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利用新型荧光全细胞检测法对烟草蚀纹病毒蛋白酶进行底物谱分析。

Substrate profiling of tobacco etch virus protease using a novel fluorescence-assisted whole-cell assay.

机构信息

Department of Molecular Biotechnology, School of Biotechnology, Royal Institute of Technology KTH, Stockholm, Sweden.

出版信息

PLoS One. 2011 Jan 18;6(1):e16136. doi: 10.1371/journal.pone.0016136.

Abstract

Site-specific proteolysis of proteins plays an important role in many cellular functions and is often key to the virulence of infectious organisms. Efficient methods for characterization of proteases and their substrates will therefore help us understand these fundamental processes and thereby hopefully point towards new therapeutic strategies. Here, a novel whole-cell in vivo method was used to investigate the substrate preference of the sequence specific tobacco etch virus protease (TEVp). The assay, which utilizes protease-mediated intracellular rescue of genetically encoded short-lived fluorescent substrate reporters to enhance the fluorescence of the entire cell, allowed subtle differences in the processing efficiency of closely related substrate peptides to be detected. Quantitative screening of large combinatorial substrate libraries, through flow cytometry analysis and cell sorting, enabled identification of optimal substrates for TEVp. The peptide, ENLYFQG, identical to the protease's natural substrate peptide, emerged as a strong consensus cleavage sequence, and position P3 (tyrosine, Y) and P1 (glutamine, Q) within the substrate peptide were confirmed as being the most important specificity determinants. In position P1', glycine (G), serine (S), cysteine (C), alanine (A) and arginine (R) were among the most prevalent residues observed, all known to generate functional TEVp substrates and largely in line with other published studies stating that there is a strong preference for short aliphatic residues in this position. Interestingly, given the complex hydrogen-bonding network that the P6 glutamate (E) is engaged in within the substrate-enzyme complex, an unexpectedly relaxed residue preference was revealed for this position, which has not been reported earlier. Thus, in the light of our results, we believe that our assay, besides enabling protease substrate profiling, also may serve as a highly competitive platform for directed evolution of proteases and their substrates.

摘要

蛋白质的位点特异性蛋白水解在许多细胞功能中起着重要作用,通常是感染性生物体毒力的关键。因此,高效的蛋白酶及其底物的表征方法将有助于我们理解这些基本过程,并希望为新的治疗策略指明方向。在这里,使用了一种新的全细胞体内方法来研究序列特异性烟草蚀纹病毒蛋白酶 (TEVp) 的底物偏好性。该测定法利用蛋白酶介导的遗传编码的短寿命荧光底物报告物的细胞内拯救来增强整个细胞的荧光,从而可以检测到密切相关的底物肽的加工效率的细微差异。通过流式细胞术分析和细胞分选对大型组合底物文库进行定量筛选,可鉴定 TEVp 的最佳底物。与蛋白酶的天然底物肽相同的肽 ENLYFQG 成为强共识切割序列,并且底物肽中的位置 P3(酪氨酸,Y)和 P1(谷氨酰胺,Q)被确认为最重要的特异性决定因素。在位置 P1',观察到最常见的残基包括甘氨酸 (G)、丝氨酸 (S)、半胱氨酸 (C)、丙氨酸 (A) 和精氨酸 (R),它们都已知可生成功能性 TEVp 底物,与其他发表的研究一致,即该位置强烈偏好短脂肪族残基。有趣的是,考虑到 P6 谷氨酸 (E) 在底物-酶复合物中参与的复杂氢键网络,对该位置的残基偏好性出人意料地放宽,这在以前的报道中尚未提及。因此,根据我们的结果,我们认为我们的测定法除了能够进行蛋白酶底物分析外,还可以作为蛋白酶及其底物的定向进化的极具竞争力的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0ab/3022733/33462ac7d0a2/pone.0016136.g001.jpg

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