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使用ImageJ软件确定肽诱导的亚微米级囊泡膜间断的位置

Location of Peptide-Induced Submicron Discontinuities in the Membranes of Vesicles Using ImageJ.

作者信息

Karal Mohammad Abu Sayem, Ahamed Md Kabir, Ahmed Marzuk, Ahamed Shareef, Mahbub Zaid Bin

机构信息

Department of Physics, Bangladesh University of Engineering and Technology, Dhaka, 1000, Bangladesh.

Department of Mathematics and Physics, North South University, Dhaka, 1229, Bangladesh.

出版信息

J Fluoresc. 2020 Jul;30(4):735-740. doi: 10.1007/s10895-020-02560-9. Epub 2020 May 29.

Abstract

Cell penetrating peptide transportan 10 and antimicrobial peptide melittin formed submicron pores in the lipid membranes of vesicles which are explained by the leakage of water-soluble fluorescent probes from the inside of vesicles to the outside. It is hypothesized that these submicron pores induce submicron discontinuities in the membranes. Considering this hypothesis, a technique has developed to locate the submicron discontinuities in the membranes of giant unilamellar vesicles (GUVs) using ImageJ. In this technique, at first the edges of membrane of a 'single GUV' are detected and then these edges are used to locate the submicron discontinuities. Two continuous rings are observed after applying the ImageJ in GUVs which indicated the edges of membrane. In contrast, the submicron discontinuations are detected at the edges of transportan 10 and melittin induced pore formed membranes. This investigation might be helpful for the elucidation of mechanism of the peptide-induced pore formation in the membranes of vesicles.

摘要

细胞穿透肽转运蛋白10和抗菌肽蜂毒素在囊泡的脂质膜中形成亚微米级的孔,这可通过水溶性荧光探针从囊泡内部泄漏到外部来解释。据推测,这些亚微米级的孔会在膜中引起亚微米级的不连续。考虑到这一假设,已开发出一种使用ImageJ来定位巨型单层囊泡(GUV)膜中亚微米级不连续的技术。在该技术中,首先检测“单个GUV”膜的边缘,然后利用这些边缘来定位亚微米级不连续。在对GUV应用ImageJ后观察到两个连续的环,这表明了膜的边缘。相比之下,在转运蛋白10和蜂毒素诱导形成孔的膜的边缘检测到亚微米级不连续。这项研究可能有助于阐明肽诱导囊泡膜中孔形成的机制。

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