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TRPV1 表面表达的荧光标记策略。

Fluorescence labeling strategies for cell surface expression of TRPV1.

机构信息

The University of Texas at Austin , Austin, TX, USA.

Oregon State University , Corvallis, OR, USA.

出版信息

J Gen Physiol. 2024 Oct 7;156(10). doi: 10.1085/jgp.202313523. Epub 2024 Aug 20.

Abstract

Regulation of ion channel expression on the plasma membrane is a major determinant of neuronal excitability, and identifying the underlying mechanisms of this expression is critical to our understanding of neurons. Here, we present two orthogonal strategies to label extracellular sites of the ion channel TRPV1 that minimally perturb its function. We use the amber codon suppression technique to introduce a non-canonical amino acid (ncAA) with tetrazine click chemistry, compatible with a trans-cyclooctene coupled fluorescent dye. Additionally, by inserting the circularly permutated HaloTag (cpHaloTag) in an extracellular loop of TRPV1, we can incorporate a fluorescent dye of our choosing. Optimization of ncAA insertion sites was accomplished by screening residue positions between the S1 and S2 transmembrane domains with elevated missense variants in the human population. We identified T468 as a rapid labeling site (∼5 min) based on functional and biochemical assays in HEK293T/17 cells. Through adapting linker lengths and backbone placement of cpHaloTag on the extracellular side of TRPV1, we generated a fully functional channel construct, TRPV1exCellHalo, with intact wild-type gating properties. We used TRPV1exCellHalo in a single molecule experiment to track TRPV1 on the cell surface and validate studies that show decreased mobility of the channel upon activation. The application of these extracellular label TRPV1 (exCellTRPV1) constructs to track surface localization of the channel will shed significant light on the mechanisms regulating its expression and provide a general scheme to introduce similar modifications to other cell surface receptors.

摘要

离子通道在质膜上的表达调控是神经元兴奋性的主要决定因素,确定这种表达的潜在机制对于我们理解神经元至关重要。在这里,我们提出了两种正交策略来标记离子通道 TRPV1 的细胞外位点,该策略对其功能的干扰最小。我们使用琥珀终止密码子抑制技术引入带有点击化学的非天然氨基酸(ncAA),该 ncAA 与反式环辛烯偶联的荧光染料兼容。此外,通过将环化的 HaloTag(cpHaloTag)插入 TRPV1 的细胞外环,我们可以掺入我们选择的荧光染料。通过在 S1 和 S2 跨膜结构域之间筛选具有人类种群中高错义变异的残基位置,完成了 ncAA 插入位置的优化。基于在 HEK293T/17 细胞中的功能和生化测定,我们确定 T468 是一个快速标记位点(约 5 分钟)。通过调整 cpHaloTag 在 TRPV1 细胞外环上的连接子长度和骨架位置,我们生成了一个功能完整的通道构建体 TRPV1exCellHalo,其具有完整的野生型门控特性。我们在单分子实验中使用 TRPV1exCellHalo 来跟踪细胞表面上的 TRPV1,并验证了那些表明通道激活时其迁移率降低的研究。这些细胞外标记 TRPV1(exCellTRPV1)构建体的应用将极大地揭示调节其表达的机制,并提供一种引入类似修饰到其他细胞表面受体的通用方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f41/11338283/edd1caabf09f/JGP_202313523_Fig1.jpg

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