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Neurotrophin Rescue of Beta Amyloid (AB) -induced Synaptic Dysfunction

Neurotrophin Rescue of Beta Amyloid (AB) -induced Synaptic Dysfunction
神经营养素拯救β淀粉样蛋白 (AB) 诱导的突触功能障碍
批准号:
7910431
负责人:
CUI-WEI XIE
金额:
$24.45万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-08-01 至 2012-07-31

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DESCRIPTION (provided by applicant): Beta-Amyloid (Abeta) is associated with age-related cognitive decline, neurotoxicity and synaptic failure in Alzheimer's disease (AD). Significant progress has been made in understanding the genetic factors and cellular mechanisms contributing to Abeta-induced neurotoxicity. However, the mechanisms responsible for Abeta-induced synaptic dysfunction prior to cell death are largely unknown, and finding safe and effective therapeutic interventions to reverse Abeta-related early AD pathology remains a great challenge. We previously showed that acute application of Abeta inhibited hippocampal long-term potentiation (LTP), a synaptic model of learning and memory, and that this effect was associated with altered intracellular Ca2+ signaling leading to activation of a Ca2+-dependent protein phosphatase calcineurin. Interestingly, we observed in several model systems that neurotrophin 4 and brain-derived neurotrophic factor rescued Abeta- induced deficits in LTP and synaptic transmission. Based on the preliminary data, we hypothesize that a focal point for the neurotrophin (NT)- Abeta interaction is Ca2+ and calmodulin-dependent protein kinase II (CaMKII). Abeta inhibits CaMKII activation via enhanced calcineurin activity, whereas NT counteracts Abeta action by stimulating CaMKII and enhancing the function and synaptic targeting of the AMPA type of glutamate receptors. In addition, NT is known to promote neuronal differentiation, survival and plasticity through two major kinase pathways, mitogen-activated protein kinase (MAPK) and phosphoinositide kinase 3 (PI3K). These two kinase pathways may contribute to the NT rescue by enhancing AMPA receptor function or promoting gene transcription required for both synaptic plasticity and neuronal survival. These hypotheses will be tested using a combination of electrophysiological, biochemical, immunocytochemical and molecular genetic approaches. We will further examine NT- Abeta interactions in regulating multiple forms of hippocampal synaptic plasticity; determine the synaptic locus and mechanisms underlying their opposing effects; and analyze the role of CaMKII, MAPK and PI3K in the NT rescue using various pharmacological, molecular and genetic manipulations. The results may provide new insights into synaptic mechanisms for Abeta action and the therapeutic potentials of trkB-acting NT for early AD.
期刊论文(5)
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DOI: 10.3233/jad-2010-100264
发表时间: 2010
期刊: Journal of Alzheimer's disease : JAD
影响因子: --
作者: [Zeng Y, Zhao D, Xie CW]
通讯作者: Xie CW
Retraction: Zeng et al., Epigenetic enhancement of BDNF signaling rescues synaptic plasticity in aging.
撤回:Zeng 等人,BDNF 信号的表观遗传增强可挽救衰老过程中的突触可塑性。
DOI: 10.1523/jneurosci.4832-13.2013
发表时间: 2013
期刊: The Journal of neuroscience : the official journal of the Society for Neuroscience
影响因子: --
作者: []
通讯作者:
DOI: 10.1523/jneurosci.3878-11.2011
发表时间: 2011-12-07
期刊: The Journal of neuroscience : the official journal of the Society for Neuroscience
影响因子: --
作者: [Zeng Y, Tan M, Kohyama J, Sneddon M, Watson JB, Sun YE, Xie CW]
通讯作者: Xie CW
CA2+ SIGNALING-- ROLE IN ABETA-INDUCED MEMORY DEFICITS
Neurotrophin Rescue of Beta Amyloid (AB) -induced Synaptic Dysfunction
Neurotrophin Rescue of Beta Amyloid (AB) -induced Synaptic Dysfunction
CA2+ SIGNALING-- ROLE IN ABETA-INDUCED MEMORY DEFICITS
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