Laser-capture microdissection impairs activity-based protein profiles for serine hydrolase in human lung adenocarcinoma.

S. Collaud, T. Wiedl, E. Cattaneo, A. Soltermann, S. Hillinger, W. Weder, S. Arni
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引用次数: 7

Abstract

Laser-capture microdissection (LCM) enables the selection of a specific and pure cell population from a heterogenous tissue such as tumors. Activity-based protein profiling/profile (ABPP) is a chemical technology using enzyme-specific active site-directed probes to read out the functional state of many enzymes directly in any proteome. The aim of this work was to assess the compatibility of LCM with downstream ABPP for serine hydrolase (SH) in human lung adenocarcinoma. Fresh frozen lung adenocarcinoma tissue was stained with hematoxylin, toluidine blue, or methyl green (MG). Proteome from stained tissue was labeled further with SH-directed probes, and ABPPs were determined on a one-dimensional gel-based approach. This allowed us to assess the impact of staining procedures on their ABPPs. The effect of the LCM process on ABPPs was assessed furthermore using MG-stained lung adenocarcinoma tissue. The staining procedures led to strong changes in ABPPs. However, MG staining seemed the most compatible with downstream ABPP. MG-stained, laser-captured, microdissected tissue showed additional change in profiles as a result of the denaturing property of extraction buffer but not to the microdissection process itself. LCM staining procedures but not microdissection per se interfered with downstream ABPP and led to a strong change in ABPPs of SHs in human lung adenocarcinoma.
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激光捕获显微解剖损害了人肺腺癌中丝氨酸水解酶的活性蛋白谱。
激光捕获显微解剖(LCM)能够从异质组织(如肿瘤)中选择特定的纯细胞群。基于活性的蛋白质分析(ABPP)是一种化学技术,使用酶特异性活性位点定向探针直接读取任何蛋白质组中许多酶的功能状态。本研究的目的是评估LCM与下游ABPP对人肺腺癌丝氨酸水解酶(SH)的相容性。新鲜冷冻肺腺癌组织用苏木精、甲苯胺蓝或甲基绿(MG)染色。用sh定向探针进一步标记染色组织的蛋白质组,用一维凝胶法测定ABPPs。这使我们能够评估染色程序对其abpp的影响。利用mg染色的肺腺癌组织进一步评估LCM过程对ABPPs的影响。染色过程导致ABPPs发生强烈变化。然而,MG染色似乎与下游ABPP最相容。mg染色、激光捕获、显微解剖的组织显示了额外的变化,这是提取缓冲液变性特性的结果,而不是显微解剖过程本身的结果。LCM染色过程而非显微解剖本身干扰了下游的ABPP,并导致人肺腺癌中SHs的ABPP发生强烈变化。
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