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杂合天蚕素A-蜂毒素抗菌肽CA(1-8)M(1-18)在单核细胞系RAW 264.7中诱导一氧化氮合酶2(NOS2)表达是由短暂且可逆的质膜通透引发的。

The induction of NOS2 expression by the hybrid cecropin A-melittin antibiotic peptide CA(1-8)M(1-18) in the monocytic line RAW 264.7 is triggered by a temporary and reversible plasma membrane permeation.

作者信息

Arias Cristina, Guizy Miriam, Luque-Ortega Juan R, Guerrero Esther, de la Torre Beatriz G, Andreu David, Rivas Luis, Valenzuela Carmen

机构信息

Institute of Pharmacology and Toxicology, CSIC/UCM, School of Medicine, Universidad Complutense, 28040 Madrid, Spain.

出版信息

Biochim Biophys Acta. 2006 Jan;1763(1):110-9. doi: 10.1016/j.bbamcr.2005.11.003. Epub 2005 Dec 9.

DOI:10.1016/j.bbamcr.2005.11.003
PMID:16377003
Abstract

There is an increasing awareness of immune cell modulation by antimicrobial peptides. While this process often requires specific receptors for the peptides involved, several reports point out to a receptor-independent process. The cecropin A-melittin hybrid peptide CA(1-8)M(1-18) (KWKLFKKIGIGAVLKVLTTGLPALIS-amide) modifies gene expression in the macrophage line RAW 264.7 in the absence of any previous macrophage priming, suggesting a membrane permeation process. To further analyze the initial steps of this mechanism, we have studied the interaction of the peptide with these cells. Below 2 microM, CA(1-8)M(1-18) causes a concentration-dependent membrane depolarization partially reversible with time. At 2 microM, the accumulation of the SYTOX green vital dye is one half of that achieved with 0.05% Triton X-100. The binding level, as assessed by fluorescein-labeled CA(1-8)M(1-18), varies from 7.7+/-1.2 to 37.4+/-3.9 x 10(6) molecules/cell over a 0.5-4.0 microM concentration range. Electrophysiological experiments with 0.5 microM CA(1-8)M(1-18), a concentration that triggers maximal NOS2 expression and minimal toxicity, show a reversible current induction in the RAW 264.7 plasma membrane that is maintained as far as peptide is present. This activation of the macrophage involves the production of nitric oxide, a metabolite lethal for many pathogens that results from unspecific membrane permeation by antimicrobial peptides, and represents a new mode of action that may open new therapeutic possibilities for these compounds against intracellular pathogens.

摘要

人们对抗菌肽调节免疫细胞的认识日益加深。虽然这一过程通常需要所涉及肽的特异性受体,但一些报告指出存在不依赖受体的过程。天蚕素A - 蜂毒肽杂合肽CA(1 - 8)M(1 - 18)(KWKLFKKIGIGAVLKVLTTGLPALIS - 酰胺)在未对巨噬细胞进行任何预先激活的情况下,就能改变巨噬细胞系RAW 264.7中的基因表达,这表明存在膜渗透过程。为了进一步分析该机制的初始步骤,我们研究了该肽与这些细胞的相互作用。在2 microM以下,CA(1 - 8)M(1 - 18)会引起浓度依赖性的膜去极化,且随时间部分可逆。在2 microM时,SYTOX绿色活性染料的积累量是用0.05% Triton X - 100处理时的一半。通过荧光素标记的CA(1 - 8)M(1 - 18)评估的结合水平,在0.5 - 4.0 microM浓度范围内,从7.7±1.2到37.4±3.9×10(6)个分子/细胞不等。用0.5 microM CA(1 - 8)M(1 - 18)进行的电生理实验表明,该浓度能触发最大的NOS2表达且毒性最小,在RAW 264.7质膜中会诱导出可逆电流,只要肽存在,电流就会持续。巨噬细胞的这种激活涉及一氧化氮的产生,一氧化氮是一种对许多病原体具有致死性的代谢产物,它是由抗菌肽非特异性膜渗透导致的,代表了一种新的作用模式,可能为这些化合物对抗细胞内病原体开辟新的治疗可能性。

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