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PMID: 8234250 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

An unusual active hexose transport system in human and mouse preimplantation embryos.

Chi MM, Manchester JK, Basuray R, Mahendra S, Strickler RC, McDougal DB, Lowry OH

Abstract

In a metabolic study of human and mouse preimplantation embryos (preembryos), we measured glucose uptake and phosphorylation with nonradioactive 2-deoxyglucose (DG) as tracer. Initial experiments indicated an active hexose transport capacity, a property thought to be restricted in mammals to intestinal villi and kidney tubules [Baly, D. L. & Horuk, R. (1988) Biochim. Biophys. Acta 947, 571-590]. Significant findings are as follows: (i) During a 60-min incubation with a low level of DG, mouse blastocyst DG rose to levels up to 30 times that of the medium. (The intestinal active system does not transport DG [Crane, R. K. (1960) Physiol. Rev. 40, 789-825].) (ii) Active preembryo transport was not blocked (as it would have been in the intestine) by phlorizin [Alvarado, F. & Crane, R. K. (1962) Biochem. Biophys. Acta 56, 170-172 and Sacktor, B. (1989) Kidney Int. 36, 342-350] or by replacement of Na+ with choline+ or K+ [Crane (1960) and Sacktor (1989)]. (iii) Transport of DG was blocked by cytochalasin B (which is not true for the intestinal transporter). We conclude that a distinct active hexose transporter and at least one facilitated transporter are present in preembryos, perhaps appearing in tandem on different membranes during formation of the increasingly complex preembryo structure.

MeSH Terms
Animals Biological Transport/drug effects Blastocyst/metabolism Deoxyglucose/metabolism Female Fertilization in Vitro Glucose-6-Phosphate/analogs & derivatives Glucosephosphates/metabolism Humans In Vitro Techniques Kinetics Mice Morula/metabolism Phosphorylation Potassium/pharmacology Sodium/pharmacology
Chemicals
Glucosephosphates 2-deoxyglucose-6-phosphate Glucose-6-Phosphate Deoxyglucose Sodium Potassium
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Chi M M
Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, MO 63110.
Manchester J K
Basuray R
Mahendra S
Strickler R C
McDougal D B
Lowry O H
References (16)
16 references, click to expand
  1. Accumulation of carboxylic acids from glucose by the pre-implantation mouse embryo.
    Aust J Biol Sci. 1969 Jun;22(3):701-7 PMID: 5801282
  2. Phlorizin as a competitive inhibitor of the active transport of sugars by hamster small intestine, in vitro.
    Biochim Biophys Acta. 1962 Jan 1;56:170-2 PMID: 13860792
  3. Pyruvate and glucose uptake by mouse ova and preimplantation embryos.
    J Reprod Fertil. 1984 Sep;72(1):9-13 PMID: 6540809
  4. Glucose transport in Leishmania donovani promastigotes.
    Mol Biochem Parasitol. 1984 Jul;12(3):327-36 PMID: 6482908
  5. Measurement of metabolic turnover in single mouse embryos.
    J Reprod Fertil. 1986 Mar;76(2):717-25 PMID: 3084773
  6. Identification and biochemical characterization of the plasma membrane glucose transporter of Leishmania donovani.
    J Biol Chem. 1986 Nov 15;261(32):15053-7 PMID: 3771563
  7. Non-invasive measurement of nutrient uptake by single cultured pre-implantation mouse embryos.
    Hum Reprod. 1986 Jan;1(1):25-7 PMID: 3455417
  8. The biology and biochemistry of the glucose transporter.
    Biochim Biophys Acta. 1988 Oct 11;947(3):571-90 PMID: 3048404
  9. Mammalian blastocyst: transport functions in a developing epithelium.
    Am J Physiol. 1988 Oct;255(4 Pt 1):C419-32 PMID: 3052100
  10. Effects of phlorizin and ouabain on the polarity of mouse 4-cell/16-cell stage blastomere heterokaryons.
    Dev Biol. 1989 Jun;133(2):375-84 PMID: 2543600
  11. Sodium-coupled hexose transport.
    Kidney Int. 1989 Sep;36(3):342-50 PMID: 2687560
  12. Measurement of 2-deoxyglucose and 2-deoxyglucose 6-phosphate in tissues.
    Anal Biochem. 1990 Feb 15;185(1):118-24 PMID: 2188524
  13. Antibodies to a renal Na+/glucose cotransport system localize to the apical plasma membrane domain of polar mouse embryo blastomeres.
    Dev Biol. 1991 Jan;143(1):149-61 PMID: 1702069
  14. Developmental expression and cellular localization of glucose transporter molecules during mouse preimplantation development.
    Development. 1992 May;115(1):305-12 PMID: 1638987
  15. Intestinal absorption of sugars.
    Physiol Rev. 1960 Oct;40:789-825 PMID: 13696269
  16. The explanation for the blockade of glycolysis in early mouse embryos.
    Proc Natl Acad Sci U S A. 1974 Apr;71(4):1056-60 PMID: 4275392
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1993-11-01
Pages
10023-5
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC47705
Subset
IM
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