Gosalia Dhaval N, Salisbury Cleo M, Maly Dustin J, Ellman Jonathan A, Diamond Scott L
Department of Bioengineering, Institute for Medicine and Engineering, University of Pennsylvania, PA, USA.
Proteomics. 2005 Apr;5(5):1292-8. doi: 10.1002/pmic.200401011.
A novel microarray-based proteolytic profiling assay enabled the rapid determination of protease substrate specificities with minimal sample and enzyme usage. A 722-member library of fluorogenic protease substrates of the general format Ac-Ala-X-X-(Arg/Lys)-coumarin was synthesized and microarrayed, along with fluorescent calibration standards, in glycerol nanodroplets on microscope slides. The arrays were then activated by deposition of an aerosolized enzyme solution, followed by incubation and fluorometric scanning. The specificities of human blood serine proteases (human thrombin, factor Xa, plasmin, and urokinase plasminogen activator) were examined. The arrays provided complete maps of protease specificity for all of the substrates tested and allowed for detection of cooperative interactions between substrate subsites. The arrays were further utilized to explore the conservation of thrombin specificity across species by comparing the proteolytic fingerprints of human, bovine, and salmon thrombin. These enzymes share nearly identical specificity profiles despite approximately 390 million years of divergent evolution. Fluorogenic substrate microarrays provide a rapid way to determine protease substrate specificity information that can be used for the design of selective inhibitors and substrates, the study of evolutionary divergence, and potentially, for diagnostic applications.
一种基于微阵列的新型蛋白水解分析方法,能够以最少的样品和酶用量快速测定蛋白酶底物特异性。合成了一个由722个成员组成的通用格式为Ac-Ala-X-X-(Arg/Lys)-香豆素的荧光蛋白酶底物文库,并与荧光校准标准品一起在载玻片上的甘油纳米液滴中进行微阵列化。然后通过沉积雾化酶溶液激活阵列,接着进行孵育和荧光扫描。检测了人血丝氨酸蛋白酶(人凝血酶、因子Xa、纤溶酶和尿激酶型纤溶酶原激活剂)的特异性。该阵列提供了所有测试底物的蛋白酶特异性完整图谱,并能够检测底物亚位点之间的协同相互作用。通过比较人、牛和鲑鱼凝血酶的蛋白水解指纹图谱,进一步利用该阵列探索了不同物种间凝血酶特异性的保守性。尽管经过了约3.9亿年的分化进化,但这些酶的特异性谱几乎相同。荧光底物微阵列提供了一种快速确定蛋白酶底物特异性信息的方法,可用于设计选择性抑制剂和底物、研究进化差异,并有可能用于诊断应用。