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Details

Autor(en) / Beteiligte
Titel
Rfx6 directs islet formation and insulin production in mice and humans
Ist Teil von
  • Nature (London), 2010-02, Vol.463 (7282), p.775-780
Ort / Verlag
London: Nature Publishing Group
Erscheinungsjahr
2010
Link zum Volltext
Quelle
EBSCOhost Psychology and Behavioral Sciences Collection
Beschreibungen/Notizen
  • Insulin from the beta-cells of the pancreatic islets of Langerhans controls energy homeostasis in vertebrates, and its deficiency causes diabetes mellitus. During embryonic development, the transcription factor neurogenin 3 (Neurog3) initiates the differentiation of the beta-cells and other islet cell types from pancreatic endoderm, but the genetic program that subsequently completes this differentiation remains incompletely understood. Here we show that the transcription factor Rfx6 directs islet cell differentiation downstream of Neurog3. Mice lacking Rfx6 failed to generate any of the normal islet cell types except for pancreatic-polypeptide-producing cells. In human infants with a similar autosomal recessive syndrome of neonatal diabetes, genetic mapping and subsequent sequencing identified mutations in the human RFX6 gene. These studies demonstrate a unique position for Rfx6 in the hierarchy of factors that coordinate pancreatic islet development in both mice and humans. Rfx6 could prove useful in efforts to generate beta-cells for patients with diabetes.
Sprache
Englisch
Identifikatoren
ISSN: 0028-0836
eISSN: 1476-4687
DOI: 10.1038/nature08748
Titel-ID: cdi_pubmedcentral_primary_oai_pubmedcentral_nih_gov_2896718
Format
Schlagworte
Animals, Artificial chromosomes, Basic Helix-Loop-Helix Transcription Factors - deficiency, Basic Helix-Loop-Helix Transcription Factors - genetics, Basic Helix-Loop-Helix Transcription Factors - metabolism, Binding proteins, Biological and medical sciences, Care and treatment, Causes of, Cell Differentiation, Diabetes, Diabetes Mellitus - congenital, Diabetes Mellitus - genetics, Diabetes Mellitus - metabolism, Diabetes Mellitus - pathology, Diabetes. Impaired glucose tolerance, DNA Mutational Analysis, DNA-Binding Proteins - deficiency, DNA-Binding Proteins - genetics, DNA-Binding Proteins - metabolism, Embryo, Mammalian - metabolism, Embryonic development, Endocrine pancreas. Apud cells (diseases), Endocrinopathies, Etiopathogenesis. Screening. Investigations. Target tissue resistance, Female, Fetus - metabolism, Gene expression, Gene Expression Profiling, Gene Expression Regulation, Developmental, Genes, Recessive - genetics, Genetic aspects, Genetic Testing, Human subjects, Humans, Infant, Newborn, Insulin - biosynthesis, Islets of Langerhans - cytology, Islets of Langerhans - embryology, Islets of Langerhans - metabolism, Male, Medical sciences, Mice, Mutation, Nerve Tissue Proteins - deficiency, Nerve Tissue Proteins - genetics, Nerve Tissue Proteins - metabolism, NIH 3T3 Cells, Organ Specificity, Proteins, Regulatory Factor X Transcription Factors, Stem cells, Syndrome, Transcription Factors - deficiency, Transcription Factors - genetics, Transcription Factors - metabolism

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