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中文摘要
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描述(由申请人提供):辣椒素受体TRPV1是瞬时受体电位香草蛋白(TRPV)亚家族的四个阳离子通道之一,可被温暖或极热的温度激活。这些通道中的几个(TRPV1, TRPV3, TRPV4)已被证明参与小鼠热诱发的疼痛感觉。我们最近发现,热诱发的TRPV3激活导致双相电流反应,反映了二价阳离子的初始通道阻塞和随后持续刺激去除该阻塞。这种阻滞的损失依赖于通道密度,一旦启动就同步进行,并与对大有机阳离子n -甲基-d-氨基葡萄糖(NMDG)的渗透性增加有关。TRPV通道中的动态离子选择性可能与神经递质释放、痛觉和辣椒素神经毒性等过程有关。因此,我们提出验证TRPV3功能的这些变化反映了通道孔的渐进式热诱发扩张,以及TRPV1在强烈的化学或热激活下也表现出孔扩张的假设。此外,我们将确定在感觉神经元和角质形成细胞中分别表达的天然TRPV1和TRPV3是否发生孔扩张。利用电生理和荧光显微镜方法,我们将研究TRPV1和TRPV3孔扩张的机制基础,并探索激动剂诱发的孔扩张与TRPV1和TRPV3调节的已知或假定机制(如磷酸化和磷脂结合)之间的关系。最后,我们将通过对选择性过滤器附近结构域内残基的系统诱变,寻求识别对激动剂诱发的TRPV1和TRPV3中孔扩张具有选择性重要作用的氨基酸。该筛选产生的突变体将进一步研究其调节孔隙扩张的潜在“下游”效应的能力,包括细胞形态、细胞死亡和天然和非天然细胞环境下神经递质/细胞因子释放的变化。这些研究将使我们能够确定TRPV1和TRPV3的离子选择性是否以及如何受到调节,并可能为开发用于治疗慢性疼痛的抗舒张拮抗剂或促舒张激动剂提供合理的基础。
英文摘要
DESCRIPTION (provided by applicant): The capsaicin receptor, TRPV1, is one of four cation channels of the transient receptor potential vanilloid (TRPV) subfamily that can be activated by warm or painfully hot temperatures. Several of these channels (TRPV1, TRPV3, TRPV4) have been shown to participate in heat-evoked pain sensation in mice. We recently found that heat-evoked activation of TRPV3 results in a biphasic current response that reflects an initial channel block by divalent cations and subsequent removal of that block by persistent stimulation. This loss of block is dependent on channel density, proceeds synchronously, once initiated, and is associated with increased permeability to the large organic cation N-methyl-d-glucamine (NMDG). Dynamic ion selectivity in TRPV channels could have implications for neurotransmitter release, pain sensation, and capsaicin neurbtoxicity, among other processes. We therefore propose to test the hypotheses that these changes in TRPV3 function reflect progressive heat-evoked dilation of the channel pore, and that TRPV1 also exhibits pore dilation in response to strong chemical or thermal activation. In addition, we will determine whether pore dilation occurs in native TRPV1 and TRPV3 expressed in sensory neurons and keratinocytes, respectively. Using electrophysiological and fluorescence microscopy approaches, we will examine the mechanistic basis of TRPV1 and TRPV3 pore dilation and explore the relationship between agonist-evoked pore dilation and known or presumed mechanisms of TRPV1 and TRPV3 regulation, such as phosphorylation and phospholipid binding. Finally, we will seek to identify amino acids that are selectively important for agonist-evoked pore dilation in TRPV1 and TRPV3 via systematic mutagenesis of residues within the domains adjacent to the selectivity filter. Mutants arising from this screen will be further examined for their abilities to mediate potential "downstream" effects of pore dilation, including changes in cell morphology, cell death, and neurotransmitter/cytokine release in native and non-native cellular contexts. These studies will allow us to determine whether and how the ion selectivities of TRPV1 and TRPV3 are regulated and may provide a rational basis for the development of either anti-dilation antagonists or dilation- promoting agonists, for the treatment of chronic pain.
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Synthetic Clamping of Hyperalgesic Signaling
  • 批准号:
    10508966
  • 项目类别:
  • 资助金额:
    $45.03万
  • 财政年份:
    2022
  • 负责人:
    Michael J Caterina
  • 依托单位:
Role of a conserved miRNA regulatory axis in neuropathic pain
  • 批准号:
    10159323
  • 项目类别:
  • 资助金额:
    $49.24万
  • 财政年份:
    2018
  • 负责人:
    Michael J Caterina
  • 依托单位:
Neuronal subtype-specific plasticity in the acute to chronic pain transition
  • 批准号:
    8342701
  • 项目类别:
  • 资助金额:
    $63.06万
  • 财政年份:
    2012
  • 负责人:
    Michael J Caterina
  • 依托单位:
Transgenic Regulation of Keratinocyte to Nociceptor Signaling
  • 批准号:
    8449204
  • 项目类别:
  • 资助金额:
    $17.31万
  • 财政年份:
    2012
  • 负责人:
    Michael J Caterina
  • 依托单位:
海外基金