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基于免疫细胞化学的人源癌症和成纤维细胞中 FOXO 异构体的检测。

Immunocytochemistry-Based Detection of FOXO Isoforms in Human Cancer and Fibroblasts.

机构信息

Sols-Morreale Biomedical Research Institute (IIBM), Spanish National Research Council (CSIC), Universidad Autónoma de Madrid (UAM), Madrid, Spain.

ABC-RI, Algarve Biomedical Center Research Institute, Algarve Biomedical Center, Faro, Portugal.

出版信息

Methods Mol Biol. 2025;2871:171-176. doi: 10.1007/978-1-0716-4217-7_16.

Abstract

In mammals, the FOXO protein family consists of four distinct isoforms: FOXO1, FOXO3, FOXO4, and FOXO6. These isoforms are key players in a wide spectrum of physiological and pathological processes, including context-specific tumor suppression. FOXO3, in particular, has emerged as a gene associated with extraordinary human longevity. While these four FOXO isoforms share common biological functions, the mechanisms underlying their overlapping and distinct roles remain less understood. It is believed that intrinsic properties and context-dependent factors contribute to isoform-specific and nonredundant FOXO functions. One promising avenue for unraveling the commonalities and specificities of these proteins involves characterizing their expression patterns in specific cell types and their activation in response to different stimuli. To facilitate this, we have developed immunocytochemistry methods capable of detecting FOXO isoforms in a highly specific manner within various human cancer cell types and fibroblasts. Importantly, this approach enables the visualization of endogenous FOXO proteins as they translocate into the cell nucleus in response to different stimuli. In this article, we present a comprehensive guide to these procedures, offering valuable insights into the distinct roles of FOXO isoforms in cellular function.

摘要

在哺乳动物中,FOXO 蛋白家族由四个不同的亚型组成:FOXO1、FOXO3、FOXO4 和 FOXO6。这些亚型是广泛的生理和病理过程中的关键参与者,包括特定于背景的肿瘤抑制。特别是 FOXO3 已成为与人类非凡长寿相关的基因。虽然这四个 FOXO 亚型具有共同的生物学功能,但它们重叠和独特作用的机制仍不太清楚。据信,内在特性和依赖于上下文的因素促成了亚型特异性和非冗余的 FOXO 功能。一个有前途的途径来揭示这些蛋白质的共性和特异性是通过描述它们在特定细胞类型中的表达模式及其对不同刺激的激活。为此,我们开发了免疫细胞化学方法,能够以高度特异性的方式检测各种人类癌细胞和成纤维细胞中的 FOXO 亚型。重要的是,这种方法能够可视化内源性 FOXO 蛋白,因为它们响应不同的刺激而转位到细胞核中。在本文中,我们提供了这些程序的综合指南,深入了解 FOXO 亚型在细胞功能中的不同作用。

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