Novel mechanisms regulating protein interaction and pain
Novel mechanisms regulating protein interaction and pain
批准号:
9914746
负责人:
Matthew B Dalva
金额:
$52.81万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-12-15 至 2024-11-30
关键词:
Acute PainAddressAmino AcidsAnalgesicsAreaBindingBrainChargeChemosensitizationCortical CordDataDevelopmentEphB2 ReceptorEphrin B ReceptorEphrinsEventExtracellular ProteinFibronectinsFunctional disorderGenerationsHyperalgesiaHypersensitivityIn VitroInjectionsKetamineKnowledgeLinkMass Spectrum AnalysisMechanicsMediatingMental DepressionMolecularMusN-Methyl-D-Aspartate ReceptorsN-terminalNMDA receptor A1Neurologic EffectNeuronal PlasticityNeuronsNeuropathyNociceptionPainPatternPeripheral nerve injuryPersistent painPhosphorylationPhosphotransferasesPhylogenyPlayPopulationPost-Translational Protein ProcessingPostoperative PainProtein KinaseProtein Tyrosine KinaseProteinsPublishingReceptor Protein-Tyrosine KinasesRecombinantsResistanceRoleSequence AnalysisSpinalSpinal CordStimulusSurfaceSynapsesSynaptic TransmissionSynaptic plasticityTertiary Protein StructureTestingWorkallodyniacentral sensitizationchronic paindorsal horneffective therapyextracellularinsightmolecular targeted therapiesmutantnervous system disorderneuron developmentnew therapeutic targetnon-opioid analgesicnovelnovel therapeutic interventionpain modelpain reliefpain signalpainful neuropathypreventprotein protein interactionreceptorreceptor functionrelease of sequestered calcium ion into cytoplasmside effectsynaptic functiontherapeutic targettool
中文摘要
项目摘要
多达20%的人口将遭受持续6个月以上的慢性疼痛。慢性疼痛
及其潜在的病理生理学,可导致抑郁和其他衰弱的神经效应
虽然有治疗急性疼痛的有效方法,但慢性疼痛对大多数当前的治疗方法都具有抵抗力。
需要开发针对这些疼痛状态下的分子事件的新疗法。
神经病理性和持续性手术后疼痛的发生,至少部分是由于长期的
脊髓背角兴奋性突触传递增强痛觉信号的功能
(痛觉过敏)和无伤大雅的刺激引起疼痛(痛觉过敏)。这些突触事件具有许多共同的特征
已在较高中枢神经系统区域研究的神经元可塑性。其中许多更改都依赖于NMDAR
导致突触强度增加。在这些变化背后出现的一个机制是
突触功能是通过与EphB的直接分子相互作用而增强NMDAR功能
受体酪氨酸激酶。在我们已发表的工作的基础上,我们将测试EphB-NMDAR的假设
相互作用通过以下方式将NMDAR定向到突触,从而导致慢性疼痛状态的发展
在体外和小鼠体内表达野生型或突变型EphB2受体。为了检验这一假设,我们将确定
介导EphB-NDMAR相互作用的机制,表征分子和其他工具来破坏这一相互作用
并确定阻止EphB-NMDAR相互作用是否会缓解慢性疼痛。至
针对这些问题,我们将实现三个具体目标:1.确定NMDAR上的域
负责EphB-NMDAR的交互。2.验证VLK引导磷酸化的假设
EphB2上的Y504。3.确定VLK在疼痛可塑性中的功能意义。总的来说,这些
AIMS将创造一种新的知识,使人们对EphB-NMDAR的作用有更深入的了解
疼痛中的相互作用并使理解慢性疼痛背后的基本机制取得进展
各州。
英文摘要
Project Abstract
As much as 20% of the population will suffer from chronic pain lasting for more than 6 months. Chronic pain
and its underlying pathophysiology, can result in depression and other debilitating neurological effects and
although there are effective treatments for acute pain chronic pain is resistant to most current treatments
requiring the development of novel therapeutics that target molecular events underlying these pain states.
Neuropathic and persistent post-surgical pain occurs, at least in part, due to long lasting changes in the
function of excitatory synaptic transmission in the spinal dorsal horn resulting in enhanced pain signaling
(hyperalgesia) and innocuous stimuli evoking pain (allodynia). These synaptic events share many features of
neuronal plasticity that has been studied in higher CNS areas. Many of these changes are NMDAR dependent
resulting in increased synaptic strength. One mechanism that has emerged underlying these changes in
synaptic function is the potentiation of NMDAR function by a direct molecular interaction with the EphB
receptor tyrosine kinase. Building on our published work, we will test the hypothesis that an EphB-NMDAR
interaction is responsible for the development of a chronic pain state by directing NMDARs to synapses by
expressing wild type or mutant EphB2 receptors in vitro and in mice. To test this hypothesis, we will determine
the mechanism mediating the EphB-NDMAR interaction, characterize molecules and other tools to disrupt this
interaction, and determine whether preventing the EphB-NMDAR interaction will alleviate chronic pain. To
address these questions we will undertake three specific aims: 1. Determine the domain on the NMDAR
responsible for the EphB-NMDAR interaction. 2. Test the hypothesis that VLK directs phosphorylation
of Y504 on EphB2. 3. Determine the functional significance of VLK in pain plasticity. Collectively these
aims will create a new knowledge that will provide a deeper understanding of the role of EphB-NMDAR
interaction in pain and enable progress toward understanding the basic mechanisms behind chronic pain
states.
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会议论文
Novel mechanisms regulating protein interaction and pain
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批准号:10350573
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项目类别:
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资助金额:$51.41万
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财政年份:2019
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负责人:Matthew B Dalva
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依托单位:
Extracellular mechanism regulating synaptic function and pain plasticity
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批准号:10226181
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Extracellular mechanism regulating synaptic function and pain plasticity
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批准号:10675034
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资助金额:$51.11万
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负责人:Matthew B Dalva
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Extracellular mechanism regulating synaptic function and pain plasticity
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批准号:10001045
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Extracellular mechanism regulating synaptic function and pain plasticity
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批准号:10545732
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依托单位:
Examining the function of biological sex specific genes: the NLGN4s
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依托单位:
Glial Control of Neuronal Progenitor Cell Migration
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资助金额:$38.75万
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财政年份:2013
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Glial Control of Neuronal Progenitor Cell Migration
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资助金额:$38.75万
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Genetic indicators for imaging of cell signaling in plasticity and development
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Genetic indicators for dynamic imaging of neuronal signaling in plasticity and de
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Genetic indicators for dynamic imaging of neuronal signaling in plasticity and de
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Cell-Contact Mediated Mechanisms Assembling Synapses
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Cell-contact mediated mechanisms assembling synapses
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海外基金