Literature DB >> 17317760

A mutation in the TMD0-L0 region of sulfonylurea receptor-1 (L225P) causes permanent neonatal diabetes mellitus (PNDM).

Ricard Masia1, Diva D De Leon, Courtney MacMullen, Heather McKnight, Charles A Stanley, Colin G Nichols.   

Abstract

OBJECTIVE: We sought to examine the molecular mechanisms underlying permanenent neonatal diabetes mellitus (PNDM) in a patient with a heterozygous de novo L225P mutation in the L0 region of the sulfonylurea receptor (SUR)1, the regulatory subunit of the pancreatic ATP-sensitive K(+) channel (K(ATP) channel). RESEARCH DESIGN AND METHODS: The effects of L225P on the properties of recombinant K(ATP) channels in transfected COS cells were assessed by patch-clamp experiments on excised membrane patches and by macroscopic Rb-flux experiments in intact cells.
RESULTS: L225P-containing K(ATP) channels were significantly more active in the intact cell than in wild-type channels. In excised membrane patches, L225P increased channel sensitivity to stimulatory Mg nucleotides without altering intrinsic gating or channel inhibition by ATP in the absence of Mg(2+). The effects of L225P were abolished by SUR1 mutations that prevent nucleotide hydrolysis at the nucleotide binding folds. L225P did not alter channel inhibition by sulfonylurea drugs, and, consistent with this, the patient responded to treatment with oral sulfonylureas.
CONCLUSIONS: L225P underlies K(ATP) channel overactivity and PNDM by specifically increasing Mg-nucleotide stimulation of the channel, consistent with recent reports of mechanistically similar PNDM-causing mutations in SUR1. The mutation does not affect sulfonylurea sensitivity, and the patient is successfully treated with sulfonylureas.

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Year:  2007        PMID: 17317760     DOI: 10.2337/db06-1746

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  22 in total

1.  The ATP-sensitive K(+)-channel (K(ATP)) controls early left-right patterning in Xenopus and chick embryos.

Authors:  Sherry Aw; Joseph C Koster; Wade Pearson; Colin G Nichols; Nian-Qing Shi; Katia Carneiro; Michael Levin
Journal:  Dev Biol       Date:  2010-07-17       Impact factor: 3.582

Review 2.  K(ATP) channel pharmacogenomics: from bench to bedside.

Authors:  S Sattiraju; S Reyes; G C Kane; A Terzic
Journal:  Clin Pharmacol Ther       Date:  2007-10-24       Impact factor: 6.875

3.  Neonatal diabetes caused by mutations in sulfonylurea receptor 1: interplay between expression and Mg-nucleotide gating defects of ATP-sensitive potassium channels.

Authors:  Qing Zhou; Intza Garin; Luis Castaño; Jesús Argente; Ma Teresa Muñoz-Calvo; Guiomar Perez de Nanclares; Show-Ling Shyng
Journal:  J Clin Endocrinol Metab       Date:  2010-09-01       Impact factor: 5.958

4.  Mechanism of KATP hyperactivity and sulfonylurea tolerance due to a diabetogenic mutation in L0 helix of sulfonylurea receptor 1 (ABCC8).

Authors:  Andrey P Babenko; Martine Vaxillaire
Journal:  FEBS Lett       Date:  2011-10-19       Impact factor: 4.124

Review 5.  Review. SUR1: a unique ATP-binding cassette protein that functions as an ion channel regulator.

Authors:  Jussi Aittoniemi; Constantina Fotinou; Tim J Craig; Heidi de Wet; Peter Proks; Frances M Ashcroft
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2009-01-27       Impact factor: 6.237

Review 6.  K(ATP) channelopathies in the pancreas.

Authors:  Maria S Remedi; Joseph C Koster
Journal:  Pflugers Arch       Date:  2009-11-18       Impact factor: 3.657

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

Authors:  Sian Ellard; Sarah E Flanagan; Christophe A Girard; Ann-Marie Patch; Lorna W Harries; Andrew Parrish; Emma L Edghill; Deborah J G Mackay; Peter Proks; Kenju Shimomura; Holger Haberland; Dennis J Carson; Julian P H Shield; Andrew T Hattersley; Frances M Ashcroft
Journal:  Am J Hum Genet       Date:  2007-06-29       Impact factor: 11.025

8.  Functional clustering of mutations in the dimer interface of the nucleotide binding folds of the sulfonylurea receptor.

Authors:  Ricard Masia; Colin G Nichols
Journal:  J Biol Chem       Date:  2008-08-20       Impact factor: 5.157

9.  Mechanotransduction drives post ischemic revascularization through K(ATP) channel closure and production of reactive oxygen species.

Authors:  Elizabeth Browning; Hui Wang; Nankang Hong; Kevin Yu; Donald G Buerk; Kristine DeBolt; Daniel Gonder; Elena M Sorokina; Puja Patel; Diva D De Leon; Sheldon I Feinstein; Aron B Fisher; Shampa Chatterjee
Journal:  Antioxid Redox Signal       Date:  2013-07-31       Impact factor: 8.401

10.  Compound heterozygous mutations in the SUR1 (ABCC 8) subunit of pancreatic K(ATP) channels cause neonatal diabetes by perturbing the coupling between Kir6.2 and SUR1 subunits.

Authors:  Yu-Wen Lin; Alejandro Akrouh; YeouChing Hsu; Nkecha Hughes; Colin G Nichols; Diva D De León
Journal:  Channels (Austin)       Date:  2012-03-01       Impact factor: 2.581

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