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Dive into the research topics where Per M. Knappskog is active.

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Featured researches published by Per M. Knappskog.


Molecular Psychiatry | 2010

A common variant of the latrophilin 3 gene, LPHN3, confers susceptibility to ADHD and predicts effectiveness of stimulant medication

Mauricio Arcos-Burgos; Mahim Jain; Maria T. Acosta; Shively S; Horia Stanescu; Deeann Wallis; Sabina Domené; Jorge I. Vélez; Karkera Jd; Joan Z. Balog; Kate Berg; Robert Kleta; William A. Gahl; Erich Roessler; Robert Long; Lie J; David Pineda; Ana Londoño; Juan David Palacio; Andres Arbelaez; Francisco Lopera; Josephine Elia; Hakon Hakonarson; Stefan Johansson; Per M. Knappskog; Jan Haavik; Marta Ribasés; Bru Cormand; Mònica Bayés; M. Casas

Attention-Deficit/Hyperactivity Disorder (ADHD) has a very high heritability (0.8), suggesting that about 80% of phenotypic variance is due to genetic factors. We used the integration of statistical and functional approaches to discover a novel gene that contributes to ADHD. For our statistical approach, we started with a linkage study based on large multigenerational families in a population isolate, followed by fine mapping of targeted regions using a family-based design. Family- and population-based association studies in five samples from disparate regions of the world were used for replication. Brain imaging studies were performed to evaluate gene function. The linkage study discovered a genome region harbored in the Latrophilin 3 gene (LPHN3). In the world-wide samples (total n=6360, with 2627 ADHD cases and 2531 controls) statistical association of LPHN3 and ADHD was confirmed. Functional studies revealed that LPHN3 variants are expressed in key brain regions related to attention and activity, affect metabolism in neural circuits implicated in ADHD, and are associated with response to stimulant medication. Linkage and replicated association of ADHD with a novel non-candidate gene (LPHN3) provide new insights into the genetics, neurobiology, and treatment of ADHD.


American Journal of Human Genetics | 2011

Ciliopathies with Skeletal Anomalies and Renal Insufficiency due to Mutations in the IFT-A Gene WDR19

Cecilie Bredrup; Sophie Saunier; Machteld M. Oud; Torunn Fiskerstrand; Alexander Hoischen; Damien Brackman; Sabine Leh; Marit Midtbø; Emilie Filhol; Christine Bole-Feysot; Patrick Nitschke; Christian Gilissen; Olav H. Haugen; Jan Stephan Sanders; Irene Stolte-Dijkstra; Dorus A. Mans; Eric J. Steenbergen; B.C.J. Hamel; Marie Matignon; Rolph Pfundt; Cécile Jeanpierre; Helge Boman; Eyvind Rødahl; Joris A. Veltman; Per M. Knappskog; N.V.A.M. Knoers; Ronald Roepman; Heleen H. Arts

A subset of ciliopathies, including Sensenbrenner, Jeune, and short-rib polydactyly syndromes are characterized by skeletal anomalies accompanied by multiorgan defects such as chronic renal failure and retinitis pigmentosa. Through exome sequencing we identified compound heterozygous mutations in WDR19 in a Norwegian family with Sensenbrenner syndrome. In a Dutch family with the clinically overlapping Jeune syndrome, a homozygous missense mutation in the same gene was found. Both families displayed a nephronophthisis-like nephropathy. Independently, we also identified compound heterozygous WDR19 mutations by exome sequencing in a Moroccan family with isolated nephronophthisis. WDR19 encodes IFT144, a member of the intraflagellar transport (IFT) complex A that drives retrograde ciliary transport. We show that IFT144 is absent from the cilia of fibroblasts from one of the Sensenbrenner patients and that ciliary abundance and morphology is perturbed, demonstrating the ciliary pathogenesis. Our results suggest that isolated nephronophthisis, Jeune, and Sensenbrenner syndromes are clinically overlapping disorders that can result from a similar molecular cause.


Genes and Immunity | 2009

A coding polymorphism in NALP1 confers risk for autoimmune Addison's disease and type 1 diabetes.

Ng’weina Francis Magitta; A. S. Boe Wolff; Stefan Johansson; Beate Skinningsrud; Benedicte A. Lie; K-M Myhr; Dag E. Undlien; Geir Joner; Pål R. Njølstad; Tore K. Kvien; Øystein Førre; Per M. Knappskog; Eystein S. Husebye

Variants in the gene encoding NACHT leucine-rich-repeat protein 1 (NALP1), an important molecule in innate immunity, have recently been shown to confer risk for vitiligo and associated autoimmunity. We hypothesized that sequence variants in this gene may be involved in susceptibility to a wider spectrum of autoimmune diseases. Investigating large patient cohorts from six different autoimmune diseases, that is autoimmune Addisons disease (n=333), type 1 diabetes (n=1086), multiple sclerosis (n=502), rheumatoid arthritis (n=945), systemic lupus erythematosus (n=156) and juvenile idiopathic arthritis (n=505), against 3273 healthy controls, we analyzed four single nucleotide polymorphisms (SNPs) in NALP1. The major allele of the coding SNP rs12150220 revealed significant association with autoimmune Addisons disease compared with controls (OR=1.25, 95% CI: 1.06–1.49, P=0.007), and with type 1 diabetes (OR=1.15, 95% CI: 1.04–1.27, P=0.005). Trends toward the same associations were seen in rheumatoid arthritis, systemic lupus erythematosus and, although less obvious, multiple sclerosis. Patients with juvenile idiopathic arthritis did not show association with NALP1 gene variants. The results indicate that NALP1 and the innate immune system may be implicated in the pathogenesis of many autoimmune disorders, particularly organ-specific autoimmune diseases.


Neuropsychopharmacology | 2010

Multicenter Analysis of the SLC6A3/DAT1 VNTR Haplotype in Persistent ADHD Suggests Differential Involvement of the Gene in Childhood and Persistent ADHD

Barbara Franke; Alejandro Arias Vasquez; Stefan Johansson; Martine Hoogman; Jasmin Romanos; Andrea Boreatti-Hümmer; Monika Heine; Christian Jacob; Klaus-Peter Lesch; Miguel Casas; Marta Ribasés; Rosa Bosch; Cristina Sánchez-Mora; Nuria Gómez-Barros; Noèlia Fernàndez-Castillo; Mònica Bayés; Anne Halmøy; Helene Barone Halleland; E.T. Landaas; Ole Bernt Fasmer; Per M. Knappskog; Angelien Heister; Lambertus A. Kiemeney; J. J. Sandra Kooij; A. Marije Boonstra; Cees C Kan; Philip Asherson; Stephen V. Faraone; Jan K. Buitelaar; Jan Haavik

Attention deficit/hyperactivity disorder (ADHD) is one of the most common neuropsychiatric disorders with a worldwide prevalence around 4–5% in children and 1–4% in adults. Although ADHD is highly heritable and familial risk may contribute most strongly to the persistent form of the disorder, there are few studies on the genetics of ADHD in adults. In this paper, we present the first results of the International Multicentre Persistent ADHD Genetics CollaboraTion (IMpACT) that has been set up with the goal of performing research into the genetics of persistent ADHD. In this study, we carried out a combined analysis as well as a meta-analysis of the association of the SLC6A3/DAT1 gene with persistent ADHD in 1440 patients and 1769 controls from IMpACT and an earlier report. DAT1, encoding the dopamine transporter, is one of the most frequently studied genes in ADHD, though results have been inconsistent. A variable number tandem repeat polymorphism (VNTR) in the 3′-untranslated region (UTR) of the gene and, more recently, a haplotype of this VNTR with another VNTR in intron 8 have been the target of most studies. Although the 10/10 genotype of the 3′-UTR VNTR and the 10-6 haplotype of the two VNTRs are thought to be risk factors for ADHD in children, we found the 9/9 genotype and the 9-6 haplotype associated with persistent ADHD. In conclusion, a differential association of DAT1 with ADHD in children and in adults might help explain the inconsistencies observed in earlier association studies. However, the data might also imply that DAT1 has a modulatory rather than causative role in ADHD.


American Journal of Human Genetics | 2010

Mutations in ABHD12 Cause the Neurodegenerative Disease PHARC: An Inborn Error of Endocannabinoid Metabolism

Torunn Fiskerstrand; Dorra H’Mida-Ben Brahim; Stefan Johansson; Abderrahim M'zahem; Bjørn Ivar Haukanes; Nathalie Drouot; Julian Zimmermann; Andrew J. Cole; Christian A. Vedeler; Cecilie Bredrup; Mirna Assoum; Meriem Tazir; Thomas Klockgether; Abdelmadjid Hamri; Vidar M. Steen; Helge Boman; Laurence A. Bindoff; Michel Koenig; Per M. Knappskog

Polyneuropathy, hearing loss, ataxia, retinitis pigmentosa, and cataract (PHARC) is a neurodegenerative disease marked by early-onset cataract and hearing loss, retinitis pigmentosa, and involvement of both the central and peripheral nervous systems, including demyelinating sensorimotor polyneuropathy and cerebellar ataxia. Previously, we mapped this Refsum-like disorder to a 16 Mb region on chromosome 20. Here we report that mutations in the ABHD12 gene cause PHARC disease and we describe the clinical manifestations in a total of 19 patients from four different countries. The ABHD12 enzyme was recently shown to hydrolyze 2-arachidonoyl glycerol (2-AG), the main endocannabinoid lipid transmitter that acts on cannabinoid receptors CB1 and CB2. Our data therefore represent an example of an inherited disorder related to endocannabinoid metabolism. The endocannabinoid system is involved in a wide range of physiological processes including neurotransmission, mood, appetite, pain appreciation, addiction behavior, and inflammation, and several potential drugs targeting these pathways are in development for clinical applications. Our findings show that ABHD12 performs essential functions in both the central and peripheral nervous systems and the eye. Any future drug-mediated interference with this enzyme should consider the potential risk of long-term adverse effects.


Journal of Neurochemistry | 2005

Different properties of the central and peripheral forms of human tryptophan hydroxylase

Jeffrey McKinney; Per M. Knappskog; Jan Haavik

Tryptophan hydroxylase (TPH) catalyses the rate‐limiting reaction in the biosynthesis of serotonin. In humans, two different TPH genes exist, located on chromosomes 11 and 12, respectively, and encoding two enzymes (TPH1 and TPH2) with an overall sequence identity of 71%. We have expressed both enzymes as various fusion proteins in Escherichia coli and using an in vitro transcription/translation system, and compared their solubility and kinetic properties. TPH2 is more soluble than TPH1, has a higher molecular weight and different kinetic properties, including a lower catalytic efficiency towards phenylalanine than TPH1. Both enzymes are phosphorylated by cAMP‐dependent protein kinase A. TPH2 was phosphorylated at Ser19, a phosphorylation site not present in TPH1. The differences between TPH1 and TPH2 have important implications for the regulation of serotonin production in the brain and the periphery and may provide an explanation for some of the diverging results reported for TPH from different sources in the past.


The New England Journal of Medicine | 2012

Familial diarrhea syndrome caused by an activating GUCY2C mutation.

Torunn Fiskerstrand; Najla Arshad; Bjørn Ivar Haukanes; Rune Rose Tronstad; Khanh Do-Cong Pham; Stefan Johansson; Bjarte Håvik; Siv L Tonder; Shawn Levy; Damien Brackman; Helge Boman; Kabir H. Biswas; Jaran Apold; Nils Hovdenak; Sandhya S. Visweswariah; Per M. Knappskog

BACKGROUND Familial diarrhea disorders are, in most cases, severe and caused by recessive mutations. We describe the cause of a novel dominant disease in 32 members of a Norwegian family. The affected members have chronic diarrhea that is of early onset, is relatively mild, and is associated with increased susceptibility to inflammatory bowel disease, small-bowel obstruction, and esophagitis. METHODS We used linkage analysis, based on arrays with single-nucleotide polymorphisms, to identify a candidate region on chromosome 12 and then sequenced GUCY2C, encoding guanylate cyclase C (GC-C), an intestinal receptor for bacterial heat-stable enterotoxins. We performed exome sequencing of the entire candidate region from three affected family members, to exclude the possibility that mutations in genes other than GUCY2C could cause or contribute to susceptibility to the disease. We carried out functional studies of mutant GC-C using HEK293T cells. RESULTS We identified a heterozygous missense mutation (c.2519G→T) in GUCY2C in all affected family members and observed no other rare variants in the exons of genes in the candidate region. Exposure of the mutant receptor to its ligands resulted in markedly increased production of cyclic guanosine monophosphate (cGMP). This may cause hyperactivation of the cystic fibrosis transmembrane regulator (CFTR), leading to increased chloride and water secretion from the enterocytes, and may thus explain the chronic diarrhea in the affected family members. CONCLUSIONS Increased GC-C signaling disturbs normal bowel function and appears to have a proinflammatory effect, either through increased chloride secretion or additional effects of elevated cellular cGMP. Further investigation of the relevance of genetic variants affecting the GC-C-CFTR pathway to conditions such as Crohns disease is warranted. (Funded by Helse Vest [Western Norway Regional Health Authority] and the Department of Science and Technology, Government of India.).


Immunity | 2015

Dominant Mutations in the Autoimmune Regulator AIRE Are Associated with Common Organ-Specific Autoimmune Diseases.

Bergithe E. Oftedal; Alexander Hellesen; Martina M. Erichsen; Eirik Bratland; Ayelet Vardi; Jaakko Perheentupa; E. Helen Kemp; Torunn Fiskerstrand; Marte K. Viken; Anthony P. Weetman; Sarel J. Fleishman; Siddharth Banka; William G. Newman; W.A.C. Sewell; Leila S. Sozaeva; Tetyana Zayats; Kristoffer Haugarvoll; Elizaveta M. Orlova; Jan Haavik; Stefan Johansson; Per M. Knappskog; Kristian Løvås; Anette S. B. Wolff; Jakub Abramson; Eystein S. Husebye

The autoimmune regulator (AIRE) gene is crucial for establishing central immunological tolerance and preventing autoimmunity. Mutations in AIRE cause a rare autosomal-recessive disease, autoimmune polyendocrine syndrome type 1 (APS-1), distinguished by multi-organ autoimmunity. We have identified multiple cases and families with mono-allelic mutations in the first plant homeodomain (PHD1) zinc finger of AIRE that followed dominant inheritance, typically characterized by later onset, milder phenotypes, and reduced penetrance compared to classical APS-1. These missense PHD1 mutations suppressed gene expression driven by wild-type AIRE in a dominant-negative manner, unlike CARD or truncated AIRE mutants that lacked such dominant capacity. Exome array analysis revealed that the PHD1 dominant mutants were found with relatively high frequency (>0.0008) in mixed populations. Our results provide insight into the molecular action of AIRE and demonstrate that disease-causing mutations in the AIRE locus are more common than previously appreciated and cause more variable autoimmune phenotypes.


Journal of Bone and Mineral Research | 2013

Exome sequencing reveals FAM20c mutations associated with fibroblast growth factor 23–related hypophosphatemia, dental anomalies, and ectopic calcification

Silje Rafaelsen; Helge Ræder; Anne Kristine Fagerheim; Per M. Knappskog; Thomas O. Carpenter; Stefan Johansson; Robert Bjerknes

Fibroblast growth factor 23 (FGF23) plays a crucial role in renal phosphate regulation, exemplified by the causal role of PHEX and DMP1 mutations in X‐linked hypophosphatemic rickets and autosomal recessive rickets type 1, respectively. Using whole exome sequencing we identified compound heterozygous mutations in family with sequence similarity 20, member C (FAM20C) in two siblings referred for hypophosphatemia and severe dental demineralization disease. FAM20C mutations were not found in other undiagnosed probands of a national Norwegian population of familial hypophosphatemia. Our results demonstrate that mutations in FAM20C provide a putative new mechanism in human subjects leading to dysregulated FGF23 levels, hypophosphatemia, hyperphosphaturia, dental anomalies, intracerebral calcifications and osteosclerosis of the long bones in the absence of rickets.


American Journal of Medical Genetics | 2008

Genetic Analyses of Dopamine Related Genes in Adult ADHD Patients Suggest an Association With the DRD5-Microsatellite Repeat, But Not With DRD4 or SLC6A3 VNTRs

Stefan Johansson; Helene Barone Halleland; Anne Halmøy; Kaya Kvarme Jacobsen; E.T. Landaas; M. Dramsdahl; Ole Bernt Fasmer; P. Bergsholm; Astri J. Lundervold; Christopher Gillberg; Kenneth Hugdahl; Per M. Knappskog; Jan Haavik

Attention deficit hyperactivity disorder (ADHD) is a common and highly heritable psychiatric disorder in children and adults. Recent meta‐analyses have indicated an association between genes involved in dopaminergic signaling and childhood ADHD, but little is known about their possible role in adult ADHD. In this study of adults with ADHD, we evaluated the three most commonly studied ADHD candidate genetic polymorphisms; the dopamine receptor D4 (DRD4) exon 3 VNTR repeat, a microsatellite repeat 18.5 kb upstream of the DRD5 locus and the 3′UTR dopamine transporter SLC6A3 (DAT 1) VNTR. We examined 358 clinically diagnosed adult Norwegian ADHD patients (51% males) and 340 ethnically matched controls. We found a nominally significant overall association with adult ADHD for the DRD5 microsatellite marker (P = 0.04), and a trend toward increased risk associated with the 148‐bp allele consistent with recent meta‐analyses. The strongest overall association (P = 0.02) and increased risk for the 148‐bp allele [odds ratio (OR) = 1.27 (95% CI: 1.00–1.61)] were seen in the inattentive and combined inattentive/hyperactive group as previously reported for childhood ADHD. No association was found for the DRD4 or SLC6A3 polymorphisms in this patient sample. In conclusion, our results among adults with a clinical diagnosis of ADHD support an association between ADHD and the DRD5 locus, but not the DRD4 or SLC6A3 loci. It is possible that the latter polymorphisms are associated with a transient form of ADHD with better long‐term clinical outcome.

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Helge Boman

Haukeland University Hospital

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Jan Haavik

Haukeland University Hospital

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Eyvind Rødahl

Haukeland University Hospital

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Cecilie Bredrup

Haukeland University Hospital

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Torunn Fiskerstrand

Haukeland University Hospital

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Jaran Apold

Haukeland University Hospital

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