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1. Gene expression signature predicts rate of type 1 diabetes progressionResearch in context

2. Whole blood co-expression modules associate with metabolic traits and type 2 diabetes: an IMI-DIRECT study

3. Integrative network analysis highlights biological processes underlying GLP-1 stimulated insulin secretion: A DIRECT study.

4. JNK1 Deficient Insulin-Producing Cells Are Protected against Interleukin-1β-Induced Apoptosis Associated with Abrogated Myc Expression

5. The type 1 diabetes - HLA susceptibility interactome--identification of HLA genotype-specific disease genes for type 1 diabetes.

6. Expression profiling of human genetic and protein interaction networks in type 1 diabetes.

7. Heterogeneity in phenotype, disease progression and drug response in type 2 diabetes

8. Multi-omics analysis reveals drivers of loss of β-cell function after newly diagnosed autoimmune type 1 diabetes: An INNODIA‡multicenter study

9. 1111-P: Integrating Longitudinal Clinical and Baseline Multiomics Data for Predicting C-Peptide Progression in Newly Diagnosed Type 1 Diabetes

10. Genetic analysis of blood molecular phenotypes reveals regulatory networks affecting complex traits: a DIRECT study

11. Heterogeneity in phenotype, disease progression and drug response in type 2 diabetes

12. Discovery of biomarkers for glycaemic deterioration before and after the onset of type 2 diabetes: descriptive characteristics of the epidemiological studies within the IMI DIRECT Consortium

13. Discovery of biomarkers for glycaemic deterioration before and after the onset of type 2 diabetes: an overview of the data from the epidemiological studies within the IMI DIRECT Consortium

14. A20 Inhibits β-Cell Apoptosis by Multiple Mechanisms and Predicts Residual β-Cell Function in Type 1 Diabetes

15. CTSH regulates β-cell function and disease progression in newly diagnosed type 1 diabetes patients

16. No association between type 1 diabetes and genetic variation in vitamin D metabolism genes: a Danish study

17. Identification of a SIRT1 mutation in a family with type 1 diabetes

18. Correlations between islet autoantibody specificity and theSLC30A8genotype withHLA-DQB1and metabolic control in new onset type 1 diabetes

19. FunctionalSOCS1polymorphisms are associated with variation in obesity in whites

20. Ranking factors involved in diabetes remission after bariatric surgery using machine-learning integrating clinical and genomic biomarkers

21. Genetic Determinants of Enterovirus Infections: Polymorphisms in Type 1 Diabetes and Innate Immune Genes in the MIDIA Study

22. Polymorphisms in the CTSH gene may influence the progression of diabetic retinopathy: a candidate-gene study in the Danish Cohort of Pediatric Diabetes 1987 (DCPD1987)

23. Effects of GWAS-Associated Genetic Variants on lncRNAs within IBD and T1D Candidate Loci

24. Candidate genes expressed in human islets and their role in the pathogenesis of type 1 diabetes

25. No association between type 1 diabetes and genetic variation in vitamin D metabolism genes: a Danish study

26. Identification of novel type 1 diabetes candidate genes by integrating genome-wide association data, protein-protein interactions, and human pancreatic islet gene expression

27. Islet autoantibodies and residual beta cell function in type 1 diabetes children followed for 3-6 years

28. Huntingtin-interacting protein 14 is a type 1 diabetes candidate protein regulating insulin secretion and β-cell apoptosis

29. Genetics of diabetic nephropathy in diverse ethnic groups

30. Genetics of Diabetic Nephropathy in Diverse Ethnic Groups

31. No association of the IRS1 and PAX4 genes with type I diabetes

32. A non-synonymous variant in SLC30A8 is not associated with type 1 diabetes in the Danish population

33. Posttranslational Protein Modifications in Type 1 Diabetes - Genetic Studies with PCMT1, the Repair Enzyme Protein Isoaspartate Methyltransferase (PIMT) Encoding Gene

36. Sa.74. The Faroese, a Genetic Isolate with a Strong Founder Effect, Allows the Identification of Type 1 Diabetes Susceptibility Regions

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