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用于高通量筛选细胞内蛋白酶及其细胞调节剂的激活剂或抑制剂的多功能测定法。

Versatile assays for high throughput screening for activators or inhibitors of intracellular proteases and their cellular regulators.

机构信息

Burnham Institute for Medical Research, La Jolla, California, USA.

出版信息

PLoS One. 2009 Oct 30;4(10):e7655. doi: 10.1371/journal.pone.0007655.

Abstract

BACKGROUND

Intracellular proteases constitute a class of promising drug discovery targets. Methods for high throughput screening against these targets are generally limited to in vitro biochemical assays that can suffer many technical limitations, as well as failing to capture the biological context of proteases within the cellular pathways that lead to their activation. METHODS #ENTITYSTARTX00026;

FINDINGS

We describe here a versatile system for reconstituting protease activation networks in yeast and assaying the activity of these pathways using a cleavable transcription factor substrate in conjunction with reporter gene read-outs. The utility of these versatile assay components and their application for screening strategies was validated for all ten human Caspases, a family of intracellular proteases involved in cell death and inflammation, including implementation of assays for high throughput screening (HTS) of chemical libraries and functional screening of cDNA libraries. The versatility of the technology was also demonstrated for human autophagins, cysteine proteases involved in autophagy.

CONCLUSIONS

Altogether, the yeast-based systems described here for monitoring activity of ectopically expressed mammalian proteases provide a fascile platform for functional genomics and chemical library screening.

摘要

背景

细胞内蛋白酶构成了一类有前途的药物发现靶标。针对这些靶标的高通量筛选方法通常仅限于体外生化测定,这些方法可能存在许多技术限制,并且无法捕捉到导致蛋白酶激活的细胞途径中蛋白酶的生物学背景。

方法

我们在这里描述了一种在酵母中重新构建蛋白酶激活网络的通用系统,并使用可切割转录因子底物和报告基因读数来检测这些途径的活性。这些通用测定组件的实用性及其在筛选策略中的应用已针对涉及细胞死亡和炎症的十种人类 Caspases(一种细胞内蛋白酶家族)进行了验证,包括实施化学文库的高通量筛选 (HTS) 和 cDNA 文库的功能筛选。该技术的多功能性也已在人类自噬素(参与自噬的半胱氨酸蛋白酶)中得到证明。

结论

总的来说,这里描述的用于监测异位表达的哺乳动物蛋白酶活性的酵母系统为功能基因组学和化学文库筛选提供了一个简单的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e64e/2764853/fb6684700282/pone.0007655.g001.jpg

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