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1. Integrating transcriptomics, metabolomics, and GWAS helps reveal molecular mechanisms for metabolite levels and disease risk

2. GWAS of random glucose in 476,326 individuals provide insights into diabetes pathophysiology, complications and treatment stratification

3. Genome-wide association studies of metabolites in Finnish men identify disease-relevant loci

4. The Type 2 Diabetes Knowledge Portal: An open access genetic resource dedicated to type 2 diabetes and related traits

5. Genome-wide association analyses of physical activity and sedentary behavior provide insights into underlying mechanisms and roles in disease prevention

6. ACE2 expression in adipose tissue is associated with cardio-metabolic risk factors and cell type composition—implications for COVID-19

7. Exome sequencing of Finnish isolates enhances rare-variant association power

8. Exome sequencing of 20,791 cases of type 2 diabetes and 24,440 controls

9. Multi-ancestry study of blood lipid levels identifies four loci interacting with physical activity.

10. Genetic loci and prioritization of genes for kidney function decline derived from a meta-analysis of 62 longitudinal genome-wide association studies

11. Differential and shared genetic effects on kidney function between diabetic and non-diabetic individuals

12. Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

13. Erratum: Sequence data and association statistics from 12,940 type 2 diabetes cases and controls.

14. Sequence data and association statistics from 12,940 type 2 diabetes cases and controls.

15. An Expanded Genome-Wide Association Study of Type 2 Diabetes in Europeans

16. A Low-Frequency Inactivating Akt2 Variant Enriched in the Finnish Population is Associated With Fasting Insulin Levels and Type 2 Diabetes Risk.

17. Genome-wide physical activity interactions in adiposity - A meta-analysis of 200,452 adults.

18. Genetic Regulation of Adipose Gene Expression and Cardio-Metabolic Traits

19. Population-scale skeletal muscle single-nucleus multi-omic profiling reveals extensive context specific genetic regulation

20. Identification and functional characterization of G6PC2 coding variants influencing glycemic traits define an effector transcript at the G6PC2-ABCB11 locus.

21. SMIM1 absence is associated with reduced energy expenditure and excess weight

22. Effects of Long-Term Averaging of Quantitative Blood Pressure Traits on the Detection of Genetic Associations

23. Impact of Type 2 Diabetes Susceptibility Variants on Quantitative Glycemic Traits Reveals Mechanistic Heterogeneity

24. Re-sequencing expands our understanding of the phenotypic impact of variants at GWAS loci.

25. Adipose tissue eQTL meta-analysis reveals the contribution of allelic heterogeneity to gene expression regulation and cardiometabolic traits

26. Protein-coding variants implicate novel genes related to lipid homeostasis contributing to body-fat distribution

27. No Interactions Between Previously Associated 2-Hour Glucose Gene Variants and Physical Activity or BMI on 2-Hour Glucose Levels

28. Association analyses of 249,796 individuals reveal 18 new loci associated with body mass index

29. Biological, clinical and population relevance of 95 loci for blood lipids

31. Cell-type composition affects adipose gene expression associations with cardiometabolic traits

32. Genome-wide association study identifies eight loci associated with blood pressure

33. Metabolome-wide Mendelian randomization characterizes heterogeneous and shared causal effects of metabolites on human health

34. Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure in obesity

35. The Type 2 Diabetes Knowledge Portal: An open access genetic resource dedicated to type 2 diabetes and related traits

36. Additional file 26 of Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

37. Additional file 34 of Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

38. Additional file 16 of Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

39. Additional file 6 of Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

40. Additional file 9 of Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

41. Publisher Correction: Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure in obesity

42. The genetic architecture of type 2 diabetes

43. Implicating genes, pleiotropy, and sexual dimorphism at blood lipid loci through multi-ancestry meta-analysis

44. Rare and low-frequency coding variants alter human adult height

45. Publisher Correction: Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure in obesity

46. A Genome-Wide Association Study of Type 2 Diabetes in Finns Detects Multiple Susceptibility Variants

47. Genetic studies of body mass index yield new insights for obesity biology

48. New genetic loci link adipose and insulin biology to body fat distribution

49. Age-Related Clonal Hematopoiesis Associated with Adverse Outcomes

50. The trans-ancestral genomic architecture of glycemic traits

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