Search Results - "G L Dohm"

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  1. 1

    Involvement of protein kinase C in human skeletal muscle insulin resistance and obesity by ITANI, S. I, QIAN ZHOU, PORIES, W. J, MACDONALD, K. G, DOHM, G. L

    Published in Diabetes (New York, N.Y.) (01-08-2000)
    “…Involvement of protein kinase C in human skeletal muscle insulin resistance and obesity. S I Itani , Q Zhou , W J Pories , K G MacDonald and G L Dohm…”
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  2. 2

    Leptin directly alters lipid partitioning in skeletal muscle by D M Muoio, G L Dohm, F T Fiedorek, Jr, E B Tapscott, R A Coleman, G L Dohn

    Published in Diabetes (New York, N.Y.) (01-08-1997)
    “…Leptin directly alters lipid partitioning in skeletal muscle. D M Muoio , G L Dohm , F T Fiedorek, Jr , E B Tapscott , R A Coleman and G L Dohn Department of…”
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  3. 3

    Skeletal muscle fiber composition is related to adiposity and in vitro glucose transport rate in humans by Hickey, M S, Carey, J O, Azevedo, J L, Houmard, J A, Pories, W J, Israel, R G, Dohm, G L

    Published in The American journal of physiology (01-03-1995)
    “…The purpose of this study was to determine if a relationship exists among skeletal muscle fiber composition, adiposity, and in vitro muscle glucose transport…”
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  4. 4

    Insulin receptor phosphorylation, insulin receptor substrate-1 phosphorylation, and phosphatidylinositol 3-kinase activity are decreased in intact skeletal muscle strips from obese subjects by Goodyear, L J, Giorgino, F, Sherman, L A, Carey, J, Smith, R J, Dohm, G L

    Published in The Journal of clinical investigation (01-05-1995)
    “…To determine whether the impaired insulin-stimulated glucose uptake in obese individuals is associated with altered insulin receptor signaling, we measured…”
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  5. 5

    Exercise induces a transient increase in transcription of the GLUT-4 gene in skeletal muscle by Neufer, P D, Dohm, G L

    Published in The American journal of physiology (01-12-1993)
    “…Endurance exercise training elicits an increase in mitochondrial density as well as GLUT-4 glucose transporter protein content in skeletal muscle…”
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  6. 6

    Effect of aging on response to exercise training in humans: skeletal muscle GLUT-4 and insulin sensitivity by Cox, Julie H, Cortright, Ronald N, Dohm, G. Lynis, Houmard, Joseph A

    Published in Journal of applied physiology (1985) (01-06-1999)
    “…1  Human Performance Laboratory, Department of Exercise and Sport Science and 2  Department of Biochemistry, School of Medicine, East Carolina University,…”
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  7. 7

    Seven days of exercise increase GLUT-4 protein content in human skeletal muscle by Houmard, J A, Hickey, M S, Tyndall, G L, Gavigan, K E, Dohm, G L

    Published in Journal of applied physiology (1985) (01-12-1995)
    “…Insulin-responsive glucose transporter (GLUT-4) content increases by 1.8-fold in skeletal muscle with 14 wk of exercise training [Houmard et al. Am. J…”
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  8. 8

    Exercise training increases GLUT-4 protein concentration in previously sedentary middle-aged men by Houmard, J A, Shinebarger, M H, Dolan, P L, Leggett-Frazier, N, Bruner, R K, McCammon, M R, Israel, R G, Dohm, G L

    Published in The American journal of physiology (01-06-1993)
    “…The purpose of this study was to determine if 14 wk of exercise training would increase insulin-sensitive glucose transporter protein (GLUT-4) concentration in…”
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  9. 9

    Effects of muscle activity and fiber composition on glucose transport and GLUT-4 by Megeney, L A, Neufer, P D, Dohm, G L, Tan, M H, Blewett, C A, Elder, G C, Bonen, A

    Published in The American journal of physiology (01-04-1993)
    “…We examined glucose uptake and GLUT-4 in rat muscles [soleus (Sol), plantaris (PL), extensor digitorum longus (EDL), tibialis anterior, and the red and white…”
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  10. 10

    Insulin responsiveness in skeletal muscle is determined by glucose transporter (Glut4) protein level by Kern, M, Wells, J A, Stephens, J M, Elton, C W, Friedman, J E, Tapscott, E B, Pekala, P H, Dohm, G L

    Published in Biochemical journal (01-09-1990)
    “…Glucose transport in skeletal muscle is mediated by two distinct transporter isoforms, designated muscle/adipose glucose transporter (Glut4) and…”
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  11. 11

    Elevated skeletal muscle glucose transporter levels in exercise-trained middle-aged men by Houmard, J A, Egan, P C, Neufer, P D, Friedman, J E, Wheeler, W S, Israel, R G, Dohm, G L

    Published in The American journal of physiology (01-10-1991)
    “…Exercise training has been proposed to improve whole body insulin sensitivity through a postreceptor adaptation in skeletal muscle. This study examined if…”
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  12. 12

    An in vitro human muscle preparation suitable for metabolic studies: decreased insulin stimulation of glucose transport in muscle from morbidly obese and diabetic subjects by DOHM, G. L, TAPSCOTT, E. B, PORIES, W. J, FLICKINGER, E. G, MEELHEIM, D, FUSHIKI, T, ATKINSON, S. M, ELTON, C. W, CARO, J. F

    Published in The Journal of clinical investigation (01-08-1988)
    “…We have developed an in vitro muscle preparation suitable for metabolic studies with human muscle tissue and have investigated the effects of obesity and…”
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  13. 13

    Insulin receptor kinase in human skeletal muscle from obese subjects with and without noninsulin dependent diabetes by CARO, J. F, SINHA, M. K, RAJU, S. M, ITTOOP, O, PORIES, W. J, FLICKINGER, E. G, MEELHEIM, D, DOHM, G. L

    Published in The Journal of clinical investigation (01-05-1987)
    “…We have studied the structure and function of the insulin receptors in obese patients with and without noninsulin dependent diabetes mellitus (NIDDM) and in…”
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  14. 14

    Decreased expression of glucose transporter in muscle from insulin-resistant patients by Dohm, G L, Elton, C W, Friedman, J E, Pilch, P F, Pories, W J, Atkinson, Jr, S M, Caro, J F

    Published in The American journal of physiology (01-03-1991)
    “…We have observed that in vitro incubated human muscle fiber strips from obese patients with or without non-insulin-dependent diabetes mellitus (NIDDM) have…”
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  15. 15

    Hypoxia stimulates glucose transport in insulin-resistant human skeletal muscle by J L Azevedo, Jr, J O Carey, W J Pories, P G Morris, G L Dohm

    Published in Diabetes (New York, N.Y.) (01-06-1995)
    “…Hypoxia stimulates glucose transport in insulin-resistant human skeletal muscle. J L Azevedo, Jr , J O Carey , W J Pories , P G Morris and G L Dohm Department…”
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  16. 16

    Liver glucokinase: decreased activity in patients with type II diabetes by Caro, J F, Triester, S, Patel, V K, Tapscott, E B, Frazier, N L, Dohm, G L

    Published in Hormone and metabolic research (01-01-1995)
    “…Because of the demonstration of a genetic linkage between glucokinase and Type II diabetes, and the central role of glucokinase on glucose metabolism, we…”
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  17. 17

    Effect of respiratory muscle training on GLUT-4 in the sheep diaphragm by BHANDARI, A, YING XIA, CORTRIGHT, R, DOHM, G. L, BAZZY, A. R

    “…Endurance exercise training is associated with enhanced glucose uptake and hence improvement in carbohydrate metabolism. Glucose transport (GLUT) membrane…”
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  18. 18

    Eccentric contractions decrease glucose transporter transcription rate, mRNA, and protein in skeletal muscle by Kristiansen, S, Jones, J, Handberg, A, Dohm, G L, Richter, E A

    Published in The American journal of physiology (01-05-1997)
    “…We have recently shown that eccentric contractions (ECs; forced lengthening of active muscle) elicit a delayed decrease in glucose transporter (GLUT-4) protein…”
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  19. 19

    Altered expression of muscle glucose transporter GLUT-4 in diabetic fatty Zucker rats (ZDF/Drt-fa) by Friedman, J E, de Venté, J E, Peterson, R G, Dohm, G L

    Published in The American journal of physiology (01-12-1991)
    “…We examined GLUT-4 glucose transporter protein and mRNA in muscle tissue from a new rodent model of non-insulin-dependent diabetes mellitus (NIDDM), the male…”
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  20. 20

    Lipid oxidation is reduced in obese human skeletal muscle by Kim, J Y, Hickner, R C, Cortright, R L, Dohm, G L, Houmard, J A

    “…The purpose of this study was to discern cellular mechanisms that contribute to the suppression of lipid oxidation in the skeletal muscle of obese individuals…”
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