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适体的脂质特异性膜相互作用与细胞毒性。

Lipid Specific Membrane Interaction of Aptamers and Cytotoxicity.

作者信息

Ashrafuzzaman Md, AlMansour Hanouf A M, AlOtaibi Maha A S, Khan Zahid, Shaik Gouse M

机构信息

Biochemistry Department, Science College, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Membranes (Basel). 2021 Dec 27;12(1):37. doi: 10.3390/membranes12010037.

Abstract

We aim to discover diagnostic tools to detect phosphatidylserine (PS) externalization on apoptotic cell surface using PS binding aptamers, AAAGAC and TAAAGA, and hence to understand chemotherapy drug efficacy when inducing apoptosis into cancer cells. The entropic fragment-based approach designed aptamers have been investigated to inspect three aspects: lipid specificity in aptamers' membrane binding and bilayer physical properties-induced regulation of binding mechanisms, the apoptosis-induced cancer cell surface binding of aptamers, and the aptamer-induced cytotoxicity. The liposome binding assays show preferred membrane binding of aptamers due to presence of PS in predominantly phosphatidylcholine-contained liposomes. Two membrane stiffness reducing amphiphiles triton X-100 and capsaicin were found to enhance membrane's aptamer adsorption suggesting that bilayer physical properties influence membrane's adsorption of drugs. Microscopic images of fluorescence-tagged aptamer treated LoVo cells show strong fluorescence intensity only if apoptosis is induced. Aptamers find enhanced PS molecules to bind with on the surface of apoptotic over nonapoptotic cells. In cytotoxicity experiments, TAAAGA (over poor PS binding aptamer CAGAAAAAAAC) was found cytotoxic towards RBL cells due to perhaps binding with nonapoptotic externalized PS randomly and thus slowly breaching plasma membrane integrity. In these three experimental investigations, we found aptamers to act on membranes at comparable concentrations and specifically with PS binding manner. Earlier, we reported the origins of actions through molecular mechanism studies-aptamers interact with lipids using mainly charge-based interactions. Lipids and aptamers hold distinguishable charge properties, and hence, lipid-aptamer association follows distinguishable energetics due to electrostatic and van der Waals interactions. We discover that our PS binding aptamers, due to lipid-specific interactions, appear as diagnostic tools capable of detecting drug-induced apoptosis in cancer cells.

摘要

我们旨在利用磷脂酰丝氨酸(PS)结合适体AAAGAC和TAAAGA发现诊断工具,以检测凋亡细胞表面的PS外化,从而了解化疗药物诱导癌细胞凋亡时的疗效。基于熵片段的方法设计的适体已被研究以考察三个方面:适体膜结合中的脂质特异性以及双层物理性质对结合机制的诱导调节、适体诱导凋亡的癌细胞表面结合以及适体诱导的细胞毒性。脂质体结合试验表明,由于主要含磷脂酰胆碱的脂质体中存在PS,适体具有优先的膜结合能力。发现两种降低膜硬度的两亲物曲拉通X-100和辣椒素可增强膜对适体的吸附,这表明双层物理性质会影响膜对药物的吸附。荧光标记适体处理的LoVo细胞的显微镜图像显示,只有在诱导凋亡时才会有强荧光强度。与非凋亡细胞相比,适体在凋亡细胞表面发现更多可结合的PS分子。在细胞毒性实验中,发现TAAAGA(相对于PS结合能力较差的适体CAGAAAAAAAC)对RBL细胞具有细胞毒性,这可能是由于它随机结合非凋亡外化的PS,从而缓慢破坏质膜完整性。在这三项实验研究中,我们发现适体在相当的浓度下作用于膜,且以与PS特异性结合的方式。此前,我们通过分子机制研究报道了其作用起源——适体主要通过基于电荷的相互作用与脂质相互作用。脂质和适体具有不同的电荷性质,因此,由于静电和范德华相互作用,脂质-适体结合遵循不同的能量学。我们发现,由于脂质特异性相互作用,我们的PS结合适体可作为检测癌细胞中药物诱导凋亡的诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a55f/8780203/c37c6ad34f37/membranes-12-00037-g001.jpg

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