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微流控迁移率变动分析实时分析肽 N-棕榈酰化。

Microfluidic Mobility Shift Assay for Real-Time Analysis of Peptide N-Palmitoylation.

机构信息

1 Department of Chemistry, Imperial College London, London, UK.

2 Cancer Research UK Cancer Therapeutics Unit, The Institute of Cancer Research, London, UK.

出版信息

SLAS Discov. 2017 Apr;22(4):418-424. doi: 10.1177/2472555216689529. Epub 2017 Jan 31.

Abstract

The Hedgehog pathway is a key developmental signaling pathway but is also implicated in many types of cancer. The extracellular signaling protein Sonic hedgehog (Shh) requires dual lipidation for functional signaling, whereby N-terminal palmitoylation is performed by the enzyme Hedgehog acyltransferase (Hhat). Hhat is an attractive target for small-molecule inhibition to arrest Hedgehog signaling, and methods for assaying Hhat activity are central to understanding its function. However, all existing assays to quantify lipidation of peptides suffer limitations, such as safety hazards, high costs, extensive manual handling, restriction to stopped-assay measurements, or indirect assessment of lipidation. To address these limitations, we developed a microfluidic mobility shift assay (MSA) to analyze Shh palmitoylation. MSA allowed separation of fluorescently labeled Shh amine-substrate and palmitoylated Shh amide-product peptides based on differences in charge and hydrodynamic radius, coupled with online fluorescence intensity measurements for quantification. The MSA format was employed to study Hhat-catalyzed reactions, investigate Hhat kinetics, and determine small-molecule inhibitor IC values. Both real-time and stopped assays were performed, with the latter achieved via addition of excess unlabeled Shh peptide. The MSA format therefore allows direct and real-time fluorescence-based measurement of acylation and represents a powerful alternative technique in the study of N-lipidation.

摘要

刺猬通路是一个关键的发育信号通路,但也与许多类型的癌症有关。细胞外信号蛋白 Sonic hedgehog (Shh) 需要双脂化才能发挥功能信号,其中 N 端棕榈酰化由 Hedgehog acyltransferase (Hhat) 酶完成。Hhat 是小分子抑制的一个有吸引力的靶点,以阻止 Hedgehog 信号,测定 Hhat 活性的方法是理解其功能的关键。然而,所有现有的用于定量肽类脂化的测定方法都存在局限性,例如安全隐患、高成本、大量的手动操作、限于停止测定的测量,或间接评估脂化。为了解决这些局限性,我们开发了一种微流控迁移率变化分析 (MSA) 来分析 Shh 的棕榈酰化。MSA 允许根据电荷和流体力学半径的差异分离荧光标记的 Shh 胺底物和棕榈酰化的 Shh 酰胺产物肽,并结合在线荧光强度测量进行定量。该 MSA 格式用于研究 Hhat 催化反应、研究 Hhat 动力学,并确定小分子抑制剂的 IC 值。进行了实时和停止测定,后者通过添加过量的未标记的 Shh 肽来实现。因此,MSA 格式允许直接实时进行基于荧光的酰化测量,是 N-脂化研究的一种强大替代技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6af3/5453399/007a6594b811/10.1177_2472555216689529-fig1.jpg

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