Sciani Juliana Mozer, Vigerelli Hugo, Costa André Santos, Câmara Diana Aparecida Dias, Junior Paulo Luiz-de-Sá, Pimenta Daniel Carvalho
Laboratório de Bioquímica e Biofísica, Instituto Butantan, São Paulo, Brazil.
Laboratório de Genética, Instituto Butantan, São Paulo, Brazil.
J Pept Sci. 2017 Jan;23(1):68-76. doi: 10.1002/psc.2965. Epub 2017 Jan 5.
Efficient drug delivery systems are currently one of the greatest challenges in pharmacokinetics, and the transposition of the gap between in vitro candidate molecule and in vivo test drug is, sometimes, poles apart. In this sense, the cell-penetrating peptides (CPP) may be the bridge uniting these worlds. Here, we describe a technique to rapidly identify unlabeled CPPs after incubation with liposomes, based on commercial desalting (size exclusion) columns and liquid chromatography-MS/MS, for peptide de novo sequencing. Using this approach, we found it possible to identify one new CPP - interestingly, a classical bradykinin-potentiating peptide - in the peptide-rich low molecular mass fraction of the Bothrops jararaca venom, which was also able to penetrate live cell membranes, as confirmed by classical approaches employing fluorescence-labeled analogues of this CPP. Moreover, both the labeled and unlabeled CPPs caused no metabolic, cell-cycle or morphologic alterations, proving to be unmistakably cargo deliverers and not drugs themselves. In sum, we have developed and validated a method for screening label-free peptides for CPP activity, regardless of their biological origin, which could lead to the identification of new and more efficient drug delivery systems. Copyright © 2017 European Peptide Society and John Wiley & Sons, Ltd.
高效药物递送系统目前是药代动力学领域最大的挑战之一,体外候选分子与体内测试药物之间的差距转换有时相差甚远。从这个意义上讲,细胞穿透肽(CPP)可能是连接这两个世界的桥梁。在此,我们描述了一种基于商业脱盐(尺寸排阻)柱和液相色谱 - 串联质谱法进行肽从头测序的技术,用于在与脂质体孵育后快速鉴定未标记的CPP。使用这种方法,我们发现在巴西矛头蝮蛇毒富含肽的低分子量部分中能够鉴定出一种新的CPP——有趣的是,一种经典的缓激肽增强肽,采用该CPP的荧光标记类似物的经典方法证实其也能够穿透活细胞膜。此外,标记和未标记的CPP均未引起代谢、细胞周期或形态学改变,证明它们无疑是货物递送者而非药物本身。总之,我们已经开发并验证了一种用于筛选具有CPP活性的无标记肽的方法,无论其生物学来源如何,这可能会导致鉴定出新的、更高效的药物递送系统。版权所有©2017欧洲肽学会和约翰·威利父子有限公司。