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用于单细胞中活性酶空间分辨测量的化学探针。

Chemical probes for spatially resolved measurement of active enzymes in single cells.

作者信息

Li Gang, Moellering Raymond E

机构信息

Department of Chemistry, The University of Chicago, Chicago, IL, United States; Institute for Genomics and Systems Biology, The University of Chicago, Chicago, IL, United States.

Department of Chemistry, The University of Chicago, Chicago, IL, United States; Institute for Genomics and Systems Biology, The University of Chicago, Chicago, IL, United States.

出版信息

Methods Enzymol. 2019;628:243-262. doi: 10.1016/bs.mie.2019.06.017. Epub 2019 Jul 12.

Abstract

Ongoing advances in chemical proteomic methods have facilitated detection and quantification of enzymatic activity, a highly informative parameter that is not captured in protein abundance measurements. However, some biological questions remain unanswered, since current gel- or LC-MS/MS-based detection methods suffer from limitations stemming from sample homogenization, signal-averaging, and an inherent bias toward abundant proteins. To address these shortcomings, we recently developed an activity-based proximity ligation (ADPL) platform to capture and quantify enzyme activity on the level of single cells, with high intra- and intercellular spatial resolution. In this chapter, we briefly discuss the rationale behind the ADPL platform, the design transition from the initial "sandwich-complex" workflow to the optimized, "direct conjugate" ADPL method, and conclude with detailed protocols for each. We also describe our novel use of the homo-bifunctional linker, disuccinimidyl suberate (DSS), to conjugate proteins and oligonucleotides, thus generating the necessary antibody-oligonucleotide recognition reagents for ADPL. Finally, we demonstrate the utility of ADPL to characterize enzyme activity from cytosol to nucleus, and specifically detect enzyme activity using "direct conjugate" ADPL.

摘要

化学蛋白质组学方法的不断进步促进了酶活性的检测和定量,酶活性是一个高度信息丰富的参数,在蛋白质丰度测量中无法获取。然而,一些生物学问题仍未得到解答,因为目前基于凝胶或液相色谱-串联质谱的检测方法存在样本匀浆、信号平均以及对丰富蛋白质的固有偏向性等局限性。为了解决这些缺点,我们最近开发了一种基于活性的邻近连接(ADPL)平台,以在单细胞水平上捕获和定量酶活性,具有高细胞内和细胞间空间分辨率。在本章中,我们简要讨论ADPL平台背后的原理、从最初的“三明治复合物”工作流程到优化的“直接偶联”ADPL方法的设计转变,并以各自的详细方案作为结尾。我们还描述了我们对同型双功能连接剂辛二酸二琥珀酰亚胺酯(DSS)的新用途,用于偶联蛋白质和寡核苷酸,从而生成ADPL所需的抗体-寡核苷酸识别试剂。最后,我们展示了ADPL在表征从细胞质到细胞核的酶活性方面的效用,并具体使用“直接偶联”ADPL检测酶活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b12/7745195/d896fd7e4a48/nihms-1631218-f0001.jpg

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