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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Membrane perturbation effects of peptides derived from the N-termini of unprocessed prion proteins
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Membrane perturbation effects of peptides derived from the N-termini of unprocessed prion proteins

机译:未加工的ion病毒蛋白的N末端衍生肽的膜扰动效应

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摘要

Peptides derived from the unprocessed N-termini of mouse and bovine prion proteins (mPrPp and bPrPp, respectively), comprising hydrophobic signal sequences followed by charged domains (KKRPKP), function as cell-penetrating peptides (CPPs) with live cells, concomitantly causing toxicity. Using steady-state fluorescence techniques, including calcein leakage and polarization of a membrane probe (diphenylhexatriene, DPH), as well as circular dichroism, we studied the membrane interactions of the peptides with large unilamellar phospholipid vesicles (LUVs), generally with a 30% negative surface charged density, comparing the effects with those of the CPP penetratin (pAntp) and the pore-forming peptide melittin. The prion peptides caused significant calcein leakage from LUVs concomitant with increased membrane ordering. Fluorescence correlation spectroscopy (FCS) studies of either rhodamine-entrapping (REVs) or rhodamine-labeled (RLVs) vesicles, showed that addition of the prion peptides resulted in significant release of rhodamine from the REVs without affecting the overall integrity of the RLVs. The membrane leakage effects due to the peptides had the following order of potency: melittin > mPrPp > bPrPp > pAntp. The membrane perturbation effects of the N-terminal prion peptides suggest that they form transient pores (similar to melittin) causing toxicity in parallel with their cellular trafficking. (c) 2005 Elsevier B.V. All rights reserved.
机译:源自小鼠和牛病毒蛋白未加工N末端的肽(分别为mPrPp和bPrPp),包含疏水信号序列和带电域(KKRPKP),与活细胞一起作为细胞穿透肽(CPP)起作用,同时引起毒性。使用稳态荧光技术,包括钙黄绿素泄漏和膜探针(二苯基己三烯,DPH)的极化,以及圆二色性,我们研究了肽与大单层磷脂囊泡(LUV)的膜相互作用,通常30%负表面电荷密度,将其与CPP渗透素(pAntp)和成孔肽蜂毒肽的效果进行比较。 ion病毒肽引起大量的钙黄绿素从LUV泄漏,并伴随着膜有序化。荧光相关光谱法(FCS)对若丹明截留(REV)或若丹明标记(RLVs)囊泡的研究表明,添加pr病毒肽会导致罗丹明从REV中大量释放出来,而不会影响RLV的整体完整性。由于肽引起的膜泄漏效应具有以下效力:蜂毒素> mPrPp> bPrPp> pAntp。 N端病毒肽的膜扰动效应表明,它们形成瞬时孔(类似于蜂毒肽),与细胞运输并行,引起毒性。 (c)2005 Elsevier B.V.保留所有权利。

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