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ALMS1 acts as a critical molecular switch that controls Insulin-stimulated glucose transport in adipocytes
Endocrine Abstracts
◽
10.1530/endoabs.43.oc58
◽
2016
◽
Author(s):
Cynthia Licona
◽
Cathy Obringer
◽
Harinda Rajapaksha
◽
Helene Dollfus
◽
Nikolai Petrovsky
◽
...
Keyword(s):
Glucose Transport
◽
Molecular Switch
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References
P1015 Angiotensin II inhibition increases cellular glucose transport during reperfusion but not ischaemia in pig hearts
European Heart Journal
◽
10.1016/s0195-668x(03)94307-7
◽
2003
◽
Vol 24
(5)
◽
pp. 175
Author(s):
F RANDSBAEK
Keyword(s):
Angiotensin Ii
◽
Glucose Transport
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228-OR: Cerebral Glucose Transport and Metabolism in Obesity
Diabetes
◽
10.2337/db19-228-or
◽
2019
◽
Vol 68
(Supplement 1)
◽
pp. 228-OR
Author(s):
FELONA GUNAWAN
◽
LIHONG JIANG
◽
JESSICA LEVENTHAL
◽
JOLANTA J. PACH
◽
ELIZABETH SANCHEZ RANGEL
◽
...
Keyword(s):
Glucose Transport
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2026-P: Myeloid Sirtuin 6 Is a Molecular Switch of White Adipose Tissue Browning
Diabetes
◽
10.2337/db19-2026-p
◽
2019
◽
Vol 68
(Supplement 1)
◽
pp. 2026-P
Author(s):
YOUNGYI LEE
Keyword(s):
Adipose Tissue
◽
White Adipose Tissue
◽
Molecular Switch
◽
Tissue Browning
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Insulin-stimulated glucose transport and insulin internalization share a common postbinding step in adipocytes
Diabetes
◽
10.2337/diabetes.36.4.542
◽
1987
◽
Vol 36
(4)
◽
pp. 542-545
◽
Cited By ~ 5
Author(s):
A. L. Jochen
◽
P. Berhanu
Keyword(s):
Glucose Transport
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Glyburide-stimulated glucose transport in cultured muscle cells via protein kinase C-mediated pathway requiring new protein synthesis
Diabetes
◽
10.2337/diabetes.40.11.1531
◽
1991
◽
Vol 40
(11)
◽
pp. 1531-1538
◽
Cited By ~ 3
Author(s):
M. B. Davidson
◽
I. G. Molnar
◽
A. Furman
◽
D. Yamaguchi
Keyword(s):
Protein Synthesis
◽
Protein Kinase C
◽
Protein Kinase
◽
Glucose Transport
◽
Muscle Cells
◽
Kinase C
◽
New Protein
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Oral vanadate reduces Na(+)-dependent glucose transport in rat small intestine
Diabetes
◽
10.2337/diabetes.42.8.1126
◽
1993
◽
Vol 42
(8)
◽
pp. 1126-1132
◽
Cited By ~ 7
Author(s):
K. L. Madsen
◽
V. M. Porter
◽
R. N. Fedorak
Keyword(s):
Small Intestine
◽
Glucose Transport
◽
Rat Small Intestine
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Multiple defects in the adipocyte glucose transport system cause cellular insulin resistance in gestational diabetes. Heterogeneity in the number and a novel abnormality in subcellular localization of GLUT4 glucose transporters
Diabetes
◽
10.2337/diabetes.42.12.1773
◽
1993
◽
Vol 42
(12)
◽
pp. 1773-1785
◽
Cited By ~ 25
Author(s):
W. T. Garvey
◽
L. Maianu
◽
J. H. Zhu
◽
J. A. Hancock
◽
A. M. Golichowski
Keyword(s):
Insulin Resistance
◽
Gestational Diabetes
◽
Subcellular Localization
◽
Glucose Transport
◽
Transport System
◽
Glucose Transporters
◽
Multiple Defects
◽
Glucose Transport System
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Mechanism of IGF-I-stimulated glucose transport in human adipocytes. Demonstration of specific IGF-I receptors not involved in stimulation of glucose transport
Diabetes
◽
10.2337/diabetes.38.10.1217
◽
1989
◽
Vol 38
(10)
◽
pp. 1217-1225
◽
Cited By ~ 9
Author(s):
M. K. Sinha
◽
C. Buchanan
◽
N. Leggett
◽
L. Martin
◽
P. G. Khazanie
◽
...
Keyword(s):
Glucose Transport
◽
Human Adipocytes
◽
Igf I
◽
Stimulation Of
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Glucose as regulator of glucose transport activity and glucose-transporter mRNA in hamster beta-cell line
Diabetes
◽
10.2337/diabetes.41.5.592
◽
1992
◽
Vol 41
(5)
◽
pp. 592-597
◽
Cited By ~ 4
Author(s):
N. Inagaki
◽
K. Yasuda
◽
G. Inoue
◽
Y. Okamoto
◽
H. Yano
◽
...
Keyword(s):
Beta Cell
◽
Cell Line
◽
Glucose Transport
◽
Glucose Transporter
◽
Transport Activity
◽
Beta Cell Line
◽
Glucose Transporter Mrna
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Possibility of distinct insulin-signaling pathways beyond phosphatidylinositol 3-kinase-mediating glucose transport and lipogenesis
Diabetes
◽
10.2337/diabetes.47.2.179
◽
1998
◽
Vol 47
(2)
◽
pp. 179-185
◽
Cited By ~ 3
Author(s):
R. W. Stevenson
◽
D. K. Kreutter
◽
K. M. Andrews
◽
P. E. Genereux
◽
E. M. Gibbs
Keyword(s):
Signaling Pathways
◽
Glucose Transport
◽
Insulin Signaling
◽
Phosphatidylinositol 3 Kinase
◽
Phosphatidylinositol 3
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