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亚细胞结构域细胞质蛋白复合物在微结构化聚合物基底上的动态免疫图案化。

Subcellular Dynamic Immunopatterning of Cytosolic Protein Complexes on Microstructured Polymer Substrates.

机构信息

University of Applied Sciences Upper Austria, School of Engineering, 4600 Wels, Austria.

Austrian Competence Centre for Feed and Food Quality, Safety & Innovation, Head Office: FFoQSI GmbH, Technopark 1C, 3430 Tulln, Austria.

出版信息

ACS Sens. 2021 Nov 26;6(11):4076-4088. doi: 10.1021/acssensors.1c01574. Epub 2021 Oct 15.

Abstract

Analysis of protein-protein interactions in living cells by protein micropatterning is currently limited to the spatial arrangement of transmembrane proteins and their corresponding downstream molecules. Here, we present a robust and straightforward method for dynamic immunopatterning of cytosolic protein complexes by use of an artificial transmembrane bait construct in combination with microstructured antibody arrays on cyclic olefin polymer substrates. As a proof, the method was used to characterize Grb2-mediated signaling pathways downstream of the epidermal growth factor receptor (EGFR). Ternary protein complexes (Shc1:Grb2:SOS1 and Grb2:Gab1:PI3K) were identified, and we found that EGFR downstream signaling is based on constitutively bound (Grb2:SOS1 and Grb2:Gab1) as well as on agonist-dependent protein associations with transient interaction properties (Grb2:Shc1 and Grb2:PI3K). Spatiotemporal analysis further revealed significant differences in stability and exchange kinetics of protein interactions. Furthermore, we could show that this approach is well suited to study the efficacy and specificity of SH2 and SH3 protein domain inhibitors in a live cell context. Altogether, this method represents a significant enhancement of quantitative subcellular micropatterning approaches as an alternative to standard biochemical analyses.

摘要

在活细胞中通过蛋白质微图案化分析蛋白质-蛋白质相互作用目前仅限于跨膜蛋白及其相应的下游分子的空间排列。在这里,我们提出了一种稳健而直接的方法,通过使用人工跨膜诱饵构建体与环状烯烃聚合物基底上的微结构抗体阵列,对细胞溶质蛋白复合物进行动态免疫图案化。作为证明,该方法用于表征表皮生长因子受体 (EGFR) 下游的 Grb2 介导的信号通路。鉴定出了三元蛋白复合物 (Shc1:Grb2:SOS1 和 Grb2:Gab1:PI3K),我们发现 EGFR 下游信号基于持续结合 (Grb2:SOS1 和 Grb2:Gab1) 以及激动剂依赖性具有瞬时相互作用特性的蛋白缔合 (Grb2:Shc1 和 Grb2:PI3K)。时空分析进一步显示出蛋白相互作用的稳定性和交换动力学的显著差异。此外,我们可以证明这种方法非常适合在活细胞环境中研究 SH2 和 SH3 蛋白结构域抑制剂的功效和特异性。总的来说,这种方法代表了对定量亚细胞微图案化方法的重大改进,是标准生化分析的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adce/8630788/e047e31046fe/se1c01574_0002.jpg

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