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Proteomic profiling of metalloprotease activities with cocktails of active-site probes

机译:用活性位点探针混合物对金属蛋白酶活性进行蛋白质组分析

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摘要

Metalloproteases are a large, diverse class of enzymes involved in many physiological and disease processes. Metalloproteases are regulated by post-translational mechanisms that diminish the effectiveness of conventional genomic and proteomic methods for their functional characterization. Chemical probes directed at active sites offer a potential way to measure metalloprotease activities in biological systems; however, large variations in structure limit the scope of any single small-molecule probe aimed at profiling this enzyme class. Here, we address this problem by creating a library of metalloprotease-directed probes that show complementary target selectivity. These probes were applied as a ‘cocktail’ to proteomes and their labeling profiles were analyzed collectively using an advanced liquid chromatography-mass spectrometry platform. More than 20 metalloproteases were identified, including members from nearly all of the major branches of this enzyme class. These findings suggest that chemical proteomic methods can serve as a universal strategy to profile the activity of the metalloprotease superfamily in complex biological systems.
机译:金属蛋白酶是涉及许多生理和疾病过程的一大类多样的酶。金属蛋白酶受翻译后机制的调节,该机制降低了常规基因组和蛋白质组学方法对其功能表征的有效性。针对活性位点的化学探针提供了一种潜在的方法来测量生物系统中的金属蛋白酶活性。然而,结构上的巨大变化限制了任何旨在描述该酶类别的小分子探针的范围。在这里,我们通过创建一个金属蛋白酶导向的探针库解决这个问题,该探针显示出互补的靶标选择性。这些探针被用作蛋白质组的“鸡尾酒”,并使用先进的液相色谱-质谱联用平台共同分析了其标记图谱。鉴定出20多种金属蛋白酶,包括该酶类别几乎所有主要分支的成员。这些发现表明,化学蛋白质组学方法可以作为一种通用策略来描述复杂生物系统中金属蛋白酶超家族的活性。

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