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Volumn 279, Issue 5352, 1998, Pages 870-873

Autophosphorylation at Thr286 of the α calcium-calmodulin kinase II in LTP and learning

Author keywords

[No Author keywords available]

Indexed keywords

N METHYL DEXTRO ASPARTIC ACID RECEPTOR; PROTEIN KINASE (CALCIUM,CALMODULIN) II; SYNAPTOPHYSIN; THREONINE; 2 AMINO 5 PHOSPHONOVALERIC ACID; 6 CYANO 7 NITRO 2,3 QUINOXALINEDIONE; CALMODULIN; CALMODULIN DEPENDENT PROTEIN KINASE II; CALMODULIN-DEPENDENT PROTEIN KINASE II; PHOSPHOTHREONINE; PICROTOXIN; PROTEIN KINASE (CALCIUM,CALMODULIN);

EID: 0032488659     PISSN: 00368075     EISSN: None     Source Type: Journal    
DOI: 10.1126/science.279.5352.870     Document Type: Article
Times cited : (926)

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    • Synaptic transmission during the 10-Hz tetanus undergoes biphasic (increase minus decrease) changes. For wild-type mice (n = 6), the maximal increase was 140.3 ± 3.2%, and for mutants, it was 146.7 ± 4.4% (n = 5). The maximal decrease (at the end of the tetanus) was 79.2 ± 6.9% for wild-type mice and 91.6 ± 8.9% for mutants.
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    • Extracellular field recordings (in the presence of CNQX and PTX, with a stimulation strength of 50 μA) indicated that the NMDAR potentials did not differ between mutant (0.159 ± 0.053 mV; three mice, four slices) and wild-type mice (0.200 ± 0.020 mV; three mice, five slices).
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    • We thank P. Chen, K. Fox, P. W. Frankland, J. H. Kogan, J. E. Lisman, R. Malinow, K. Mizuno, A. Nagy, M. N. Waxham, and D.-J. Zuo for helpful discussions and materials. K.P.G. was supported by a European Molecular Biology Organization and Deutsche Forschungsgemeinschaft fellowship. R.K.F. was supported by the Foundation for Experimental and Clinical Oncology, Poland. A.J.S. was supported by grants from the Whitehall, Beckman, Klingenstein, and McKnight Foundations and NIH (AG13622).


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