Hexose Transporter Expression and Function in Mouse Small Intestine: Role of Diurnal Rhythm

Background Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. Aim The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel. Meth...

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Published inJournal of gastrointestinal surgery Vol. 13; no. 4; pp. 634 - 641
Main Authors Fatima, Javairiah, Iqbal, Corey W., Houghton, Scott G., Kasparek, Michael S., Duenes, Judith A., Zheng, Ye, Sarr, Michael G.
Format Journal Article
LanguageEnglish
Published New York Springer-Verlag 01.04.2009
Springer Nature B.V
Subjects
Online AccessGet full text
ISSN1091-255X
1873-4626
1873-4626
DOI10.1007/s11605-008-0776-4

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Abstract Background Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. Aim The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel. Methods Twenty-four c57bl6 mice maintained in a 12-h light/dark room (6  am –6  pm ) were sacrificed at 9  am , 3  pm , 9  pm , and 3  am ( n  = 6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9  am and 9  pm . Results mRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments ( p  ≤ 0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum ( p  < 0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9  pm than 9  am ( p  ≤ 0.04) in all three segments. V max was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9  pm compared to 9  am ( p  = 0.01); K m remained unchanged. Summary mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6–12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9  pm . Conclusion Hexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.
AbstractList Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel. Twenty-four c57bl6 mice maintained in a 12-h light/dark room (6 AM: -6 PM: ) were sacrificed at 9 AM: , 3 PM: , 9 PM: , and 3 AM: (n = 6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9 AM: and 9 PM: . mRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments (p <or= 0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum (p < 0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9 PM: than 9 AM: (p <or= 0.04) in all three segments. V (max) was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9 PM: compared to 9 AM: (p = 0.01); K (m) remained unchanged. mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6-12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9 PM: . Hexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.
Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel. Twenty-four c57bl6 mice maintained in a 12-h light/dark room (6 am-6 pm) were sacrificed at 9 am, 3 pm, 9 pm, and 3 am (n=6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9 am and 9 pm. mRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments (p≤0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum (p<0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9 pm than 9 am (p≤0.04) in all three segments. V ^sub max^ was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9 pm compared to 9 am (p=0.01); K ^sub m^ remained unchanged. mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6-12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9 pm. Hexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.[PUBLICATION ABSTRACT]
Background Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. Aim The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel. Methods Twenty-four c57bl6 mice maintained in a 12-h light/dark room (6  am –6  pm ) were sacrificed at 9  am , 3  pm , 9  pm , and 3  am ( n  = 6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9  am and 9  pm . Results mRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments ( p  ≤ 0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum ( p  < 0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9  pm than 9  am ( p  ≤ 0.04) in all three segments. V max was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9  pm compared to 9  am ( p  = 0.01); K m remained unchanged. Summary mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6–12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9  pm . Conclusion Hexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.
Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice.BACKGROUNDExpression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice.The aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel.AIMThe aim of the study was to investigate the diurnal expression and function of hexose transporters SGLT1, GLUT2, and GLUT5 in mouse small bowel.Twenty-four c57bl6 mice maintained in a 12-h light/dark room (6 AM: -6 PM: ) were sacrificed at 9 AM: , 3 PM: , 9 PM: , and 3 AM: (n = 6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9 AM: and 9 PM: .METHODSTwenty-four c57bl6 mice maintained in a 12-h light/dark room (6 AM: -6 PM: ) were sacrificed at 9 AM: , 3 PM: , 9 PM: , and 3 AM: (n = 6 each). In duodenal, jejunal, and ileal mucosa, total cellular mRNA and protein levels were quantitated by real-time PCR and semiquantitative Western blotting, respectively. The everted sleeve technique measured transporter-mediated glucose uptake at 9 AM: and 9 PM: .mRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments (p <or= 0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum (p < 0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9 PM: than 9 AM: (p <or= 0.04) in all three segments. V (max) was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9 PM: compared to 9 AM: (p = 0.01); K (m) remained unchanged. mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6-12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9 PM: .RESULTSmRNA expression of SGLT1, GLUT2, and GLUT5 varied diurnally in all three intestinal segments (p <or= 0.03). SGLT1, GLUT2, and GLUT5 protein levels varied diurnally in duodenum and jejunum (p < 0.05) but not in ileum. Transporter-mediated glucose uptake was greater at 9 PM: than 9 AM: (p <or= 0.04) in all three segments. V (max) was greater in duodenum (10 vs 6 nmol/cm/s) and jejunum (8 vs 5 nmol/cm/s) at 9 PM: compared to 9 AM: (p = 0.01); K (m) remained unchanged. mRNA levels of intestinal hexose transporters varied diurnally. Protein levels peaked 6-12 h later during dark cycle when >70% of food intake occurred; glucose transport followed a similar pattern with increased uptake at 9 PM: .Hexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.CONCLUSIONHexose transporter expression and function vary diurnally with nocturnal feeding patterns of mice.
Author Fatima, Javairiah
Zheng, Ye
Sarr, Michael G.
Kasparek, Michael S.
Houghton, Scott G.
Iqbal, Corey W.
Duenes, Judith A.
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  fullname: Sarr, Michael G.
  email: Sarr.Michael@mayo.edu
  organization: Gastroenterology Research Unit (GU 1001), Department of Surgery, Mayo Clinic
BackLink https://www.ncbi.nlm.nih.gov/pubmed/19082670$$D View this record in MEDLINE/PubMed
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Issue 4
Keywords Sugar absorption
Diurnal rhythm
Mice
Hexose transporters
Small intestine
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PublicationCentury 2000
PublicationDate 2009-04-01
PublicationDateYYYYMMDD 2009-04-01
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PublicationTitle Journal of gastrointestinal surgery
PublicationTitleAbbrev J Gastrointest Surg
PublicationTitleAlternate J Gastrointest Surg
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Springer Nature B.V
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Snippet Background Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. Aim The aim...
Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. The aim of the study...
Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice. The aim of the study...
Expression and function of hexose transporters vary diurnally in rat small intestine; however, this subject remains unexplored in mice.BACKGROUNDExpression and...
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SourceType Open Access Repository
Aggregation Database
Index Database
Enrichment Source
Publisher
StartPage 634
SubjectTerms Animals
Circadian Rhythm - physiology
Duodenum - metabolism
Gastroenterology
Glucose
Glucose Transport Proteins, Facilitative - metabolism
Glucose Transport Proteins, Facilitative - physiology
Glucose Transporter Type 2 - metabolism
Glucose Transporter Type 2 - physiology
Glucose Transporter Type 5
Ileum - metabolism
Intestinal Mucosa - metabolism
Intestine, Small - metabolism
Jejunum - metabolism
Male
Medicine
Medicine & Public Health
Mice
Mice, Inbred C57BL
Monosaccharide Transport Proteins - metabolism
Original Article
Proteins
RNA, Messenger - metabolism
Rodents
Small intestine
Sodium-Glucose Transporter 1 - metabolism
Sodium-Glucose Transporter 1 - physiology
Surgery
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Title Hexose Transporter Expression and Function in Mouse Small Intestine: Role of Diurnal Rhythm
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