scholarly journals Assessment of rosacea symptom severity by genome-wide association study and expression analysis highlights immuno-inflammatory and skin pigmentation genes

2018 ◽  
Vol 27 (15) ◽  
pp. 2762-2772 ◽  
Author(s):  
Jennifer L Aponte ◽  
Mathias N Chiano ◽  
Laura M Yerges-Armstrong ◽  
David A Hinds ◽  
Chao Tian ◽  
...  

Abstract Rosacea is a common, chronic skin disease of variable severity with limited treatment options. The cause of rosacea is unknown, but it is believed to be due to a combination of hereditary and environmental factors. Little is known about the genetics of the disease. We performed a genome-wide association study (GWAS) of rosacea symptom severity with data from 73 265 research participants of European ancestry from the 23andMe customer base. Seven loci had variants associated with rosacea at the genome-wide significance level (P < 5 × 10−8). Further analyses highlighted likely gene regions or effector genes including IRF4 (P = 1.5 × 10−17), a human leukocyte antigen (HLA) region flanked by PSMB9 and HLA-DMB (P = 2.2 × 10−15), HERC2-OCA2 (P = 4.2 × 10−12), SLC45A2 (P = 1.7 × 10−10), IL13 (P = 2.8 × 10−9), a region flanked by NRXN3 and DIO2 (P = 4.1 × 10−9), and a region flanked by OVOL1and SNX32 (P = 1.2 × 10−8). All associations with rosacea were novel except for the HLA locus. Two of these loci (HERC-OCA2 and SLC45A2) and another precedented variant (rs1805007 in melanocortin 1 receptor) with an association P value just below the significance threshold (P = 1.3 × 10−7) have been previously associated with skin phenotypes and pigmentation, two of these loci are linked to immuno-inflammation phenotypes (IL13 and PSMB9-HLA-DMA) and one has been associated with both categories (IRF4). Genes within three loci (PSMB9-HLA-DMA, HERC-OCA2 and NRX3-DIO2) were differentially expressed in a previously published clinical rosacea transcriptomics study that compared lesional to non-lesional samples. The identified loci provide specificity of inflammatory mechanisms in rosacea, and identify potential pathways for therapeutic intervention.

Biomolecules ◽  
2019 ◽  
Vol 9 (8) ◽  
pp. 321 ◽  
Author(s):  
Gauri Prasad ◽  
Khushdeep Bandesh ◽  
Anil Giri ◽  
Yasmeen Kauser ◽  
Prakriti Chanda ◽  
...  

Indians, a rapidly growing population, constitute vast genetic heterogeneity to that of Western population; however they have become a sedentary population in past decades due to rapid urbanization ensuing in the amplified prevalence of metabolic syndrome (MetS). We performed a genome-wide association study (GWAS) of MetS in 10,093 Indian individuals (6617 MetS and 3476 controls) of Indo-European origin, that belong to our previous biorepository of The Indian Diabetes Consortium (INDICO). The study was conducted in two stages—discovery phase (N = 2158) and replication phase (N = 7935). We discovered two variants within/near the CETP gene—rs1800775 and rs3816117—associated with MetS at genome-wide significance level during replication phase in Indians. Additional CETP loci rs7205804, rs1532624, rs3764261, rs247617, and rs173539 also cropped up as modest signals in Indians. Haplotype association analysis revealed GCCCAGC as the strongest haplotype within the CETP locus constituting all seven CETP signals. In combined analysis, we perceived a novel and functionally relevant sub-GWAS significant locus—rs16890462 in the vicinity of SFRP1 gene. Overlaying gene regulatory data from ENCODE database revealed that single nucleotide polymorphism (SNP) rs16890462 resides in repressive chromatin in human subcutaneous adipose tissue as characterized by the enrichment of H3K27me3 and CTCF marks (repressive gene marks) and diminished H3K36me3 marks (activation gene marks). The variant displayed active DNA methylation marks in adipose tissue, suggesting its likely regulatory activity. Further, the variant also disrupts a potential binding site of a key transcription factor, NRF2, which is known for involvement in obesity and metabolic syndrome.


2019 ◽  
Vol 116 (1) ◽  
pp. 138-148 ◽  
Author(s):  
Katra Hadji-Turdeghal ◽  
Laura Andreasen ◽  
Christian M Hagen ◽  
Gustav Ahlberg ◽  
Jonas Ghouse ◽  
...  

Abstract Aims Syncope is a common condition associated with frequent hospitalization or visits to the emergency department. Family aggregation and twin studies have shown that syncope has a heritable component. We investigated whether common genetic variants predispose to syncope and collapse. Methods and results We used genome-wide association data on syncope on 408 961 individuals with European ancestry from the UK Biobank study. In a replication study, we used the Integrative Psychiatric Research Consortium (iPSYCH) cohort (n = 86 189), to investigate the risk of incident syncope stratified by genotype carrier status. We report on a genome-wide significant locus located on chromosome 2q32.1 [odds ratio = 1.13, 95% confidence interval (CI) 1.10–1.17, P = 5.8 × 10−15], with lead single nucleotide polymorphism rs12465214 in proximity to the gene zinc finger protein 804a (ZNF804A). This association was also shown in the iPSYCH cohort, where homozygous carriers of the C allele conferred an increased hazard ratio (1.30, 95% CI 1.15–1.46, P = 1.68 × 10−5) of incident syncope. Quantitative polymerase chain reaction analysis showed ZNF804A to be expressed most abundantly in brain tissue. Conclusion We identified a genome-wide significant locus (rs12465214) associated with syncope and collapse. The association was replicated in an independent cohort. This is the first genome-wide association study to associate a locus with syncope and collapse.


2017 ◽  
Author(s):  
Toni-Kim Clarke ◽  
Mark J. Adams ◽  
Gail Davies ◽  
David M. Howard ◽  
Lynsey S. Hall ◽  
...  

AbstractAlcohol consumption has been linked to over 200 diseases and is responsible for over 5% of the global disease burden. Well known genetic variants in alcohol metabolizing genes, e.g. ALDH2, ADH1B, are strongly associated with alcohol consumption but have limited impact in European populations where they are found at low frequency. We performed a genome-wide association study (GWAS) of self-reported alcohol consumption in 112,117 individuals in the UK Biobank (UKB) sample of white British individuals. We report significant genome-wide associations at 8 independent loci. These include SNPs in alcohol metabolizing genes (ADH1B/ADH1C/ADH5) and 2 loci in KLB, a gene recently associated with alcohol consumption. We also identify SNPs at novel loci including GCKR, PXDN, CADM2 and TNFRSF11A. Gene-based analyses found significant associations with genes implicated in the neurobiology of substance use (CRHR1, DRD2), and genes previously associated with alcohol consumption (AUTS2). GCTA-GREML analyses found a significant SNP-based heritability of self-reported alcohol consumption of 13% (S.E.=0.01). Sex-specific analyses found largely overlapping GWAS loci and the genetic correlation between male and female alcohol consumption was 0.73 (S.E.=0.09, p-value = 1.37 x 10−16). Using LD score regression, genetic overlap was found between alcohol consumption and schizophrenia (rG=0.13, S.E=0.04), HDL cholesterol (rG=0.21, S.E=0.05), smoking (rG=0.49, S.E=0.06) and various anthropometric traits (e.g. Overweight, rG=-0.19, S.E.=0.05). This study replicates the association between alcohol consumption and alcohol metabolizing genes and KLB, and identifies 4 novel gene associations that should be the focus of future studies investigating the neurobiology of alcohol consumption.


Circulation ◽  
2018 ◽  
Vol 137 (suppl_1) ◽  
Author(s):  
Victor W Zhong ◽  
Sandra Sanchez-Roige ◽  
Peter Kraft ◽  
Rob M Van Dam ◽  
Daniel I Chasman ◽  
...  

Introduction: Widely consumed beverages (e.g., soft drinks, coffee, tea) are critical sources of energy, added sugar and phytochemicals and are associated with obesity and chronic disease. Taste perception and preferences are highly heritable and strong determinants of food and beverage choice. We aimed to identify novel loci underlying habitual bitter and sweet beverage intake. Methods: We performed a genome-wide association study (GWAS) of self-reported bitter and sweet beverage intake in participants of European ancestry in the UK Biobank. Diet was assessed via multiple 24-h diet recalls (n=84703, subset) or questionnaire (n=335909, all). Bitter beverage intake was the sum of coffee, tea and grapefruit juice. Sweet beverage intake was the sum of artificially and sugar sweetened beverages and other fruit juice. Multivariable linear regression under an additive genetic model was applied. GW-significant (P < 5х10 -8 ) SNPs were followed-up for replication in independent studies of European ancestry. Results: Multiple SNPs spanning 11 loci were associated with bitter beverage intake (P <5х10 -8 , Table 1), and at least 5 of them reflected the caffeine content of coffee and tea. Multiple SNPs in the obesity candidate gene FTO were associated with sweet beverage intake (P <5х10 -8 ). The effect size per allele ranged from 0.02 to 0.2 cup per day. Loci in/near AHR, CYP1A2, and FTO were associated with both bitter and sweet beverage intake but in opposite directions. Replication efforts are ongoing. So far, associations at all loci, except 1q25.2 and 2q36.2, were replicated (P range: 0.04 to 1.8x10 -8 ) in independent studies (n=17322) which provided 80% power for replicating 8 of these 12 loci at P=0.05. Conclusions: Loci linked to caffeine metabolism and obesity predisposition rather than taste are major determinants of beverage intake. These and other identified loci have been linked to chronic disease and risk factors, suggesting causal or pleiotropic effects. Our findings have potential public health and methodological implications.


Author(s):  
TR Merriman ◽  
M Cadzow ◽  
M Merriman ◽  
A Phipps-Green ◽  
R Topless ◽  
...  

PLoS Genetics ◽  
2008 ◽  
Vol 4 (5) ◽  
pp. e1000074 ◽  
Author(s):  
Jiali Han ◽  
Peter Kraft ◽  
Hongmei Nan ◽  
Qun Guo ◽  
Constance Chen ◽  
...  

2010 ◽  
Vol 51 (6) ◽  
pp. e3
Author(s):  
M.C. Cornelis ◽  
J. Agnew-Blais ◽  
P. Kraft ◽  
D. Hunter ◽  
M. Jensen ◽  
...  

2021 ◽  
Author(s):  
Pi-Hua Liu ◽  
Gwo-Tsann Chuang ◽  
Chia-Ni Hsiung ◽  
Wei-Shun Yang ◽  
Hsiao-Chia Ku ◽  
...  

Abstract SummaryPurpose: Melatonin exerts a wide range of effects among various tissues and organs. However, there is currently no study to investigate the genetic determinants of melatonin secretion. Here, we conducted a genome-wide association study (GWAS) for melatonin secretion using morning urine 6-hydroxymelatonin sulfate-to-creatinine ratio (UMCR). Methods: We initially enrolled 5,000 participants from Taiwan Biobank in this study. After excluding individuals that did not have their urine collected in the morning and those who failed to pass quality control, association of single nucleotide polymorphisms with log-transformed UMCR adjusted for age, sex and principal components of ancestry were analyzed. A second model additionally adjusted for estimated glomerular filtration rate (eGFR). Results: A total of 2,504 participants underwent the genome-wide analysis. Six candidate loci associated with log UMCR (P value ranging from 7.54 x 10-7 to 4.65 x 10-6) encompassing GALNT15, ZFHX3, NKAIN2, MME and NBPF22P were identified. Similar results were yielded with further adjustment for eGFR. Interestingly, the identified genes are associated with central nervous system function and clinical condition such as Alzheimer's disease or sleep disorders.Conclusions: We conducted the first GWAS for melatonin secretion and identified six candidate genetic loci associated with melatonin level. Replication and functional studies are needed in the future.


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