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A rapid and high content assay that measures cyto-ID-stained autophagic compartments and estimates autophagy flux with potential clinical applications

机译:一种快速高含量的测定方法可测量细胞ID染色的自噬区室并评估潜在的临床应用中的自噬通量

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摘要

The lack of a rapid and quantitative autophagy assay has substantially hindered the development and implementation of autophagy-targeting therapies for a variety of human diseases. To address this critical issue, we developed a novel autophagy assay using the newly developed Cyto-ID fluorescence dye. We first verified that the Cyto-ID dye specifically labels autophagic compartments with minimal staining of lysosomes and endosomes. We then developed a new Cyto-ID fluorescence spectrophotometric assay that makes it possible to estimate autophagy flux based on measurements of the Cyto-ID-stained autophagic compartments. By comparing to traditional autophagy approaches, we found that this assay yielded a more sensitive, yet less variable, quantification of the stained autophagic compartments and the estimate of autophagy flux. Furthermore, we tested the potential application of this autophagy assay in high throughput research by integrating it into an RNA interference (RNAi) screen and a small molecule screen. The RNAi screen revealed WNK2 and MAP3K6 as autophagy-modulating genes, both of which inhibited the MTOR pathway. Similarly, the small molecule screen identified sanguinarine and actinomycin D as potent autophagy inducers in leukemic cells. Moreover, we successfully detected autophagy responses to kinase inhibitors and chloroquine in normal or leukemic mice using this assay. Collectively, this new Cyto-ID fluorescence spectrophotometric assay provides a rapid, reliable quantification of autophagic compartments and estimation of autophagy flux with potential applications in developing autophagy-related therapies and as a test to monitor autophagy responses in patients being treated with autophagy-modulating drugs.
机译:缺乏快速和定量的自噬测定法已经严重阻碍了针对多种人类疾病的自噬靶向疗法的开发和实施。为了解决这个关键问题,我们使用新开发的Cyto-ID荧光染料开发了一种新颖的自噬测定法。我们首先验证了Cyto-ID染料以最小的溶酶体和内涵体染色特异性标记自噬区室。然后,我们开发了一种新的Cyto-ID荧光分光光度法测定法,该测定法可以根据对Cyto-ID染色的自噬区室的测量来估计自噬通量。通过与传统的自噬方法进行比较,我们发现该测定法对染色的自噬区室和自噬通量的估计值进行了更为灵敏但可变性较小的量化。此外,我们通过将其整合到RNA干扰(RNAi)筛选和小分子筛选中,测试了这种自噬测定在高通量研究中的潜在应用。 RNAi筛选显示WNK2和MAP3K6为自噬调节基因,两者均抑制MTOR途径。同样,小分子筛查确定血红素碱和放线菌素D是白血病细胞中有效的自噬诱导剂。此外,我们使用此测定法成功检测了正常或白血病小鼠中对激酶抑制剂和氯喹的自噬反应。总的来说,这种新的Cyto-ID荧光分光光度法能够快速,可靠地量化自噬区室并估计自噬通量,在开发自噬相关疗法方面具有潜在的应用价值,并且可以监测自噬调节药物治疗患者的自噬反应。

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