Department of Chemistry and Biochemistry, University of Arizona, 1306 E University Boulevard, Tucson, AZ 85721, USA.
Chembiochem. 2011 Oct 17;12(15):2353-64. doi: 10.1002/cbic.201100372. Epub 2011 Aug 17.
Caspases play a central role in apoptosis, differentiation, and proliferation, and represent important therapeutic targets for treating cancer and inflammatory disorders. Toward the goal of developing new tools to probe caspase substrate cleavage specificity as well as to systematically interrogate caspase activation pathways, we have constructed and investigated a comprehensive panel of caspase biosensors with a split-luciferase enabled bioluminescent read out. We first interrogated the panel of caspase biosensors for substrate cleavage specificity of caspase 1-10 in widely utilized in vitro translation systems, namely, rabbit reticulocyte lysate (RRL) and wheat germ extract (WGE). Commercial RRL was found to be unsuitable for investigating caspase specificity, owing to surprising levels of endogenous caspase activity, while specificity profiles of the caspase sensors in WGE agree very well with traditional peptide probes. The full panel of biosensors was utilized for studying caspase activation and inhibition in several mammalian cytosolic extracts, clearly demonstrating that they can be utilized to directly monitor activation or inhibition of procaspase 3/7. Furthermore, the complete panel of caspase biosensors also provided new insights into caspase activation pathways wherein we surprisingly discovered the activation of procaspase 3/7 by caspase 4/5.
半胱天冬酶在细胞凋亡、分化和增殖中起着核心作用,是治疗癌症和炎症性疾病的重要治疗靶点。为了开发新的工具来研究半胱天冬酶底物切割特异性,并系统研究半胱天冬酶激活途径,我们构建并研究了一组综合的 caspase 生物传感器,这些传感器具有可进行生物发光读取的分离荧光素酶。我们首先在广泛使用的体外翻译系统,即兔网织红细胞裂解物(RRL)和小麦胚芽提取物(WGE)中,对半胱天冬酶生物传感器进行了 1-10 号半胱天冬酶的底物切割特异性检测。由于内源性半胱天冬酶活性水平出人意料,因此发现商用 RRL 不适合研究半胱天冬酶特异性,而 WGE 中半胱天冬酶传感器的特异性图谱与传统肽探针非常吻合。该生物传感器组被用于研究几种哺乳动物胞质提取物中的半胱天冬酶激活和抑制情况,这清楚地表明它们可用于直接监测原半胱天冬酶 3/7 的激活或抑制。此外,完整的半胱天冬酶生物传感器组还为半胱天冬酶激活途径提供了新的见解,我们惊奇地发现半胱天冬酶 4/5 可激活原半胱天冬酶 3/7。