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    Analysis of transcription factors key for mouse pancreatic development establishes NKX2-2 and MNX1 mutations as causes of neonatal diabetes in man.

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    URI
    http://hdl.handle.net/11287/618265
    Author
    Flanagan, Sarah
    De Franco, Elisa
    Lango Allen, H.
    Zerah, M.
    Abdul-Rasoul, M. M.
    Edge, J.A.
    Stewart, H.
    Alamiri, E.
    Hussain, K.
    Wallis, Sa.
    de Vries, L.
    Rubio-Cabezas, O.
    Houghton, J. A. L.
    Edghill, E. L.
    Patch, A-M
    Ellard, Sian
    Hattersley, Andrew T.
    Date
    2014-01-07
    Journal
    Cell Metabolism
    Type
    Journal Article
    Research Support, Non-U.S. Gov't
    Publisher
    Cell Press
    DOI
    10.1016/j.cmet.2013.11.021
    Rights
    Archived with thanks to Cell metabolism
    Metadata
    Show full item record
    Abstract
    Understanding transcriptional regulation of pancreatic development is required to advance current efforts in developing beta cell replacement therapies for patients with diabetes. Current knowledge of key transcriptional regulators has predominantly come from mouse studies, with rare, naturally occurring mutations establishing their relevance in man. This study used a combination of homozygosity analysis and Sanger sequencing in 37 consanguineous patients with permanent neonatal diabetes to search for homozygous mutations in 29 transcription factor genes important for murine pancreatic development. We identified homozygous mutations in 7 different genes in 11 unrelated patients and show that NKX2-2 and MNX1 are etiological genes for neonatal diabetes, thus confirming their key role in development of the human pancreas. The similar phenotype of the patients with recessive mutations and mice with inactivation of a transcription factor gene support there being common steps critical for pancreatic development and validate the use of rodent models for beta cell development.
    Citation
    Analysis of transcription factors key for mouse pancreatic development establishes NKX2-2 and MNX1 mutations as causes of neonatal diabetes in man. 2014, 19 (1):146-54 Cell Metab.
    Publisher URL
    http://linkinghub.elsevier.com/retrieve/pii/S1550-4131(13)00492-0
    Note
    This article is freely available via Open Access. Click on the 'Additional Link' above to access the full text.
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    • 2014 RD&E publications
    • Diabetes and endocrinology
    • Honorary contracts publications
    • Molecular Genetics

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