and related disorders, translate research findings into clinical applications, and establish a pan-European infrastructure for the study of GTS. This includes the challenges of (i) assembling a large genetic database for the evaluation of the genetic architecture with high statistical power; (ii) exploring the role of gene-environment interactions including the effects of epigenetic phenomena; (iii) employing endophenotype-based approaches to understand the shared etiology between GTS, OCD, and ADHD; (iv) establishing a developmental animal model for GTS; (v) gaining new insights into the neurobiological mechanisms of GTS via cross-sectional and longitudinal neuroimaging studies; and (vi) partaking in outreach activities including the dissemination of scientific knowledge about GTS to the public. Fifteen partners from academia and industry and 12 PhD candidates pursue the project. Here, we aim to share the design of an interdisciplinary project, showcasing the potential of large-scale collaborative efforts in the field of GTS. Our ultimate aims are to elucidate the complex etiology and neurobiological underpinnings of GTS, translate research findings into clinical applications, and establish Pan-European infrastructure for the study of GTS and associated disorders.

  • Publication

    The Genetic Etiology of Tourette Syndrome: Large-Scale Collaborative Efforts on the Precipice of Discovery

    (Frontiers Media S.A., 2016) Georgitsi, Marianthi; Willsey, A. Jeremy; Mathews, Carol A.; State, Matthew; Scharf, Jeremiah; Paschou, Peristera

    Gilles de la Tourette Syndrome (TS) is a childhood-onset neurodevelopmental disorder that is characterized by multiple motor and phonic tics. It has a complex etiology with multiple genes likely interacting with environmental factors to lead to the onset of symptoms. The genetic basis of the disorder remains elusive. However, multiple resources and large-scale projects are coming together, launching a new era in the field and bringing us on the verge of discovery. The large-scale efforts outlined in this report are complementary and represent a range of different approaches to the study of disorders with complex inheritance. The Tourette Syndrome Association International Consortium for Genetics (TSAICG) has focused on large families, parent-proband trios and cases for large case-control designs such as genomewide association studies (GWAS), copy number variation (CNV) scans, and exome/genome sequencing. TIC Genetics targets rare, large effect size mutations in simplex trios, and multigenerational families. The European Multicentre Tics in Children Study (EMTICS) seeks to elucidate gene-environment interactions including the involvement of infection and immune mechanisms in TS etiology. Finally, TS-EUROTRAIN, a Marie Curie Initial Training Network, aims to act as a platform to unify large-scale projects in the field and to educate the next generation of experts. Importantly, these complementary large-scale efforts are joining forces to uncover the full range of genetic variation and environmental risk factors for TS, holding great promise for identifying definitive TS susceptibility genes and shedding light into the complex pathophysiology of this disorder.