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A Femtomol Range FRET Biosensor Reports Exceedingly Low Levels of Cell Surface Furin: Implications for the Processing of Anthrax Protective Antigen

机译:Femtomol范围FRET生物传感器报告的细胞表面弗林蛋白酶水平过低:对炭疽保护性抗原的加工意义

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摘要

Furin, a specialized endoproteinase, transforms proproteins into biologically active proteins. Furin function is important for normal cells and also in multiple pathologies including malignancy and anthrax. Furin is believed to cycle between the Golgi compartment and the cell surface. Processing of anthrax protective antigen-83 (PA83) by the cells is considered thus far as evidence for the presence of substantial levels of cell-surface furin. To monitor furin, we designed a cleavage-activated FRET biosensor in which the Enhanced Cyan and Yellow Fluorescent Proteins were linked by the peptide sequence SNSRKKR↓STSAGP derived from anthrax PA83. Both because of the sensitivity and selectivity of the anthrax sequence to furin proteolysis and the FRET-based detection, the biosensor recorded the femtomolar levels of furin in the in vitro reactions and cell-based assays. Using the biosensor that was cell-impermeable because of its size and also by other relevant methods, we determined that exceedingly low levels, if any, of cell-surface furin are present in the intact cells and in the cells with the enforced furin overexpression. This observation was in a sharp contrast with the existing concepts about the furin presentation on cell surfaces and anthrax disease mechanism. We next demonstrated using cell-based tests that PA83, in fact, was processed by furin in the extracellular milieu and that only then the resulting PA63 bound the anthrax toxin cell-surface receptors. We also determined that the biosensor, but not the conventional peptide substrates, allowed continuous monitoring of furin activity in cancer cell extracts. Our results suggest that there are no physiologically-relevant levels of cell-surface furin and, accordingly, that the mechanisms of anthrax should be re-investigated. In addition, the availability of the biosensor is a foundation for non-invasive monitoring of furin activity in cancer cells. Conceptually, the biosensor we developed may serve as a prototype for other proteinase-activated biosensors.
机译:弗林蛋白酶是一种专门的内蛋白酶,可将前蛋白转变为具有生物活性的蛋白。弗林蛋白酶功能对正常细胞以及包括恶性肿瘤和炭疽在内的多种病理都很重要。弗林蛋白酶被认为在高尔基体和细胞表面之间循环。迄今为止,认为细胞对炭疽保护性抗原83(PA83)的加工是存在大量细胞表面弗林蛋白酶的证据。为了监测弗林蛋白酶,我们设计了一种裂解激活的FRET生物传感器,其中增强的青色和黄色荧光蛋白通过炭疽PA83衍生的肽序列SNSRKKR↓STSAGP连接。由于炭疽序列对弗林蛋白酶水解的敏感性和选择性以及基于FRET的检测,该生物传感器在体外反应和基于细胞的测定中记录了弗林蛋白酶的飞摩尔水平。使用由于其大小而不能透过细胞的生物传感器以及其他相关方法,我们确定完整细胞和强迫性弗林蛋白酶过度表达的细胞中是否存在极低水平的细胞表面弗林蛋白酶。该观察结果与关于弗林蛋白酶在细胞表面呈递和炭疽病发病机理的现有观念形成鲜明对比。接下来,我们使用基于细胞的测试证明,PA83实际上是弗林蛋白酶在细胞外环境中加工的,只有得到的PA63才与炭疽毒素细胞表面受体结合。我们还确定生物传感器而不是常规的肽底物能够连续监测癌细胞提取物中弗林蛋白酶的活性。我们的结果表明,细胞表面弗林蛋白酶没有生理相关的水平,因此,炭疽的机制应重新研究。另外,生物传感器的可用性是无创监测癌细胞中弗林蛋白酶活性的基础。从概念上讲,我们开发的生物传感器可以作为其他蛋白酶激活生物传感器的原型。

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