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Search: WFRF:(Chiara Rossella) > (2015-2019)

  • Result 1-6 of 6
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2.
  • Campo, Chiara, et al. (author)
  • Inherited variants in genes somatically mutated in thyroid cancer
  • 2017
  • In: PLoS ONE. - : Public Library of Science (PLoS). - 1932-6203. ; 12:4
  • Journal article (peer-reviewed)abstract
    • Background Tumour suppressor genes when mutated in the germline cause various cancers, but they can also be somatically mutated in sporadic tumours. We hypothesized that there may also be cancer-related germline variants in the genes commonly mutated in sporadic well-differentiated thyroid cancer (WDTC). Methods We performed a two-stage case-control association study with a total of 2214 cases and 2108 healthy controls from an Italian population. By genotyping 34 single nucleotide polymorphisms (SNPs), we covered a total of 59 missense SNPs and SNPs located in the 5' and 3' untranslated regions (UTRs) of 10 different genes. Results The Italian1 series showed a suggestive association for 8 SNPs, from which three were replicated in the Italian2 series. The meta-analysis revealed a study-wide significant association for rs459552 (OR: 0.84, 95%CI: 0.75-0.94) and rs1800900 (OR: 1.15, 95%CI: 1.05-1.27), located in the APC and GNAS genes, respectively. The APC rs459552 is a missense SNP, located in a conserved amino acid position, but without any functional consequences. The GNAS rs1800900 is located at a conserved 5'UTR and according to the experimental ENCODE data it may affect promoter and histone marks in different cell types. Conclusions The results of this study yield new insights on WDTC, showing that inherited variants in the APC and GNAS genes can play a role in the etiology of thyroid cancer. Further studies are necessary to better understand the role of the identified SNPs in the development of WDTC and to functionally validate our in silico predictions.
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3.
  • Cipollini, Monica, et al. (author)
  • Polymorphisms within base and nucleotide excision repair pathways and risk of differentiated thyroid carcinoma
  • 2016
  • In: DNA Repair. - : Elsevier BV. - 1568-7864. ; 41, s. 27-31
  • Journal article (peer-reviewed)abstract
    • The thyrocytes are exposed to high levels of oxidative stress which could induce DNA damages. Base excision repair (BER) is one of the principal mechanisms of defense against oxidative DNA damage, however recent evidences suggest that also nucleotide excision repair (NER) could be involved. The aim of present work was to identify novel differentiated thyroid cancer (DTC) risk variants in BER and NER genes. For this purpose, the most strongly associated SNPs within NER and BER genes found in our previous GWAS on DTC were selected and replicated in an independent series of samples for a new case-control study. Although a positive signal was detected at the nominal level of 0.05 for rs7689099 (encoding for an aminoacid change proline to arginine at codon 117 within NEIL3), none of the considered SNPs (i.e. rs7990340 and rs690860 within RFC3, rs3744767 and rs1131636 within RPA1, rs16962916 and rs3136166 in ERCC4, and rs17739370 and rs7689099 in NEIL3) was associated with the risk of DTC when the correction of multiple testing was applied. In conclusion, a role of NER and BER pathways was evoked in the susceptibility to DTC. However, this seemed to be limited to few polymorphic genes and the overall effect size appeared weak.
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4.
  • Evangelou, Evangelos, et al. (author)
  • Genetic analysis of over 1 million people identifies 535 new loci associated with blood pressure traits.
  • 2018
  • In: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 50:10, s. 1412-1425
  • Journal article (peer-reviewed)abstract
    • High blood pressure is a highly heritable and modifiable risk factor for cardiovascular disease. We report the largest genetic association study of blood pressure traits (systolic, diastolic and pulse pressure) to date in over 1 million people of European ancestry. We identify 535 novel blood pressure loci that not only offer new biological insights into blood pressure regulation but also highlight shared genetic architecture between blood pressure and lifestyle exposures. Our findings identify new biological pathways for blood pressure regulation with potential for improved cardiovascular disease prevention in the future.
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5.
  • Figlioli, Gisella, et al. (author)
  • Novel genetic variants in differentiated thyroid cancer and assessment of the cumulative risk.
  • 2015
  • In: Scientific Reports. - : Springer Science and Business Media LLC. - 2045-2322. ; 5
  • Journal article (peer-reviewed)abstract
    • A genome-wide association study (GWAS) performed on a high-incidence Italian population followed by replications on low-incidence cohorts suggested a strong association of differentiated thyroid cancer (DTC) with single nucleotide polymorphisms (SNPs) at 9q22.33, 2q35, 20q11.22-q12 and 14q24.3. Moreover, six additional susceptibility loci were associated with the disease only among Italians. The present study had two aims, first to identify loci involved in DTC risk and then to assess the cumulative effect of the SNPs identified so far in the Italian population. The combined analysis of the previous GWAS and the present Italian study provided evidence of association with rs7935113 (GALNTL4, OR = 1.36, 95%CI 1.20-1.53, p-value = 7.41 × 10(-7)) and rs1203952 (FOXA2, OR = 1.29, 95%CI 1.16-1.44, p-value = 4.42 × 10(-6)). Experimental ENCODE and eQTL data suggested that both SNPs may influence the closest genes expression through a differential recruitment of transcription factors. The assessment of the cumulative risk of eleven SNPs showed that DTC risk increases with an increasing number of risk alleles (p-trend = 3.13 × 10(-47)). Nonetheless, only a small fraction (about 4% on the disease liability scale) of DTC is explained by these SNPs. These data are consistent with a polygenic model of DTC predisposition and highlight the importance of association studies in the discovery of the disease hereditability.
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6.
  • Wain, Louise V., et al. (author)
  • Novel Blood Pressure Locus and Gene Discovery Using Genome-Wide Association Study and Expression Data Sets From Blood and the Kidney
  • 2017
  • In: Hypertension. - 0194-911X .- 1524-4563. ; 70:3, s. e4-e19
  • Journal article (peer-reviewed)abstract
    • Elevated blood pressure is a major risk factor for cardiovascular disease and has a substantial genetic contribution. Genetic variation influencing blood pressure has the potential to identify new pharmacological targets for the treatment of hypertension. To discover additional novel blood pressure loci, we used 1000 Genomes Project-based imputation in 150 134 European ancestry individuals and sought significant evidence for independent replication in a further 228 245 individuals. We report 6 new signals of association in or near HSPB7, TNXB, LRP12, LOC283335, SEPT9, and AKT2, and provide new replication evidence for a further 2 signals in EBF2 and NFKBIA. Combining large whole-blood gene expression resources totaling 12 607 individuals, we investigated all novel and previously reported signals and identified 48 genes with evidence for involvement in blood pressure regulation that are significant in multiple resources. Three novel kidney-specific signals were also detected. These robustly implicated genes may provide new leads for therapeutic innovation.
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  • Result 1-6 of 6
Type of publication
journal article (6)
Type of content
peer-reviewed (6)
Author/Editor
Hemminki, Kari (3)
Khaw, Kay-Tee (2)
Salomaa, Veikko (2)
Jula, Antti (2)
Perola, Markus (2)
Lind, Lars (2)
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Raitakari, Olli T (2)
Campbell, Harry (2)
Rudan, Igor (2)
Strachan, David P (2)
Wareham, Nicholas J. (2)
Johansson, Åsa (2)
Ridker, Paul M. (2)
Chasman, Daniel I. (2)
Amin, Najaf (2)
van Duijn, Cornelia ... (2)
Rose, Lynda M (2)
Langenberg, Claudia (2)
Paré, Guillaume (2)
Boehnke, Michael (2)
Hamsten, Anders (2)
Scott, Robert A (2)
Shah, Nabi (2)
Havulinna, Aki S. (2)
Ripatti, Samuli (2)
Enroth, Stefan, 1976 ... (2)
Tuomilehto, Jaakko (2)
Försti, Asta (2)
Rotter, Jerome I. (2)
Koskinen, Seppo (2)
Nelson, Christopher ... (2)
Mangino, Massimo (2)
Willemsen, Gonneke (2)
Oostra, Ben A. (2)
Gieger, Christian (2)
Peters, Annette (2)
Boomsma, Dorret I. (2)
Spector, Tim D. (2)
Samani, Nilesh J. (2)
Jarvelin, Marjo-Riit ... (2)
Knekt, Paul (2)
Mahajan, Anubha (2)
Luan, Jian'an (2)
Metspalu, Andres (2)
Caulfield, Mark J. (2)
Farrall, Martin (2)
Munroe, Patricia B. (2)
Palmer, Colin N. A. (2)
Padmanabhan, Sandosh (2)
Hicks, Andrew A. (2)
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University
Lund University (5)
Stockholm University (3)
Karolinska Institutet (3)
Uppsala University (2)
Umeå University (1)
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Language
English (6)
Research subject (UKÄ/SCB)
Medical and Health Sciences (6)
Natural sciences (2)

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