Literature DB >> 18337460

The glucose-6-phosphate transporter is a phosphate-linked antiporter deficient in glycogen storage disease type Ib and Ic.

Shih-Yin Chen1, Chi-Jiunn Pan, Krishnamachary Nandigama, Brian C Mansfield, Suresh V Ambudkar, Janice Y Chou.   

Abstract

Glycogen storage disease type Ib (GSD-Ib) is caused by deficiencies in the glucose-6-phosphate (G6P) transporter (G6PT) that have been well characterized. Interestingly, deleterious mutations in the G6PT gene were identified in clinical cases of GSD type Ic (GSD-Ic) proposed to be deficient in an inorganic phosphate (P(i)) transporter. We hypothesized that G6PT is both the G6P and P(i) transporter. Using reconstituted proteoliposomes we show that both G6P and P(i) are efficiently taken up into P(i)-loaded G6PT-proteoliposomes. The G6P uptake activity decreases as the internal:external P(i) ratio decreases and the P(i) uptake activity decreases in the presence of external G6P. Moreover, G6P or P(i) uptake activity is not detectable in P(i)-loaded proteoliposomes containing the p.R28H G6PT null mutant. The G6PT-proteoliposome-mediated G6P or P(i) uptake is inhibited by cholorgenic acid and vanadate, both specific G6PT inhibitors. Glucose-6-phosphatase-alpha (G6Pase-alpha), which facilitates microsomal G6P uptake by G6PT, fails to stimulate G6P uptake in P(i)-loaded G6PT-proteoliposomes, suggesting that the G6Pase-alpha-mediated stimulation is caused by decreasing G6P and increasing P(i) concentrations in microsomes. Taken together, our results suggest that G6PT has a dual role as a G6P and a P(i) transporter and that GSD-Ib and GSD-Ic are deficient in the same G6PT gene.

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Year:  2008        PMID: 18337460     DOI: 10.1096/fj.07-104851

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  26 in total

Review 1.  Glycogen storage disease type I and G6Pase-β deficiency: etiology and therapy.

Authors:  Janice Y Chou; Hyun Sik Jun; Brian C Mansfield
Journal:  Nat Rev Endocrinol       Date:  2010-10-26       Impact factor: 43.330

2.  The Concise Guide to PHARMACOLOGY 2013/14: transporters.

Authors:  Stephen P H Alexander; Helen E Benson; Elena Faccenda; Adam J Pawson; Joanna L Sharman; Michael Spedding; John A Peters; Anthony J Harmar
Journal:  Br J Pharmacol       Date:  2013-12       Impact factor: 8.739

Review 3.  Molecular biology and gene therapy for glycogen storage disease type Ib.

Authors:  Janice Y Chou; Jun-Ho Cho; Goo-Young Kim; Brian C Mansfield
Journal:  J Inherit Metab Dis       Date:  2018-04-16       Impact factor: 4.982

Review 4.  Glucose-6-phosphatase catalytic subunit gene family.

Authors:  John C Hutton; Richard M O'Brien
Journal:  J Biol Chem       Date:  2009-08-20       Impact factor: 5.157

Review 5.  The SLC37 family of sugar-phosphate/phosphate exchangers.

Authors:  Janice Y Chou; Brian C Mansfield
Journal:  Curr Top Membr       Date:  2014       Impact factor: 3.049

6.  Insulin and epidermal growth factor suppress basal glucose-6-phosphatase catalytic subunit gene transcription through overlapping but distinct mechanisms.

Authors:  Hiroshi Onuma; James K Oeser; Bryce A Nelson; Yingda Wang; Brian P Flemming; Lawrence A Scheving; William E Russell; Richard M O'Brien
Journal:  Biochem J       Date:  2009-01-15       Impact factor: 3.857

Review 7.  The SLC37 family of phosphate-linked sugar phosphate antiporters.

Authors:  Janice Y Chou; Hyun Sik Jun; Brian C Mansfield
Journal:  Mol Aspects Med       Date:  2013 Apr-Jun

8.  Functional analysis of mutations in the glucose-6-phosphate transporter that cause glycogen storage disease type Ib.

Authors:  Shih-Yin Chen; Chi-Jiunn Pan; Soojung Lee; Wentao Peng; Janice Y Chou
Journal:  Mol Genet Metab       Date:  2008-10-02       Impact factor: 4.797

Review 9.  Type I glycogen storage diseases: disorders of the glucose-6-phosphatase/glucose-6-phosphate transporter complexes.

Authors:  Janice Y Chou; Hyun Sik Jun; Brian C Mansfield
Journal:  J Inherit Metab Dis       Date:  2014-10-07       Impact factor: 4.982

10.  Moving on from GWAS: functional studies on the G6PC2 gene implicated in the regulation of fasting blood glucose.

Authors:  Richard M O'Brien
Journal:  Curr Diab Rep       Date:  2013-12       Impact factor: 4.810

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