Genome-wide association analysis identifies ancestry-specific genetic variation associated with medication response in the Study to Understand the Genetics of the Acute Response to Metformin and Glipizide in Humans (SUGAR-MGH)
Li, J. H.; Brenner, L. N.; Kaur, V.; Figueroa, K.; Udler, M. S.; Leong, A.; MAGIC Investigators, ; Mercader, J. M.; Florez, J. C.
Show abstract
BackgroundCharacterization of genetic variation that influences response to glucose-lowering medications is instrumental to precision medicine for treatment of type 2 diabetes (T2D). SUGAR-MGH examined the acute response to two anti-diabetes medications in order to understand the functional relevance of known T2D- and glycaemic trait-associated genetic loci. Methods1,000 participants at risk for T2D from diverse ancestries underwent sequential glipizide and metformin challenges. A genome-wide association study was performed using the Illumina Multi-Ethnic Genotyping Array. Imputation was performed with the TOPMed reference panel. Multiple linear regression using an additive model tested for association between variants and primary endpoints of drug response. We evaluated the influence of 804 unique T2D and glycaemic trait-associated variants on SUGAR-MGH outcomes and performed colocalization analyses to identify shared genetic signals. FindingsFive genome-wide significant variants were associated with metformin or glipizide response. The strongest association was between an African ancestry-specific variant (minor allele frequency=0{middle dot}026) at rs149403252 and lower fasting glucose following metformin, adjusted for baseline glucose (p=1{middle dot}9x10-9), with a 0{middle dot}94 mmol/L larger decrease in fasting glucose after metformin. We identified associations between T2D-associated variants and glycaemic response, including the T2D-protective C allele of rs703972 near ZMIZ1 and increased levels of active GLP-1 (p=1{middle dot}6x10-5), supporting the role of alterations in incretin levels in T2D pathophysiology. InterpretationWe present a well phenotyped, densely genotyped, multi-ancestry resource to study gene-drug interactions, uncover novel variation associated with response to common anti-diabetes medications, and provide insight into mechanisms of action of T2D-related variation. FundingUS National Institutes of Health.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Characterizing common and rare variations in non-traditional glycemic biomarkers using multivariate approaches on multi-ancestry ARIC study 95%
- Integrative proteogenomic analyses provide novel interpretations of type 1 diabetes risk loci through circulating proteins 93%
- Genome-Wide Association Meta-Analysis Using a Recessive Model Illuminates Genetic Architecture of Type 2 Diabetes 93%
Similar papers in this journal
- Poor in-utero growth, reduced beta cell secretion and high plasma glucose in childhood are harbingers of glucose intolerance in young Indians 94%
- Early metabolic features of genetic liability to type 2 diabetes: cohort study with repeated metabolomics across early life 93%
- Time-to-Event Genome-Wide Association Study for Incident Cardiovascular Disease in People with Type 2 Diabetes Mellitus 92%
Similar papers in this journal
- The power of TOPMed imputation for the discovery of Latino enriched rare variants associated with type 2 diabetes 94%
- Phenotype-based targeted treatment of SGLT2 inhibitors and GLP-1 receptor agonists in type 2 diabetes 93%
- Epigenome-wide association study of incident type 2 diabetes in Black and White participants from the Atherosclerosis Risk in Communities Study 93%
Similar papers in this journal
- Genome-wide association meta-analysis identifies novel ancestry-specific primary open-angle glaucoma loci and shared biology with vascular mechanisms and cell proliferation 90%
- Insulin and Exercise-induced Phosphoproteomics of Human Skeletal Muscle Identify REPS1 as a New Regulator of Muscle Glucose Uptake 90%
- Antibody therapy reverses biological signatures of COVID-19 progression 89%
Similar papers in this journal
- Metabolic and proteomic signatures of type 2 diabetes subtypes in an Arab population 94%
- The genetic underpinnings of variable penetrance and expressivity of pathogenic mutations in cardiometabolic traits 94%
- Identification of plasma proteomic markers underlying polygenic risk of type 2 diabetes and related comorbidities 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.