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Dive into the research topics where Michael L. Frigge is active.

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Featured researches published by Michael L. Frigge.


Nature Genetics | 2002

A high-resolution recombination map of the human genome

Augustine Kong; Daniel F. Gudbjartsson; Jesus Sainz; Gudrun M. Jonsdottir; Sigurjon A. Gudjonsson; Bjorgvin Richardsson; Sigrun Sigurdardottir; John Barnard; Bjorn Hallbeck; Gisli Masson; Adam Shlien; Stefan Palsson; Michael L. Frigge; Thorgeir E. Thorgeirsson; Jeffrey R. Gulcher; Kari Stefansson

Determination of recombination rates across the human genome has been constrained by the limited resolution and accuracy of existing genetic maps and the draft genome sequence. We have genotyped 5,136 microsatellite markers for 146 families, with a total of 1,257 meiotic events, to build a high-resolution genetic map meant to: (i) improve the genetic order of polymorphic markers; (ii) improve the precision of estimates of genetic distances; (iii) correct portions of the sequence assembly and SNP map of the human genome; and (iv) build a map of recombination rates. Recombination rates are significantly correlated with both cytogenetic structures (staining intensity of G bands) and sequence (GC content, CpG motifs and poly(A)/poly(T) stretches). Maternal and paternal chromosomes show many differences in locations of recombination maxima. We detected systematic differences in recombination rates between mothers and between gametes from the same mother, suggesting that there is some underlying component determined by both genetic and environmental factors that affects maternal recombination rates.


American Journal of Human Genetics | 2002

Neuregulin 1 and Susceptibility to Schizophrenia

Hreinn Stefansson; Engilbert Sigurdsson; Valgerdur Steinthorsdottir; Soley Bjornsdottir; T. Sigmundsson; Shyamali Ghosh; J Brynjolfsson; Steinunn Gunnarsdottir; Ómar Ívarsson; Thomas T. Chou; Omar Hjaltason; Birgitta Birgisdottir; Helgi Jonsson; Vala G. Gudnadottir; Elsa Gudmundsdottir; Asgeir Björnsson; Brynjólfur Ingvarsson; Andres Ingason; Sigmundur Sigfússon; Hronn Hardardottir; Richard P. Harvey; Donna Lai; Mingdong Zhou; Daniela Brunner; Vincent Mutel; Acuna Gonzalo; Greg Lemke; Jesus Sainz; Gardar Johannesson; Thorkell Andresson

The cause of schizophrenia is unknown, but it has a significant genetic component. Pharmacologic studies, studies of gene expression in man, and studies of mouse mutants suggest involvement of glutamate and dopamine neurotransmitter systems. However, so far, strong association has not been found between schizophrenia and variants of the genes encoding components of these systems. Here, we report the results of a genomewide scan of schizophrenia families in Iceland; these results support previous work, done in five populations, showing that schizophrenia maps to chromosome 8p. Extensive fine-mapping of the 8p locus and haplotype-association analysis, supplemented by a transmission/disequilibrium test, identifies neuregulin 1 (NRG1) as a candidate gene for schizophrenia. NRG1 is expressed at central nervous system synapses and has a clear role in the expression and activation of neurotransmitter receptors, including glutamate receptors. Mutant mice heterozygous for either NRG1 or its receptor, ErbB4, show a behavioral phenotype that overlaps with mouse models for schizophrenia. Furthermore, NRG1 hypomorphs have fewer functional NMDA receptors than wild-type mice. We also demonstrate that the behavioral phenotypes of the NRG1 hypomorphs are partially reversible with clozapine, an atypical antipsychotic drug used to treat schizophrenia.


Nature | 2012

Rate of de novo mutations and the importance of father/'s age to disease risk

Augustine Kong; Michael L. Frigge; Gisli Masson; Søren Besenbacher; Patrick Sulem; Gisli Magnusson; Sigurjon A. Gudjonsson; Asgeir Sigurdsson; Aslaug Jonasdottir; Adalbjorg Jonasdottir; Wendy S. W. Wong; Gunnar Sigurdsson; G. Bragi Walters; Stacy Steinberg; Hannes Helgason; Gudmar Thorleifsson; Daniel F. Gudbjartsson; Agnar Helgason; Olafur T. Magnusson; Unnur Thorsteinsdottir; Kari Stefansson

Mutations generate sequence diversity and provide a substrate for selection. The rate of de novo mutations is therefore of major importance to evolution. We conducted a study of genomewide mutation rate by sequencing the entire genomes of 78 Icelandic parent-offspring trios at high coverage. Here we show that in our samples, with an average father’s age of 29.7, the average de novo mutation rate is 1.20×10−8 per nucleotide per generation. Most strikingly, the diversity in mutation rate of single-nucleotide polymorphism (SNP) is dominated by the age of the father at conception of the child. The effect is an increase of about 2 mutations per year. After accounting for random Poisson variation, father’s age is estimated to explain nearly all of the remaining variation in the de novo mutation counts. These observations shed light on the importance of the father’s age on the risk of diseases such as schizophrenia and autism.


Nature Genetics | 2004

The gene encoding 5-lipoxygenase activating protein confers risk of myocardial infarction and stroke.

Anna Helgadottir; Andrei Manolescu; Gudmar Thorleifsson; Solveig Gretarsdottir; Helga Jonsdottir; Unnur Thorsteinsdottir; Nilesh J. Samani; Gudmundur Gudmundsson; Struan F. A. Grant; Gudmundur Thorgeirsson; Sigurlaug Sveinbjörnsdóttir; Einar M Valdimarsson; Stefan E. Matthiasson; Halldor Johannsson; Olof Gudmundsdottir; Mark E. Gurney; Jesus Sainz; Margret Thorhallsdottir; Margret B. Andresdottir; Michael L. Frigge; Eric J. Topol; Augustine Kong; Vilmundur Gudnason; Hakon Hakonarson; Jeffrey R. Gulcher; Kari Stefansson

We mapped a gene predisposing to myocardial infarction to a locus on chromosome 13q12–13. A four-marker single-nucleotide polymorphism (SNP) haplotype in this locus spanning the gene ALOX5AP encoding 5-lipoxygenase activating protein (FLAP) is associated with a two times greater risk of myocardial infarction in Iceland. This haplotype also confers almost two times greater risk of stroke. Another ALOX5AP haplotype is associated with myocardial infarction in individuals from the UK. Stimulated neutrophils from individuals with myocardial infarction produce more leukotriene B4, a key product in the 5-lipoxygenase pathway, than do neutrophils from controls, and this difference is largely attributed to cells from males who carry the at-risk haplotype. We conclude that variants of ALOX5AP are involved in the pathogenesis of both myocardial infarction and stroke by increasing leukotriene production and inflammation in the arterial wall.


Nature Genetics | 2007

Common variants on chromosomes 2q35 and 16q12 confer susceptibility to estrogen receptor-positive breast cancer.

Simon N. Stacey; Andrei Manolescu; Patrick Sulem; Thorunn Rafnar; Julius Gudmundsson; Sigurjon A. Gudjonsson; Gisli Masson; Margret Jakobsdottir; Steinunn Thorlacius; Agnar Helgason; Katja K. Aben; Luc J Strobbe; Marjo T Albers-Akkers; Dorine W. Swinkels; Brian E. Henderson; Laurence N. Kolonel; Loic Le Marchand; Esther Millastre; Raquel Andres; Javier Godino; María Dolores García-Prats; Eduardo Polo; Alejandro Tres; Magali Mouy; Jona Saemundsdottir; Valgerdur M. Backman; Larus J. Gudmundsson; Kristleifur Kristjansson; Jon Thor Bergthorsson; Jelena Kostic

Familial clustering studies indicate that breast cancer risk has a substantial genetic component. To identify new breast cancer risk variants, we genotyped approximately 300,000 SNPs in 1,600 Icelandic individuals with breast cancer and 11,563 controls using the Illumina Hap300 platform. We then tested selected SNPs in five replication sample sets. Overall, we studied 4,554 affected individuals and 17,577 controls. Two SNPs consistently associated with breast cancer: ∼25% of individuals of European descent are homozygous for allele A of rs13387042 on chromosome 2q35 and have an estimated 1.44-fold greater risk than noncarriers, and for allele T of rs3803662 on 16q12, about 7% are homozygous and have a 1.64-fold greater risk. Risk from both alleles was confined to estrogen receptor–positive tumors. At present, no genes have been identified in the linkage disequilibrium block containing rs13387042. rs3803662 is near the 5′ end of TNRC9 , a high mobility group chromatin–associated protein whose expression is implicated in breast cancer metastasis to bone.


Nature Genetics | 2007

Two variants on chromosome 17 confer prostate cancer risk, and the one in TCF2 protects against type 2 diabetes

Julius Gudmundsson; Patrick Sulem; Valgerdur Steinthorsdottir; Jon Thor Bergthorsson; Gudmar Thorleifsson; Andrei Manolescu; Thorunn Rafnar; Daniel F. Gudbjartsson; Bjarni A. Agnarsson; Adam Baker; Asgeir Sigurdsson; Kristrun R. Benediktsdottir; Margret Jakobsdottir; Thorarinn Blondal; Simon N. Stacey; Agnar Helgason; Steinunn Gunnarsdottir; Adalheidur Olafsdottir; Kari T. Kristinsson; Birgitta Birgisdottir; Shyamali Ghosh; Steinunn Thorlacius; Dana Magnusdottir; Gerdur Stefansdottir; Kristleifur Kristjansson; Yu Z. Bagger; Robert L. Wilensky; Muredach P. Reilly; Andrew D. Morris; Charlotte H. Kimber

We performed a genome-wide association scan to search for sequence variants conferring risk of prostate cancer using 1,501 Icelandic men with prostate cancer and 11,290 controls. Follow-up studies involving three additional case-control groups replicated an association of two variants on chromosome 17 with the disease. These two variants, 33 Mb apart, fall within a region previously implicated by family-based linkage studies on prostate cancer. The risks conferred by these variants are moderate individually (allele odds ratio of about 1.20), but because they are common, their joint population attributable risk is substantial. One of the variants is in TCF2 (HNF1β), a gene known to be mutated in individuals with maturity-onset diabetes of the young type 5. Results from eight case-control groups, including one West African and one Chinese, demonstrate that this variant confers protection against type 2 diabetes.


Nature Genetics | 2005

A common inversion under selection in Europeans.

Hreinn Stefansson; Agnar Helgason; Gudmar Thorleifsson; Valgerdur Steinthorsdottir; Gisli Masson; John Barnard; Adam Baker; Aslaug Jonasdottir; Andres Ingason; Vala G. Gudnadottir; Natasa Desnica; Andrew A. Hicks; Arnaldur Gylfason; Daniel F. Gudbjartsson; Gudrun M. Jonsdottir; Jesus Sainz; Kari Agnarsson; Birgitta Birgisdottir; Shyamali Ghosh; Adalheidur Olafsdottir; Jean-Baptiste Cazier; Kristleifur Kristjansson; Michael L. Frigge; Thorgeir E. Thorgeirsson; Jeffrey R. Gulcher; Augustine Kong; Kari Stefansson

A refined physical map of chromosome 17q21.31 uncovered a 900-kb inversion polymorphism. Chromosomes with the inverted segment in different orientations represent two distinct lineages, H1 and H2, that have diverged for as much as 3 million years and show no evidence of having recombined. The H2 lineage is rare in Africans, almost absent in East Asians but found at a frequency of 20% in Europeans, in whom the haplotype structure is indicative of a history of positive selection. Here we show that the H2 lineage is undergoing positive selection in the Icelandic population, such that carrier females have more children and have higher recombination rates than noncarriers.


Nature Genetics | 2003

The gene encoding phosphodiesterase 4D confers risk of ischemic stroke

Solveig Gretarsdottir; Gudmar Thorleifsson; Sigridur Th. Reynisdottir; Andrei Manolescu; Sif Jonsdottir; Thorbjorg Jonsdottir; Thorunn Gudmundsdottir; Sigrun M. Bjarnadottir; Olafur B. Einarsson; Herdis M. Gudjonsdottir; Malcolm Hawkins; Gudmundur Gudmundsson; Hrefna Gudmundsdottir; Hjalti Andrason; Asta Solilja Gudmundsdottir; Matthildur Sigurdardottir; Thomas T. Chou; Joseph Nahmias; Shyamali Goss; Sigurlaug Sveinbjörnsdóttir; Einar M Valdimarsson; Finnbogi Jakobsson; Uggi Agnarsson; Vilmundur Gudnason; Gudmundur Thorgeirsson; Jürgen Fingerle; Mark E. Gurney; Daniel F. Gudbjartsson; Michael L. Frigge; Augustine Kong

We previously mapped susceptibility to stroke to chromosome 5q12. Here we finely mapped this locus and tested it for association with stroke. We found the strongest association in the gene encoding phosphodiesterase 4D (PDE4D), especially for carotid and cardiogenic stroke, the forms of stroke related to atherosclerosis. Notably, we found that haplotypes can be classified into three distinct groups: wild-type, at-risk and protective. We also observed a substantial disregulation of multiple PDE4D isoforms in affected individuals. We propose that PDE4D is involved in the pathogenesis of stroke, possibly through atherosclerosis, which is the primary pathological process underlying ischemic stroke.


Nature Genetics | 2009

Sequence variants at the TERT-CLPTM1L locus associate with many cancer types

Thorunn Rafnar; Patrick Sulem; Simon N. Stacey; Frank Geller; Julius Gudmundsson; Asgeir Sigurdsson; Margret Jakobsdottir; Hafdis T. Helgadottir; Steinunn Thorlacius; Katja K. Aben; Thorarinn Blondal; Thorgeir E. Thorgeirsson; Gudmar Thorleifsson; Kristleifur Kristjansson; Kristin Thorisdottir; Rafn Ragnarsson; Bardur Sigurgeirsson; Halla Skuladottir; Tomas Gudbjartsson; Helgi J. Ísaksson; Gudmundur V. Einarsson; Kristrun R. Benediktsdottir; Bjarni A. Agnarsson; Karl Olafsson; Anna Salvarsdottir; Hjordis Bjarnason; Margret Asgeirsdottir; Kari T. Kristinsson; Sigurborg Matthiasdottir; Steinunn G Sveinsdottir

The common sequence variants that have recently been associated with cancer risk are particular to a single cancer type or at most two. Following up on our genome-wide scan of basal cell carcinoma, we found that rs401681[C] on chromosome 5p15.33 satisfied our threshold for genome-wide significance (OR = 1.25, P = 3.7 × 10−12). We tested rs401681 for association with 16 additional cancer types in over 30,000 cancer cases and 45,000 controls and found association with lung cancer (OR = 1.15, P = 7.2 × 10−8) and urinary bladder, prostate and cervix cancer (ORs = 1.07−1.31, all P < 4 × 10−4). However, rs401681[C] seems to confer protection against cutaneous melanoma (OR = 0.88, P = 8.0 × 10−4). Notably, most of these cancer types have a strong environmental component to their risk. Investigation of the region led us to rs2736098[A], which showed stronger association with some cancer types. However, neither variant could fully account for the association of the other. rs2736098 corresponds to A305A in the telomerase reverse transcriptase (TERT) protein and rs401681 is in an intron of the CLPTM1L gene.


Nature | 2009

Parental origin of sequence variants associated with complex diseases.

Augustine Kong; Valgerdur Steinthorsdottir; Gisli Masson; Gudmar Thorleifsson; Patrick Sulem; Søren Besenbacher; Aslaug Jonasdottir; Asgeir Sigurdsson; Kari T. Kristinsson; Adalbjorg Jonasdottir; Michael L. Frigge; Arnaldur Gylfason; Pall Olason; Sigurjon A. Gudjonsson; Sverrir Sverrisson; Simon N. Stacey; Bardur Sigurgeirsson; Kristrun R. Benediktsdottir; Helgi Sigurdsson; Thorvaldur Jonsson; Rafn Benediktsson; Jón Ólafsson; Oskar Th Johannsson; Astradur B. Hreidarsson; Gunnar Sigurdsson; Anne C. Ferguson-Smith; Daniel F. Gudbjartsson; Unnur Thorsteinsdottir; Kari Stefansson

Effects of susceptibility variants may depend on from which parent they are inherited. Although many associations between sequence variants and human traits have been discovered through genome-wide associations, the impact of parental origin has largely been ignored. Here we show that for 38,167 Icelanders genotyped using single nucleotide polymorphism (SNP) chips, the parental origin of most alleles can be determined. For this we used a combination of genealogy and long-range phasing. We then focused on SNPs that associate with diseases and are within 500 kilobases of known imprinted genes. Seven independent SNP associations were examined. Five—one with breast cancer, one with basal-cell carcinoma and three with type 2 diabetes—have parental-origin-specific associations. These variants are located in two genomic regions, 11p15 and 7q32, each harbouring a cluster of imprinted genes. Furthermore, we observed a novel association between the SNP rs2334499 at 11p15 and type 2 diabetes. Here the allele that confers risk when paternally inherited is protective when maternally transmitted. We identified a differentially methylated CTCF-binding site at 11p15 and demonstrated correlation of rs2334499 with decreased methylation of that site.

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