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利用染色质小球来定量检测活细胞内内源性蛋白质浓度的变化。

Chromobodies to Quantify Changes of Endogenous Protein Concentration in Living Cells.

机构信息

Pharmaceutical Biotechnology, Eberhard Karls University Tuebingen, Germany.

Pharmaceutical Biotechnology, Eberhard Karls University Tuebingen, Germany; Natural and Medical Sciences Institute at the University of Tuebingen, Reutlingen, Germany.

出版信息

Mol Cell Proteomics. 2018 Dec;17(12):2518-2533. doi: 10.1074/mcp.TIR118.000914. Epub 2018 Sep 18.

Abstract

Understanding cellular processes requires the determination of dynamic changes in the concentration of genetically nonmodified, endogenous proteins, which, to date, is commonly accomplished by end-point assays Molecular probes such as fluorescently labeled nanobodies (chromobodies, CBs) are powerful tools to visualize the dynamic subcellular localization of endogenous proteins in living cells. Here, we employed the dependence of intracellular levels of chromobodies on the amount of their endogenous antigens, a phenomenon, which we termed antigen-mediated CB stabilization (AMCBS), for simultaneous monitoring of time-resolved changes in the concentration and localization of native proteins. To improve the dynamic range of AMCBS we generated turnover-accelerated CBs and demonstrated their application in visualization and quantification of fast reversible changes in antigen concentration upon compound treatment by quantitative live-cell imaging. We expect that this broadly applicable strategy will enable unprecedented insights into the dynamic regulation of proteins, during cellular signaling, cell differentiation, or upon drug action.

摘要

理解细胞过程需要确定遗传上未修饰的内源性蛋白质浓度的动态变化,迄今为止,这通常通过终点分析来完成。 分子探针,如荧光标记的纳米抗体(chromobodies,CBs),是可视化活细胞中内源性蛋白质动态亚细胞定位的有力工具。 在这里,我们利用 chromobodies 的细胞内水平与其内源性抗原数量的依赖性,即我们称之为抗原介导的 CB 稳定化(AMCBS),来同时监测天然蛋白质浓度和定位的时变变化。 为了提高 AMCBS 的动态范围,我们生成了周转率加速的 CB,并通过定量活细胞成像证明了它们在化合物处理时快速可逆的抗原浓度变化的可视化和定量中的应用。 我们预计,这种广泛适用的策略将使我们能够前所未有地了解细胞信号转导、细胞分化或药物作用过程中蛋白质的动态调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4188/6283300/fa94f988ff63/zjw0121858370007.jpg

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