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单细胞定量分析细胞内弹性蛋白样多肽的转变温度。

Single-Cell Quantification of the Transition Temperature of Intracellular Elastin-like Polypeptides.

机构信息

Department of Pharmacology and Pharmaceutical Sciences, School of Pharmacy of the University of Southern California, 1985 Zonal Avenue, Los Angeles, California 90089, United States.

Roski Eye Institute, Department of Ophthalmology, Keck School of Medicine of the University of Southern California, 1450 San Pablo Street, Los Angeles, California 90033, United States.

出版信息

ACS Biomater Sci Eng. 2021 Feb 8;7(2):428-440. doi: 10.1021/acsbiomaterials.0c01117. Epub 2021 Jan 14.

Abstract

Elastin-like polypeptides (ELPs) are modular, stimuli-responsive materials that self-assemble into protein-rich microdomains in response to heating. By cloning ELPs to effector proteins, expressed intracellular fusions can even modulate cellular pathways. A critical step in engineering these fusions is to determine and control their intracellular phase transition temperature (). To do so, this Method paper describes a simple live-cell imaging technique to estimate the of non-fluorescent ELP fusion proteins by co-transfection with a fluorescent ELP marker. Intracellular microdomain formation can then be visualized in live cells through the co-assembly of the non-fluorescent and fluorescent ELP fusion proteins. If the two ELP fusions have different , the intracellular ELP mixture phase separates at the temperature corresponding to the fusion with the lower . In addition, co-assembled ELP microdomains often exhibit pronounced differences in size or number, compared to single transfected treatments. These features enable live-cell imaging experiments and image analysis to determine the intracellular of a library of related ELP fusions. As a case study, we employ the recently reported Caveolin1-ELP library (CAV1-ELPs). In addition to providing a detailed protocol, we also report the development of a useful FIJI plugin named SIAL (Simple Image Analysis Library), which contains programs for image randomization and blinding, phenotype scoring, and ROI selection. These tasks are important parts of the protocol detailed here and are also commonly employed in other image analysis workflows.

摘要

弹性蛋白样多肽 (ELPs) 是模块化的、对刺激有反应的材料,可在受热时自组装成富含蛋白质的微区。通过将 ELPs 克隆到效应蛋白上,表达的细胞内融合体甚至可以调节细胞途径。工程这些融合体的关键步骤是确定和控制它们的细胞内相变温度 ( )。为此,本文描述了一种简单的活细胞成像技术,通过与荧光 ELP 标记物共转染来估计非荧光 ELP 融合蛋白的 。然后可以通过非荧光和荧光 ELP 融合蛋白的共组装在活细胞中可视化细胞内微区的形成。如果两个 ELP 融合体具有不同的 ,则细胞内的 ELP 混合物会在与较低 融合体对应的温度下相分离。此外,与单转染处理相比,共组装的 ELP 微区通常在大小或数量上表现出明显的差异。这些特征使活细胞成像实验和图像分析能够确定相关 ELP 融合文库的细胞内 。作为案例研究,我们使用最近报道的窖蛋白 1-ELP 文库 (CAV1-ELPs)。除了提供详细的方案外,我们还报告了一个名为 SIAL(Simple Image Analysis Library)的有用 FIJI 插件的开发,该插件包含用于图像随机化和屏蔽、表型评分和 ROI 选择的程序。这些任务是本文详细介绍的方案的重要组成部分,也是其他图像分析工作流程中常用的任务。

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