Koszałka Patrycja, Kamysz Elżbieta, Wejda Magdalena, Kamysz Wojciech, Bigda Jacek
Department of Cell Biology, Faculty of Medical Biotechnology, Medical University of Gdansk, Gdańsk, Poland.
Acta Biochim Pol. 2011;58(1):111-7. Epub 2011 Mar 14.
We investigated cytotoxic activity of antimicrobial peptides of different origin (both naturally occurring and synthetic), structure and known mechanisms of action against human histiocytic lymphoma cell line U937. The strongest cytotoxic activity against U937 cell line was shown by Pexiganan MSI-78, followed by Citropin 1.1, Protegrin 1 and a synthetic lipopeptide, N-α-palmitoyl-L-lysyl-L-lysine amide (Pal-Lys-Lys-NH₂). The cytotoxic activity of the peptides was more dependent on the time of incubation than concentration. Only for the lipopeptide, whose mode of action was restricted to disruption of electric potential of the cell membrane, the correlation between cytotoxicity and concentration was almost linear. The high cytotoxicity of Pexiganan MSI-78, Protegrin 1 and the lipopeptide could be basically explained by their membranolytic activity leading to necrosis. However, in the case of Citropin 1.1, the cell membrane integrity was disrupted only slightly and independently of the peptide concentration. Therefore, some other mechanism of action might be responsible for its strong dose-dependent cytotoxic activity, e.g., membranolytic activity leading to apoptosis. Furthermore, TNF-α production due to LPS (lipopolysaccharide) stimulation was suppressed by the presence of Citropin 1.1, Pexiganan MSI-78 or Protegrin 1, but not by Buforin 2 or the lipopeptide. Our experiments have shown that cytotoxic activity is not limited to some specific molecular structure of a peptide, but rather to the length of the peptide chain as it is likely to affect the efficiency of the tumor cell membrane disruption and interaction with LPS.
我们研究了不同来源(天然存在的和合成的)、结构以及已知作用机制的抗菌肽对人组织细胞淋巴瘤细胞系U937的细胞毒性活性。Pexiganan MSI - 78对U937细胞系表现出最强的细胞毒性活性,其次是Citropin 1.1、Protegrin 1和一种合成脂肽N-α-棕榈酰-L-赖氨酰-L-赖氨酸酰胺(Pal-Lys-Lys-NH₂)。肽的细胞毒性活性对孵育时间的依赖性大于浓度。仅对于作用方式限于破坏细胞膜电位的脂肽,细胞毒性与浓度之间的相关性几乎呈线性。Pexiganan MSI - 78、Protegrin 1和脂肽的高细胞毒性基本上可以通过它们导致坏死的膜溶解活性来解释。然而,在Citropin 1.1的情况下,细胞膜完整性仅轻微受损且与肽浓度无关。因此,可能是其他作用机制导致其强烈的剂量依赖性细胞毒性活性,例如导致凋亡的膜溶解活性。此外,Citropin 1.1、Pexiganan MSI - 78或Protegrin 1的存在会抑制脂多糖(LPS)刺激引起的TNF-α产生,但Buforin 2或脂肽则不会。我们的实验表明,细胞毒性活性并不局限于肽的某些特定分子结构,而是与肽链长度有关,因为肽链长度可能会影响肿瘤细胞膜破坏的效率以及与LPS的相互作用。