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细胞穿透五肽(CPP5s):细胞摄取及蛋白质转导活性的测定

Cell-Penetrating Penta-Peptides (CPP5s): Measurement of Cell Entry and Protein-Transduction Activity.

作者信息

Gomez Jose A, Chen Joseph, Ngo Justine, Hajkova Dagmar, Yeh I-Ju, Gama Vivian, Miyagi Masaru, Matsuyama Shigemi

机构信息

Department of Medicine, Division of Hematology/Oncology, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Pharmaceuticals (Basel). 2010 Dec 15;3(12):3594-3613. doi: 10.3390/ph3123594.

Abstract

Previously, we developed cell-penetrating penta-peptides (CPP5s). In the present study, VPTLK and KLPVM, two representative CPP5s, were used to characterize the cell-penetration and protein-transduction activities of these small molecules. Various inhibitors of endocytosis and pinocytosis (chlorpromazine, cytochalasin D, Filipin III, amiloride, methyl-β-cyclodextrin, and nocodazole) were tested. Only cytochalasin D showed suppression of CPP5 entry, though the effect was partial. In addition, CPP5s were able to enter a proteoglycan-deficient CHO cell line. These results suggest that pinocytosis and endocytosis may play only a minor role in the cell entry of CPP5s. By mass spectrometry, we determined that the intracellular concentration of VPTLK ranged from 20 nM to 6.0 μM when the cells were cultured in medium containing 1 μM - 1.6 mM VPTLK. To determine the protein-transduction activity of CPP5s, the Tex-LoxP EG cell line, which has a Cre-inducible green fluorescent protein (GFP) gene, was used. VPTLK and KLPVM were added to the N-terminus of Cre, and these fusion proteins were added to the culture medium of Tex-LoxP EG cells. Both VPTLK-Cre and KLPVM-Cre were able to turn on GFP expression in these cells, suggesting that CPP5s have protein-transduction activity. Since CPP5s have very low cytotoxic activity, even at a concentration of 1.6 mM in the medium, CPP5s could be utilized as a new tool for drug delivery into cells.

摘要

此前,我们开发了细胞穿透性五肽(CPP5s)。在本研究中,使用两种代表性的CPP5s,即VPTLK和KLPVM,来表征这些小分子的细胞穿透和蛋白质转导活性。测试了多种内吞作用和胞饮作用抑制剂(氯丙嗪、细胞松弛素D、菲律宾菌素III、氨氯地平、甲基-β-环糊精和诺考达唑)。只有细胞松弛素D显示出对CPP5进入的抑制作用,尽管效果是部分的。此外,CPP5s能够进入蛋白聚糖缺陷的CHO细胞系。这些结果表明,胞饮作用和内吞作用在CPP5s进入细胞的过程中可能只起次要作用。通过质谱分析,我们确定当细胞在含有1μM - 1.6 mM VPTLK的培养基中培养时,VPTLK的细胞内浓度范围为20 nM至6.0μM。为了确定CPP5s的蛋白质转导活性,使用了具有Cre诱导型绿色荧光蛋白(GFP)基因的Tex-LoxP EG细胞系。将VPTLK和KLPVM添加到Cre的N端,并将这些融合蛋白添加到Tex-LoxP EG细胞的培养基中。VPTLK-Cre和KLPVM-Cre都能够在这些细胞中开启GFP表达,表明CPP5s具有蛋白质转导活性。由于CPP5s即使在培养基中浓度为1.6 mM时也具有非常低的细胞毒性活性,因此CPPs可作为一种将药物递送至细胞的新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63c3/4034068/e3d91961933b/pharmaceuticals-03-03594-g001.jpg

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