Ca2+ Stimulated Adenylyl Cyclases and Neuroplasticity
Ca2+ Stimulated Adenylyl Cyclases and Neuroplasticity
批准号:
6720592
负责人:
DANIEL R STORM
金额:
$35.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1984
资助国家:
美国
项目状态:
已结题
起止时间:
1984-04-01 至 2009-02-28
关键词:
adenylate cyclasebiofeedbackbiological signal transductioncAMP response element binding proteincalcium ioncalmodulinconfocal scanning microscopyfluorescent dye /probegene expressiongenetically modified animalsguanine nucleotide binding proteinhippocampuslaboratory mouselong term memorylong term potentiationmicroarray technologymitogen activated protein kinaseneural plasticitypolymerase chain reactionprotein degradationprotein kinase Aprotein quantitation /detectionprotein signal sequencestimulant /agonisttissue /cell culturetranscription factor
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英文摘要
DESCRIPTION (provided by applicant): There is considerable interest in the cellular and molecular basis of memory formation. Studies of learning and memory are of fundamental importance for a better understanding of cognitive disorders in humans including Alzheimer's, autism, aging-related memory loss, and various types of mental retardation. It is the general hypothesis of this proposal that Ca2+ stimulation of the CREB/CRE (cAMP response element)-transcriptional pathway plays a pivotal role in long-lasting, long-term potentiation (L-LTP) and some forms of hippocampus-dependent long-term memory (LTM). Our long-term objectives are to define the mechanisms for Ca2+ stimulation of CRE-mediated transcription in hippocampal neurons and to understand why activation of this pathway is important for LTM and L-LTP. We hypothesize that Ca2+ activation of CRE-mediated transcription requires coactivation of the Erk/MAPK and camp signal transduction pathways. We propose that the critical cAMP signal increase originates from activation of calmodulin-stimulated adenylyl cyclases. We hypothesize that cAMP signaling is required for the nuclear translocation of Erk/MAPK and may also contribute to Ca2+ activation of Erk/MAPK. We also propose that proteolytic degradation of SCOP, a Ras inhibitor, may contribute to Ca2+ activation and sensitization of the Erk/MAPK signal transduction pathway. We hypothesize that long-lasting increases in CRE-mediated transcription, or transcriptional oscillations, in the hippocampus may be due to increased expression of gene products that function as positive-feedback regulators of the Erk/MAPK/CRE transcriptional pathway.
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会议论文
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海外基金