Literature DB >> 17272350

Apical GLUT2 and Cav1.3: regulation of rat intestinal glucose and calcium absorption.

Emma L Morgan1, Oliver J Mace, Julie Affleck, George L Kellett.   

Abstract

We have proposed a model of intestinal glucose absorption in which transport by SGLT1 induces rapid insertion and activation of GLUT2 in the apical membrane by a PKC betaII-dependent mechanism. Since PKC betaII requires Ca(2+) and glucose is depolarizing, we have investigated whether glucose absorption is regulated by the entry of dietary Ca(2+) through Ca(v)1.3 in the apical membrane. When rat jejunum was perfused with 75 mM glucose, Ca(2+)-deplete conditions, or perfusion with the L-type antagonists nifedipine and verapamil strongly diminished the phloretin-sensitive apical GLUT2, but not the phloretin-insensitive SGLT1 component of glucose absorption. Western blotting showed that in each case there was a significant decrease in apical GLUT2 level, but no change in SGLT1 level. Inhibition of apical GLUT2 absorption coincided with inhibition of unidirectional (45)Ca(2+) entry by nifedipine and verapamil. At 10 mM luminal Ca(2+), (45)Ca(2+) absorption in the presence of 75 mM glucose was 2- to 3-fold that in the presence of 75 mM mannitol. The glucose-induced component was SGLT1-dependent and nifedipine-sensitive. RT-PCR revealed the presence of Ca(v)beta(3) in jejunal mucosa; Western blotting and immunocytochemistry localized Ca(v)beta(3) to the apical membrane, together with Ca(v)1.3. We conclude that in times of dietary sufficiency Ca(v)1.3 may mediate a significant pathway of glucose-stimulated Ca(2+) entry into the body and that luminal supply of Ca(2+) is necessary for GLUT2-mediated glucose absorption. The integration of glucose and Ca(2+) absorption represents a complex nutrient-sensing system, which allows both absorptive pathways to be regulated rapidly and precisely to match dietary intake.

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Year:  2007        PMID: 17272350      PMCID: PMC2075547          DOI: 10.1113/jphysiol.2006.124768

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  53 in total

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Authors:  J R Turner
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2.  [Stimulation of ileal transport of calcium by sorbitol in in situ perfused loop in rats].

Authors:  D Auchère; S Tardivel; J C Gounelle; B Lacour
Journal:  Gastroenterol Clin Biol       Date:  1997

3.  Role of transcellular pathway in ileal Ca2+ absorption: stimulation by low-Ca2+ diet.

Authors:  D Auchère; S Tardivel; J C Gounelle; T Drüeke; B Lacour
Journal:  Am J Physiol       Date:  1998-11

4.  Regional expression and cellular localization of the alpha1 and beta subunit of high voltage-activated calcium channels in rat brain.

Authors:  A Ludwig; V Flockerzi; F Hofmann
Journal:  J Neurosci       Date:  1997-02-15       Impact factor: 6.167

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Authors:  M Pichler; T N Cassidy; D Reimer; H Haase; R Kraus; D Ostler; J Striessnig
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Authors:  P A Helliwell; M Richardson; J Affleck; G L Kellett
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Authors:  G L Kellett; P A Helliwell
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Authors:  J R Turner; B K Rill; S L Carlson; D Carnes; R Kerner; R J Mrsny; J L Madara
Journal:  Am J Physiol       Date:  1997-10

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Authors:  C P Corpe; M M Basaleh; J Affleck; G Gould; T J Jess; G L Kellett
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Authors:  H P Koster; A Hartog; C H Van Os; R J Bindels
Journal:  Cell Calcium       Date:  1995-09       Impact factor: 6.817

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