Section of Microbiology, University of Copenhagen, DK-2100, Copenhagen, Denmark.
Department of Biotechnology and Biomedicine, Technical University of Denmark, DK-2800, Lyngby, Denmark.
Microb Biotechnol. 2020 Jul;13(4):984-996. doi: 10.1111/1751-7915.13541. Epub 2020 Feb 28.
Microbial conversion through enzymatic reactions has received a lot of attention as a cost-effective and environmentally friendly way to recover amino acids and short peptides from keratin materials. However, accurate assessment of microbial keratinase activity is not straightforward, and current available methods lack sensitivity and standardization. Here, we suggest an optimized Azokeratin assay, with substrate generated directly from azo-dyed raw keratin material. We introduced supernatant filtration in the protocol for optimal stopping of keratinase reactions instead of the widely used trichloroacetic acid (TCA), as it generated biases and impacted the sensitivity. We furthermore suggest a method for standardization of keratinase activity signals using proteinase K, a well-known keratinase, as a reference enabling reproducibility between studies. Lastly, we evaluated our developed method with several bacterial isolates through benchmarking against a commercial assay (Keratin Azure). Under different setups, the Azokeratin method was more sensitive than commonly used Keratin Azure-based assays (3-fold). We argue that this method could be applied with any type of keratin substrate, enabling more robust and sensitive results which can be used for further comparison with other studies, thus representing an important progress within the field of microbial keratin degradation.
通过酶反应进行微生物转化作为一种从角蛋白材料中回收氨基酸和短肽的经济有效且环保的方法,受到了广泛关注。然而,准确评估微生物角蛋白酶的活性并不简单,并且当前可用的方法缺乏灵敏度和标准化。在这里,我们建议一种优化的偶氮角蛋白测定法,该方法的底物直接由偶氮染料的原始角蛋白材料生成。我们在方案中引入了上清液过滤,以取代广泛使用的三氯乙酸 (TCA) 来优化角蛋白酶反应的停止,因为 TCA 会产生偏差并影响灵敏度。此外,我们还建议使用蛋白水解酶(一种已知的角蛋白酶)作为参考,标准化角蛋白酶活性信号的方法,从而实现研究之间的可重复性。最后,我们通过与商业测定法(角蛋白天青)的基准测试,用几种细菌分离株评估了我们开发的方法。在不同的设置下,偶氮角蛋白法比常用的基于角蛋白天青的测定法(3 倍)更灵敏。我们认为,该方法可应用于任何类型的角蛋白底物,从而获得更稳健和灵敏的结果,可用于与其他研究进行进一步比较,因此代表了微生物角蛋白降解领域的重要进展。