Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
McKnight, G. S.
Idzerda, R. L.
Kandel, E. R.
Brandon, E. P.
Zhuo, M.
Qi, M.
Bourtchouladze, R.
Huang, Y.
Burton, K. A.
Skålhegg, B. S.
Cummings, D. E.
Varshavsky, L.
Planas, J. V.
Motamed, K.
Gerhold, K. A.
Amieux, P. S.
Guthrie, C. R.
Millett, K. M.
Belyamani, M.
and
Su, T.
1996.
Signal Transduction in Testicular Cells.
p.
95.
Nielsen, Mark D.
Chan, Guy C.K.
Poser, Steven W.
and
Storm, Daniel R.
1996.
Differential Regulation of Type I and Type VIII Ca2+-stimulated Adenylyl Cyclases by Gi-coupled Receptors in Vivo.
Journal of Biological Chemistry,
Vol. 271,
Issue. 52,
p.
33308.
Xia, Zhengui
and
Storm, Daniel R
1997.
Calmodulin-regulated adenylyl cyclases and neuromodulation.
Current Opinion in Neurobiology,
Vol. 7,
Issue. 3,
p.
391.
Marjamaki, Anne
Sato, Motohiko
Bouet-Alard, Rachel
Yang, Qing
Limon-Boulez, Isabelle
Legrand, Chantal
and
Lanier, Stephen M.
1997.
Factors Determining the Specificity of Signal Transduction by Guanine Nucleotide-binding Protein-coupled Receptors.
Journal of Biological Chemistry,
Vol. 272,
Issue. 26,
p.
16466.
Yamamoto, M.
Ozawa, H.
Saito, T.
Hatta, S.
Riederer, P.
and
Takahata, N.
1997.
Ca2+/CaM-sensitive adenylyl cyclase activity is decreased in the Alzheimer's brain: Possible relation to type I adenylyl cyclase.
Journal of Neural Transmission,
Vol. 104,
Issue. 6-7,
p.
721.
Hatta, Shinichi
Togashi, Hiroko
Saito, Hideya
Saito, Toshikazu
and
Ohshika, Hideyo
1998.
Alteration in Ca2+/calmodulin-senshtve adenylyl cyclase activity in the hippocampus of stroke-prone spontaneously hypertensive rats.
Life Sciences,
Vol. 62,
Issue. 17-18,
p.
1683.
Villacres, Enrique C.
Wong, Scott T.
Chavkin, Charles
and
Storm, Daniel R.
1998.
Type I Adenylyl Cyclase Mutant Mice Have Impaired Mossy Fiber Long-Term Potentiation.
The Journal of Neuroscience,
Vol. 18,
Issue. 9,
p.
3186.
Muglia, Lisa M.
Schaefer, Michele L.
Vogt, Sherri K.
Gurtner, Gregory
Imamura, Atsuko
and
Muglia, Louis J.
1999.
The 5′-Flanking Region of the Mouse Adenylyl Cyclase Type VIII Gene Imparts Tissue-Specific Expression in Transgenic Mice.
The Journal of Neuroscience,
Vol. 19,
Issue. 6,
p.
2051.
Guillou, Jean-Louis
Rose, Gregory M.
and
Cooper, Dermot M. F.
1999.
Differential Activation of Adenylyl Cyclases by Spatial and Procedural Learning.
The Journal of Neuroscience,
Vol. 19,
Issue. 14,
p.
6183.
Baker, Lauren P.
Nielsen, Mark D.
Impey, Soren
Hacker, Beth M.
Poser, Steven W.
Chan, Mandy Y. M.
and
Storm, Daniel R.
1999.
Regulation and Immunohistochemical Localization of βγ-Stimulated Adenylyl Cyclases in Mouse Hippocampus.
The Journal of Neuroscience,
Vol. 19,
Issue. 1,
p.
180.
Yamamoto, Megumi
Götz, Mario E.
Ozawa, Hiroki
Luckhaus, Christian
Saito, Toshikazu
Rösler, Michael
and
Riederer, Peter
2000.
Hippocampal level of neural specific adenylyl cyclase type I is decreased in Alzheimer’s disease.
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease,
Vol. 1535,
Issue. 1,
p.
60.
Poser, Steve
and
Storm, Daniel R.
2001.
Role of Ca2+‐stimulated adenylyl cyclases in LTP and memory formation.
International Journal of Developmental Neuroscience,
Vol. 19,
Issue. 4,
p.
387.
Kinney, Jefferson W.
Starosta, Grzegorz
Holmes, Andrew
Wrenn, Craige C.
Yang, Rebecca J.
Harris, Ashley P.
Long, Katharine C.
and
Crawley, Jacqueline N.
2002.
Deficits in Trace Cued Fear Conditioning in Galanin-Treated Rats and Galanin-Overexpressing Transgenic Mice.
Learning & Memory,
Vol. 9,
Issue. 4,
p.
178.
Sato, Tomoaki
Tanaka, Koh-ichi
Ohnishi, Yoshiko
Teramoto, Toyonori
Irifune, Masahiro
and
Nishikawa, Takashige
2004.
Inhibitory effects of group II mGluR-related drugs on memory performance in mice.
Physiology & Behavior,
Vol. 80,
Issue. 5,
p.
747.
Beninger, Richard J.
and
Gerdjikov, Todor V.
2004.
The role of signaling molecules in reward-related incentive learning.
Neurotoxicity Research,
Vol. 6,
Issue. 1,
p.
91.