Cargando…

Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat

AIM: To develop a method for direct measurement of the fluorescent d‐glucose analogue 2‐NBDG transport across the plasma membrane of single skeletal muscle fibres and derive the theoretical framework for determining the kinetic parameters for d‐glucose transport under basal conditions. METHODS: A no...

Descripción completa

Detalles Bibliográficos
Autores principales: Rudayni, Hassan A., Stephenson, George, Posterino, Giuseppe S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541404/
https://www.ncbi.nlm.nih.gov/pubmed/35038771
http://dx.doi.org/10.1111/apha.13789
_version_ 1784803916742918144
author Rudayni, Hassan A.
Stephenson, George
Posterino, Giuseppe S.
author_facet Rudayni, Hassan A.
Stephenson, George
Posterino, Giuseppe S.
author_sort Rudayni, Hassan A.
collection PubMed
description AIM: To develop a method for direct measurement of the fluorescent d‐glucose analogue 2‐NBDG transport across the plasma membrane of single skeletal muscle fibres and derive the theoretical framework for determining the kinetic parameters for d‐glucose transport under basal conditions. METHODS: A novel method is described for measuring free 2‐NBDG transport across plasma membrane of single rat muscle fibres at rest. The 2‐NBDG uptake was >90% suppressed by 100 µM cytochalasin B in both fast‐twitch and slow‐twitch fibres, indicating that the 2‐NBDG transport is GLUT‐mediated. Fibres were identified as fast‐twitch or slow‐twitch based on the differential sensitivity of their contractile apparatus to Sr(2+). RESULTS: The time course of 2‐NBDG uptake in the presence of 50 µM 2‐NBDG follows a one‐phase exponential plateau curve and is faster in fast‐twitch (rate constant 0.053 ± 0.0024 s(‐1)) than in slow‐twitch fibres (rate constant 0.031 ± 0.0021 s(‐1)). The rate constants were markedly reduced in the presence of 20 mM d‐glucose to 0.0082 ± 0.0004 s(‐1) and 0.0056 ± 0.0002 s(‐1) in fast‐twitch and slow‐twitch fibres respectively. 2‐NBDG transport was asymmetric, consistent with GLUT1 being the major functional GLUT isoform transporting 2‐NBDG in muscle fibres at rest. The parameters describing the transport kinetics for both 2‐NBDG and d‐glucose (dissociation constants, Michaelis–Menten constants, maximal rates of uptake and outflow) were calculated from the measurements made with 2‐NBDG. CONCLUSION: Free 2‐NBDG and d‐glucose transport across the plasma membrane of single rat muscle fibres at rest is fast, conclusively showing that the rate‐limiting step in d‐glucose uptake in skeletal muscle is not necessarily the GLUT‐mediated transport of d‐glucose.
format Online
Article
Text
id pubmed-9541404
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-95414042022-10-14 Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat Rudayni, Hassan A. Stephenson, George Posterino, Giuseppe S. Acta Physiol (Oxf) Metabolism and Nutritional Physiology AIM: To develop a method for direct measurement of the fluorescent d‐glucose analogue 2‐NBDG transport across the plasma membrane of single skeletal muscle fibres and derive the theoretical framework for determining the kinetic parameters for d‐glucose transport under basal conditions. METHODS: A novel method is described for measuring free 2‐NBDG transport across plasma membrane of single rat muscle fibres at rest. The 2‐NBDG uptake was >90% suppressed by 100 µM cytochalasin B in both fast‐twitch and slow‐twitch fibres, indicating that the 2‐NBDG transport is GLUT‐mediated. Fibres were identified as fast‐twitch or slow‐twitch based on the differential sensitivity of their contractile apparatus to Sr(2+). RESULTS: The time course of 2‐NBDG uptake in the presence of 50 µM 2‐NBDG follows a one‐phase exponential plateau curve and is faster in fast‐twitch (rate constant 0.053 ± 0.0024 s(‐1)) than in slow‐twitch fibres (rate constant 0.031 ± 0.0021 s(‐1)). The rate constants were markedly reduced in the presence of 20 mM d‐glucose to 0.0082 ± 0.0004 s(‐1) and 0.0056 ± 0.0002 s(‐1) in fast‐twitch and slow‐twitch fibres respectively. 2‐NBDG transport was asymmetric, consistent with GLUT1 being the major functional GLUT isoform transporting 2‐NBDG in muscle fibres at rest. The parameters describing the transport kinetics for both 2‐NBDG and d‐glucose (dissociation constants, Michaelis–Menten constants, maximal rates of uptake and outflow) were calculated from the measurements made with 2‐NBDG. CONCLUSION: Free 2‐NBDG and d‐glucose transport across the plasma membrane of single rat muscle fibres at rest is fast, conclusively showing that the rate‐limiting step in d‐glucose uptake in skeletal muscle is not necessarily the GLUT‐mediated transport of d‐glucose. John Wiley and Sons Inc. 2022-02-09 2022-04 /pmc/articles/PMC9541404/ /pubmed/35038771 http://dx.doi.org/10.1111/apha.13789 Text en © 2022 The Authors. Acta Physiologica published by John Wiley & Sons Ltd on behalf of Scandinavian Physiological Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Metabolism and Nutritional Physiology
Rudayni, Hassan A.
Stephenson, George
Posterino, Giuseppe S.
Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title_full Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title_fullStr Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title_full_unstemmed Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title_short Measurements of basal d‐glucose transport through GLUT1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
title_sort measurements of basal d‐glucose transport through glut1 across the intact plasma membrane of isolated segments from single fast‐ and slow‐twitch skeletal muscle fibres of rat
topic Metabolism and Nutritional Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541404/
https://www.ncbi.nlm.nih.gov/pubmed/35038771
http://dx.doi.org/10.1111/apha.13789
work_keys_str_mv AT rudaynihassana measurementsofbasaldglucosetransportthroughglut1acrosstheintactplasmamembraneofisolatedsegmentsfromsinglefastandslowtwitchskeletalmusclefibresofrat
AT stephensongeorge measurementsofbasaldglucosetransportthroughglut1acrosstheintactplasmamembraneofisolatedsegmentsfromsinglefastandslowtwitchskeletalmusclefibresofrat
AT posterinogiuseppes measurementsofbasaldglucosetransportthroughglut1acrosstheintactplasmamembraneofisolatedsegmentsfromsinglefastandslowtwitchskeletalmusclefibresofrat