Diurnal alteration of glycogen and its metabolite enzymes in rat testis
Sheth, A.R.; Mugatwala, P.; Shah, G.V.
Indian Journal of Experimental Biology 13(5): 422-424
1975
ISSN/ISBN: 0019-5189 PMID: 1240868 Document Number: 88858
Document emailed within 1 workday
Related Documents
Iurovitskiĭ, I.U.; Mil'man, L.S. 1975: Changes in the activity of enzymes of glycogen metabolism in oocytes and embryos of teleosts Biokhimiia 40(5): 962-968Li, Q.W. 1988: The effect of the IUD on the endometrial blood vessels: the histochemical changes of enzymes and glycogen Sheng Zhi Yu Bi Yun 8(2): 15-18
Prough, R.A.; Webb, S.J.; Wu, H.Q.; Lapenson, D.P.; Waxman, D.J. 1994: Induction of microsomal and peroxisomal enzymes by dehydroepiandrosterone and its reduced metabolite in rats Cancer Research 54(11): 2878-2886
Russell, J.C.; Tougas, D.; Taylor, A.W. 1970: Rapid assay for glycogen-cycle enzymes in small samples of muscle Clinical Chemistry 16(11): 900-902
Misheneva, V.S.; Goriukhina, T.A.; Burova, T.M.; Seĭts, I.F. 1973: The concentration of glycogen and the activity of enzymes involved in its synthesis in experimental tumors and in the liver Voprosy Onkologii 19(9): 86-91
Nordqvist, M.; Thakker, D.R.; Levin, W.; Yagi, H.; Ryan, D.E.; Thomas, P.E.; Conney, A.H.; Jerina, D.M. 1979: The highly tumorigenic 3,4-dihydrodiol is a principal metabolite formed from dibenzo[a,h]anthracene by liver enzymes Molecular Pharmacology 16(2): 643-655
Karpiak, S.; Ziarko, D.; Zóltowska, K.; Gwara, K. 1977: Relations between glycogen phosphorylase activity and activities of amylolytic enzymes in rabbit skeletal muscle Archivum Immunologiae et Therapiae Experimentalis 25(2): 199-212
Skerlavay, M.A.; Bigelow, B.; Demopoulus, R.I. 1975: Histochemical studies of glycogen metabolizing enzymes in normal and abnormal human cervical epithelium Acta Histochemica 53(2): 233-237
Kuznetsov, S.L.; Kuchma, V.R. 1987: Changes in the activity of a number of enzymes of skeletal muscle fibers of the rat and glycogen concentration during different schedules of physical loading Gigiena i Sanitariia 1987(2): 78-79
Felt, V.; Nedvídková, J.; Hynie, S.; Mosinger, B.; Vavrínková, H. 1979: Influence of thyrotoxicosis on adrenergic receptors, cyclic adenosine monophosphate, glycogen and some enzymes in the heart muscle Czechoslovak Medicine 2(1-2): 11-22
Vartanian, G.S.; Parsadanian, G.K.; Karagezian, K.G. 1984: Effect of trihydroxyoctadecadiene acids from Bryonia alba L. on the activity of glycogen metabolism enzymes in alloxan diabetes Biulleten' Eksperimental'noi Biologii i Meditsiny 97(3): 295-297
Pretczak, J.; Chmiel, J. 1977: Activity of various enzymes and glycogen as well as lactic acid content in dorsal muscles of patients with idiopathic scoliosis Chirurgia Narzadow Ruchu i Ortopedia Polska 42(3): 299-302
Golan, M.D.; Bücker, M.; Schmassmann, H.U.; Raphael, D.; Jung, R.; Bindel, U.; Brase, H.O.; Tegtmeyer, F.; Friedberg, T.; Lorenz, J.; Stasiecki, P.; Oesch, F. 1980: Characterization of dog hepatic drug-metabolizing enzymes and resultant effects on benzo[a]pyrene metabolite pattern and mutagenicity Drug Metabolism and Disposition: the Biological Fate of Chemicals 8(3): 121-126
Németh, S.; Viskupic, E.; Kvetnanský, R.; Kolena, J. 1987: Progressive weakening of the response of key enzymes of liver glycogen metabolism to permanently increased plasma epinephrine levels Physiologia Bohemoslovaca 36(5): 441-446
Legendre, F.; Bogdanowicz, P.; Martin, G.; Domagala, F.; Leclercq, S.; Pujol, J.-P.; Ficheux, H. 2007: Rhein, a diacerhein-derived metabolite, modulates the expression of matrix degrading enzymes and the cell proliferation of articular chondrocytes by inhibiting ERK and JNK-AP-1 dependent pathways Clinical and Experimental Rheumatology 25(4): 546-555
Németh, S.; Viskupic, E.; Kvetnanský, R.; Kolena, J. 1987: Effect of epinephrine infusions imitating plasma epinephrine levels in immobilization stress and of fasting on the activity of key enzymes of liver glycogen metabolism Physiologia Bohemoslovaca 36(6): 487-493
Shen, L.C.; Edstrom, R.D.; Larner, J. 1972: Primer activity of a low molecular weight glycogen from a patient with an unusual glycogen storage disease Physiological Chemistry and Physics 4(1): 56-60
Negami, A.; Sasaki, H.; Isomatsu, M.; Yamamura, H. 1985: Stimulation of autophosphorylation of rabbit skeletal muscle phosphorylase kinase by glycogen synthase on glycogen particles Biochemistry International 10(1): 71-78
Ortmeyer, H.K.; Bodkin, N.L.; Varghese, S.S.; Hansen, B.C. 1996: Glycogen phosphorylase activity and glycogen concentration in muscle of normal to overtly diabetic rhesus monkeys International Journal of Obesity and Related Metabolic Disorders: Journal of the International Association for the Study of Obesity 20(2): 98-105
Ding, J-Jie.; Jiao, Z.; Yu, Y-Qiu.; Shi, X-Jin. 2007: Development and identifiability analysis of parent-metabolite pharmacokinetic model for risperidone and its main active metabolite 9-hydroxyrisperidone Yao Xue Xue Bao 42(6): 631-638