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zadetkov: 44
1.
  • Analysis of Transcription F... Analysis of Transcription Factors Key for Mouse Pancreatic Development Establishes NKX2-2 and MNX1 Mutations as Causes of Neonatal Diabetes in Man
    Flanagan, Sarah E.; De Franco, Elisa; Lango Allen, Hana ... Cell metabolism, 01/2014, Letnik: 19, Številka: 1
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    Understanding transcriptional regulation of pancreatic development is required to advance current efforts in developing beta cell replacement therapies for patients with diabetes. Current knowledge ...
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2.
  • Insulin gene mutations as a... Insulin gene mutations as a cause of permanent neonatal diabetes
    Støy, Julie; Edghill, Emma L; Flanagan, Sarah E ... Proceedings of the National Academy of Sciences - PNAS, 09/2007, Letnik: 104, Številka: 38
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    We report 10 heterozygous mutations in the human insulin gene in 16 probands with neonatal diabetes. A combination of linkage and a candidate gene approach in a family with four diabetic members led ...
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3.
  • Mutations in ATP-sensitive ... Mutations in ATP-sensitive K+ channel genes cause transient neonatal diabetes and permanent diabetes in childhood or adulthood
    Flanagan, Sarah E; Patch, Ann-Marie; Mackay, Deborah J G ... Diabetes (New York, N.Y.), 07/2007, Letnik: 56, Številka: 7
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    Transient neonatal diabetes mellitus (TNDM) is diagnosed in the first 6 months of life, with remission in infancy or early childhood. For approximately 50% of patients, their diabetes will relapse in ...
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4.
  • Mutations in PTF1A cause pa... Mutations in PTF1A cause pancreatic and cerebellar agenesis
    Houlston, Richard S; Sellick, Gabrielle S; Barker, Karen T ... Nature genetics, 12/2004, Letnik: 36, Številka: 12
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    Individuals with permanent neonatal diabetes mellitus usually present within the first three months of life and require insulin treatment. We recently identified a locus on chromosome 10p13-p12.1 ...
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5.
  • Permanent Neonatal Diabetes... Permanent Neonatal Diabetes Caused by Dominant, Recessive, or Compound Heterozygous SUR1 Mutations with Opposite Functional Effects
    Ellard, Sian; Flanagan, Sarah E.; Girard, Christophe A. ... American journal of human genetics, 08/2007, Letnik: 81, Številka: 2
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    Heterozygous activating mutations in the KCNJ11 gene encoding the pore-forming Kir6.2 subunit of the pancreatic beta cell K ATP channel are the most common cause of permanent neonatal diabetes ...
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6.
  • Wolcott-Rallison Syndrome I... Wolcott-Rallison Syndrome Is the Most Common Genetic Cause of Permanent Neonatal Diabetes in Consanguineous Families
    Rubio-Cabezas, Oscar; Patch, Ann-Marie; Minton, Jayne A. L ... The journal of clinical endocrinology and metabolism, 2009-November, Letnik: 94, Številka: 11
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    Context and Objective: Mutations in EIF2AK3 cause Wolcott-Rallison syndrome (WRS), a rare recessive disorder characterized by early-onset diabetes, skeletal abnormalities, and liver dysfunction. ...
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7.
  • Insulin mutation screening in 1,044 patients with diabetes: mutations in the INS gene are a common cause of neonatal diabetes but a rare cause of diabetes diagnosed in childhood or adulthood
    Edghill, Emma L; Flanagan, Sarah E; Patch, Ann-Marie ... Diabetes (New York, N.Y.) 57, Številka: 4
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    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 ...
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8.
  • HNF1B Mutations Associate w... HNF1B Mutations Associate with Hypomagnesemia and Renal Magnesium Wasting
    ADALAT, Shazia; WOOLF, Adrian S; MARKS, Stephen D ... Journal of the American Society of Nephrology, 05/2009, Letnik: 20, Številka: 5
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    Mutations in hepatocyte nuclear factor 1B (HNF1B), which is a transcription factor expressed in tissues including renal epithelia, associate with abnormal renal development. While studying renal ...
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9.
  • Permanent neonatal diabetes... Permanent neonatal diabetes due to activating mutations in ABCC8 and KCNJ11
    Edghill, Emma L; Flanagan, Sarah E; Ellard, Sian Reviews in endocrine & metabolic disorders, 09/2010, Letnik: 11, Številka: 3
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    The ATP-sensitive potassium (KATP) channel is composed of two subunits SUR1 and Kir6.2. The channel is key for glucose stimulated insulin release from the pancreatic beta cell. Activating mutations ...
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10.
  • Recessive mutations in the ... Recessive mutations in the INS gene result in neonatal diabetes through reduced insulin biosynthesis
    Garin, Intza; Edghill, Emma L; Akerman, Ildem ... Proceedings of the National Academy of Sciences - PNAS, 02/2010, Letnik: 107, Številka: 7
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    Heterozygous coding mutations in the INS gene that encodes preproinsulin were recently shown to be an important cause of permanent neonatal diabetes. These dominantly acting mutations prevent normal ...
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zadetkov: 44

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