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1. Activating mutations in the gene encoding the ATP-sensitive potassium-channel subunit Kir6.2 and permanent neonatal diabetes

2. Mutations in ATP-sensitive K+ channel genes cause transient neonatal diabetes and permanent diabetes in childhood or adulthood

3. Permanent neonatal diabetes due to paternal germline mosaicism for an activating mutation of the KCNJ11 Gene encoding the Kir6.2 subunit of the beta-cell potassium adenosine triphosphate channel

4. HNF1Bdeletions in patients with young-onset diabetes but no known renal disease

5. Permanent neonatal diabetes due to activating mutations in ABCC8 and KCNJ11

6. Recessive mutations in the INS gene result in neonatal diabetes through reduced insulin biosynthesis

7. Severe Insulin Resistance and Intrauterine Growth Deficiency Associated With Haploinsufficiency for INSR and CHN2

8. A genetic syndrome of chronic renal failure with multiple renal cysts and early onset diabetes

9. Insulin Mutation Screening in 1,044 Patients With Diabetes

10. Insulin gene mutations as a cause of permanent neonatal diabetes

11. Partial and whole gene deletion mutations of the GCK and HNF1A genes in maturity-onset diabetes of the young

12. HLA Genotyping Supports a Nonautoimmune Etiology in Patients Diagnosed With Diabetes Under the Age of 6 Months

13. Mutations in hepatocyte nuclear factor-1 and their related phenotypes

14. Hypoplastic Glomerulocystic Kidney Disease and Hepatoblastoma

15. The identification of a R201H mutation in KCNJ11, which encodes Kir6.2, and successful transfer to sustained-release sulphonylurea therapy in a subject with neonatal diabetes: evidence for heterogeneity of beta cell function among carriers of the R201H mutation

16. Heterozygous ABCC8 mutations are a cause of MODY

17. Sequencing PDX1 (insulin promoter factor 1) in 1788 UK individuals found 5% had a low frequency coding variant, but these variants are not associated with Type 2 diabetes

18. Testing for monogenic diabetes among children and adolescents with antibody-negative clinically defined Type 1 diabetes

19. Wolcott-Rallison syndrome is the most common genetic cause of permanent neonatal diabetes in consanguineous families

20. HNF1B mutations associate with hypomagnesemia and renal magnesium wasting

21. Whole gene deletion of the hepatocyte nuclear factor-1beta gene in a patient with the prune-belly syndrome

22. Genetic Disorders of the Pancreatic Beta Cell and Diabetes (Permanent Neonatal Diabetes and Maturity-Onset Diabetes of the Young)

23. Permanent neonatal diabetes caused by dominant, recessive, or compound heterozygous SUR1 mutations with opposite functional effects

24. Autosomal dominant inheritance of non-syndromic renal hypoplasia and dysplasia: dramatic variation in clinical severity in a single kindred

25. KCNJ11 activating mutations are associated with developmental delay, epilepsy and neonatal diabetes syndrome and other neurological features

26. Mutations in KCNJ11, which encodes Kir6.2, are a common cause of diabetes diagnosed in the first 6 months of life, with the phenotype determined by genotype

27. Relapsing diabetes can result from moderately activating mutations in KCNJ11

28. Activating mutations in the KCNJ11 gene encoding the ATP-sensitive K+ channel subunit Kir6.2 are rare in clinically defined type 1 diabetes diagnosed before 2 years

29. Mutations in PTF1A cause pancreatic and cerebellar agenesis

30. 40(th) EASD Annual Meeting of the European Association for the Study of Diabetes : Munich, Germany, 5-9 September 2004

31. RET gene mutations are not a common cause of congenital solitary functioning kidney in adults

32. Mutations in the hepatocyte nuclear factor-1β (HNF1B) gene are common with combined uterine and renal malformations but are not found with isolated uterine malformations

33. Erratum

34. Transcription factor HNF1β and novel partners affect nephrogenesis

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