Abstract
Insulin gene (INS) mutations have recently been described as a cause of permanent neonatal diabetes (PND). We aimed to determine the prevalence, genetics, and clinical phenotype of INS mutations in large cohorts of patients with neonatal diabetes and permanent diabetes diagnosed in infancy, childhood, or adulthood. The INS gene was sequenced in 285 patients with diabetes diagnosed before 2 years of age, 296 probands with maturity-onset diabetes of the young (MODY), and 463 patients with young-onset type 2 diabetes (nonobese, diagnosed <45 years). None had a molecular genetic diagnosis of monogenic diabetes. We identified heterozygous INS mutations in 33 of 141 probands diagnosed at <6 months, 2 of 86 between 6 and 12 months, and none of 58 between 12 and 24 months of age. Three known mutations (A24D, F48C, and R89C) account for 46% of cases. There were six novel mutations: H29D, L35P, G84R, C96S, S101C, and Y103C. INS mutation carriers were all insulin treated from diagnosis and were diagnosed later than ATP-sensitive K(+) channel mutation carriers (11 vs. 8 weeks, P < 0.01). In 279 patients with PND, the frequency of KCNJ11, ABCC8, and INS gene mutations was 31, 10, and 12%, respectively. A heterozygous R6C mutation cosegregated with diabetes in a MODY family and is probably pathogenic, but the L68M substitution identified in a patient with young-onset type 2 diabetes may be a rare nonfunctional variant. We conclude that INS mutations are the second most common cause of PND and a rare cause of MODY. Insulin gene mutation screening is recommended for all diabetic patients diagnosed before 1 year of age.
MeSH Terms
Adult
Amino Acid Substitution
Child
DNA Mutational Analysis
Diabetes Mellitus, Type 1/genetics
Humans
Infant
Infant, Newborn
Insulin/genetics
Mutation
Authors & Affiliations
18 authors, click to expand affiliations / ORCID
Edghill Emma L
Institute of Biomedical and Clinical Science, Peninsula Medical School, Barrack Road, Exeter EX2 5DW, UK.
Flanagan Sarah E
Patch Ann-Marie
Boustred Chris
Parrish Andrew
Shields Beverley
Shepherd Maggie H
Hussain Khalid
Kapoor Ritika R
Malecki Maciej
MacDonald Michael J
Støy Julie
Steiner Donald F
Philipson Louis H
Bell Graeme I
Neonatal Diabetes International Collaborative Group
Hattersley Andrew T
Ellard Sian
Investigators
40 investigators, click to expand
Amemiya S
Azad K
Barak L
Barrett T
Costigan C
Darko D
Diamantopoulos S
Doyle D
Densriwiwat M
Dullaart R P F
Dzivite I
Edge J A
Ekstrom K
Forsander G
Gasperikova D
Hakeem V
Hamilton-Shield J P
Hofstra M L
Ivarsson S-A
Klimes I
Kocova M
Kordonouri O
Lafferty A R A
Likitmaskul S
Liu L
Mayo A
Milenkovic T
Mlynarski W
Mohsin F
Noczynska A
Odrezin J
Porter J
Roeleveld A
Sanchez J
Schebek M
Schumacher A
Segal D
Stanik J
Tomita Y
Wentworth S
References (29)
29 references, click to expand
-
SIFT: Predicting amino acid changes that affect protein function.
Nucleic Acids Res. 2003 Jul 1;31(13):3812-4
PMID: 12824425
-
Glucokinase (GCK) mutations in hyper- and hypoglycemia: maturity-onset diabetes of the young, permanent neonatal diabetes, and hyperinsulinemia of infancy.
Hum Mutat. 2003 Nov;22(5):353-62
PMID: 14517946
-
Minireview: pharmacogenetics and beyond: the interaction of therapeutic response, beta-cell physiology, and genetics in diabetes.
Endocrinology. 2006 Jun;147(6):2657-63
PMID: 16556760
-
Analysis of haematopoietic chimaerism by quantitative real-time polymerase chain reaction.
Bone Marrow Transplant. 2005 Feb;35(3):283-90
PMID: 15531894
-
ER stress and diseases.
FEBS J. 2007 Feb;274(3):630-58
PMID: 17288551
-
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.
Diabetologia. 2006 Jun;49(6):1190-7
PMID: 16609879
-
Molecular genetics goes to the diabetes clinic.
Clin Med (Lond). 2005 Sep-Oct;5(5):476-81
PMID: 16268330
-
Neonatal and very-early-onset diabetes mellitus.
Semin Neonatol. 2004 Feb;9(1):59-65
PMID: 15013476
-
Chiral mutagenesis of insulin. Contribution of the B20-B23 beta-turn to activity and stability.
J Biol Chem. 2006 Aug 4;281(31):22386-22396
PMID: 16751187
-
Permanent neonatal diabetes due to mutations in KCNJ11 encoding Kir6.2: patient characteristics and initial response to sulfonylurea therapy.
Diabetes. 2004 Oct;53(10):2713-8
PMID: 15448106
-
Permanent neonatal diabetes caused by dominant, recessive, or compound heterozygous SUR1 mutations with opposite functional effects.
Am J Hum Genet. 2007 Aug;81(2):375-82
PMID: 17668386
-
Activating mutations in the gene encoding the ATP-sensitive potassium-channel subunit Kir6.2 and permanent neonatal diabetes.
N Engl J Med. 2004 Apr 29;350(18):1838-49
PMID: 15115830
-
Proinsulin lacking the A7-B7 disulfide bond, Ins2Akita, tends to aggregate due to the exposed hydrophobic surface.
Biol Chem. 2005 Nov;386(11):1077-85
PMID: 16307473
-
Towards a structural basis of human non-synonymous single nucleotide polymorphisms.
Trends Genet. 2000 May;16(5):198-200
PMID: 10782110
-
Maturity-onset diabetes of the young: clinical heterogeneity explained by genetic heterogeneity.
Diabet Med. 1998 Jan;15(1):15-24
PMID: 9472859
-
Origin of de novo KCNJ11 mutations and risk of neonatal diabetes for subsequent siblings.
J Clin Endocrinol Metab. 2007 May;92(5):1773-7
PMID: 17327377
-
HLA genotyping supports a nonautoimmune etiology in patients diagnosed with diabetes under the age of 6 months.
Diabetes. 2006 Jun;55(6):1895-8
PMID: 16731860
-
Nonislet pancreatic autoantibodies in sibship with permanent neonatal insulin-dependent diabetes mellitus.
Diabetes. 1988 Mar;37(3):347-50
PMID: 2453387
-
The structure of 2Zn pig insulin crystals at 1.5 A resolution.
Philos Trans R Soc Lond B Biol Sci. 1988 Jul 6;319(1195):369-456
PMID: 2905485
-
Insulin gene mutations as a cause of permanent neonatal diabetes.
Proc Natl Acad Sci U S A. 2007 Sep 18;104(38):15040-4
PMID: 17855560
-
A conserved histidine in insulin is required for the foldability of human proinsulin: structure and function of an ALAB5 analog.
J Biol Chem. 2006 Aug 25;281(34):24889-99
PMID: 16728398
-
Proinsulin maturation, misfolding, and proteotoxicity.
Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15841-6
PMID: 17898179
-
The endoplasmic reticulum stress response is stimulated through the continuous activation of transcription factors ATF6 and XBP1 in Ins2+/Akita pancreatic beta cells.
Genes Cells. 2004 Mar;9(3):261-70
PMID: 15005713
-
Permanent diabetes mellitus in the first year of life.
Diabetologia. 2002 Jun;45(6):798-804
PMID: 12107723
-
A mutation in the insulin 2 gene induces diabetes with severe pancreatic beta-cell dysfunction in the Mody mouse.
J Clin Invest. 1999 Jan;103(1):27-37
PMID: 9884331
-
Role of the connecting peptide in insulin biosynthesis.
J Biol Chem. 2003 Apr 25;278(17):14798-805
PMID: 12590147
-
Prevalence of permanent neonatal diabetes in Slovakia and successful replacement of insulin with sulfonylurea therapy in KCNJ11 and ABCC8 mutation carriers.
J Clin Endocrinol Metab. 2007 Apr;92(4):1276-82
PMID: 17213273
-
Dominant-negative effects of a novel mutated Ins2 allele causes early-onset diabetes and severe beta-cell loss in Munich Ins2C95S mutant mice.
Diabetes. 2007 May;56(5):1268-76
PMID: 17303807
-
Activating mutations in the ABCC8 gene in neonatal diabetes mellitus.
N Engl J Med. 2006 Aug 3;355(5):456-66
PMID: 16885549