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首页> 外文期刊>Molecular biotechnology >Effect of a Flexible Linker on Recombinant Expression of Cell-Penetrating Peptide Fusion Proteins and Their Translocation into Fungal Cells
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Effect of a Flexible Linker on Recombinant Expression of Cell-Penetrating Peptide Fusion Proteins and Their Translocation into Fungal Cells

机译:柔性接头对细胞穿透肽融合蛋白重组表达及其向真菌细胞内转运的影响

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摘要

Cell-penetrating peptides (CPPs) are a class of small peptides that are able to cross cell membranes via direct translocation or endocytosis. They have been widely used to deliver tethered bioactive molecules to cells, but recombinantly producing CPPs as fusions to protein cargo leads to low yields. We used Escherichia coli cells to recombinantly produce genetic fusions of NPFSD (derived from a yeast endocytosis signal) and pVEC (derived from a murine vascular endothelium cadherin) to the N-terminus of green fluorescent protein (GFP) with and without a flexible glycine-serine linker between the CPP and GFP. The flexible linker improved the expression of the NPFSD construct and the pVEC construct, resulting in a 24.5 % improvement in yield for the NPFSD fusion and a 50.0 % improvement in yield for the pVEC fusion. The linker did not diminish the ability of the fusions to translocate into the fungal pathogen Candida albicans, and the translocation of the NPFSD constructs actually increased by 58 % at 10 min. Moreover, the toxicity of the fusions towards C. albicans was not affected by the incorporation of the linker. These results illustrate the utility of including a linker for CPP-cargo fusions and the potential of NPFSD and pVEC fusions for use in delivering protein cargo to C. albicans.
机译:细胞穿透肽(CPPs)是一类小肽,能够通过直接易位或内吞作用穿过细胞膜。它们已被广泛用于将束缚的生物活性分子递送至细胞,但由于与蛋白货物的融合而重组产生CPP导致产量降低。我们使用大肠杆菌细胞重组产生NPFSD(源自酵母内吞信号)和pVEC(源自鼠血管内皮钙黏着蛋白)与绿色荧光蛋白(GFP)N末端的遗传融合体,带有或不带有柔性甘氨酸- CPP和GFP之间的丝氨酸接头。柔性接头改善了NPSFD构建体和pVEC构建体的表达,导致NPSFD融合体的产率提高了24.5%,而pVEC融合体的产率提高了50.0%。接头没有减弱融合物转移到真菌病原体白色念珠菌中的能力,并且NPSFD构建体的转移实际上在10分钟时增加了58%。此外,融合体对白色念珠菌的毒性不受接头掺入的影响。这些结果说明了包括用于CPP-货物融合的接头的实用性,以及NPFSD和pVEC融合在将蛋白货物递送至白色念珠菌中的潜力。

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