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Results: 1-8 |
Results: 8

Authors: Higashida, H Yokoyama, S Hoshi, N Hashii, M Egorova, A Zhong, ZG Noda, M Shahidullah, M Taketo, M Knijnik, R Kimura, Y Takahashi, H Chen, XL Shin, Y Zhang, JS
Citation: H. Higashida et al., Signal transduction from bradykinin, angiotensin, adrenergic and muscarinic receptors to effector enzymes, including ADP-ribosyl cyclase, BIOL CHEM, 382(1), 2001, pp. 23-30

Authors: Higashida, H Zhang, JS Hashii, M Shintaku, M Higashida, C Takeda, Y
Citation: H. Higashida et al., Angiotensin II stimulates cyclic ADP-ribose formation in neonatal rat cardiac myocytes (vol 352, pg 197, 2000), BIOCHEM J, 354, 2001, pp. 727-727

Authors: Higashida, H Hashii, M Yokoyama, S Hoshi, N Chen, XL Egorova, A Noda, M Zhang, JS
Citation: H. Higashida et al., Cyclic ADP-ribose as a second messenger revisited from a new aspect of signal transduction from receptors to ADP-ribosyl cyclase, PHARM THERA, 90(2-3), 2001, pp. 283-296

Authors: Higashida, H Hashii, M Yokoyama, S Hoshi, N Asai, K Kato, T
Citation: H. Higashida et al., Cyclic ADP-ribose as a potential second messenger for neuronal Ca2+ signaling, J NEUROCHEM, 76(2), 2001, pp. 321-331

Authors: Higashida, H Zhang, JS Hashii, M Shintaku, M Higashida, C Takeda, Y
Citation: H. Higashida et al., Angiotensin II stimulates cyclic ADP-ribose formation in neonatal rat cardiac myocytes, BIOCHEM J, 352, 2000, pp. 197-202

Authors: Hashii, M Minabe, Y Higashida, H
Citation: M. Hashii et al., cADP-ribose potentiates cytosolic Ca2+ elevation and Ca2+ entry via L-typevoltage-activated Ca2+ channels in NG108-15 neuronal cells, BIOCHEM J, 345, 2000, pp. 207-215

Authors: Higashida, H Taketo, M Takahashi, H Yokoyama, S Hashii, M
Citation: H. Higashida et al., Potential mechanism for bradykinin-activated and inositol tetrakisphosphate-dependent Ca2+ influx by Ras and GAP1 in fibroblast cells, IMMUNOPHARM, 45(1-3), 1999, pp. 7-11

Authors: Takagi, Y Hashii, M Maehara, A Yamane, T
Citation: Y. Takagi et al., Biosynthesis of polyhydroxyalkanoate with a thiophenoxy side group obtained from Pseudomonas putida, MACROMOLEC, 32(25), 1999, pp. 8315-8318
Risultati: 1-8 |