Yeh T M, Chao S C, Chang H C
Department of Medical Technology and Microbiology, National Cheng Kung University, Tainan, Taiwan, R.O.C.
Zhonghua Min Guo Wei Sheng Wu Ji Mian Yi Xue Za Zhi. 1994 Aug;27(3):120-32.
The bactericidal/permeability-increasing protein (BPI) of polymorphonuclear leukocytes is a potent antibacterial agent specific for gram-negative bacteria. BPI can bind to lipopolysaccharide (LPS) and neutralize its toxicity. However, little is known about the specific site and mechanisms of the BPI involved in this LPS binding and antibacterial activities. This study compared the amino acid sequences among BPI, cecropin A, magainin 2, and polymyxin B, and identified a common structure among these four bactericidal agents. They share a basic amphipathic alpha helix motif (Baah). A short peptide that represents amino acids 90-101 of BPI was then synthesized to test if it possessed any LPS binding and antibacterial activities. Results from in vitro lymphocyte culture indicated this peptide was able to inhibit LPS-induced lymphocyte proliferation, suggesting that it may interact with LPS. This LPS binding ability of BPI peptide 90-101 was further supported by the results from HPLC assays which showed the mobility of the peptide shifted in the presence of LPS. Furthermore, the antibacterial spectra of this peptide and cecropin peptide 1-11 were very similar to that of polymyxin B, even though the antibacterial activities of these two peptides were less potent than that of polymyxin B. In addition, the antibacterial activities of these two peptides and polymyxin B were inhibited by free LPS or a high concentration of MgCl2. These results thus suggest that a common structure (Baah) and antibacterial mechanism may be involved in these antibacterial agents.
多形核白细胞的杀菌/通透性增加蛋白(BPI)是一种对革兰氏阴性菌具有特异性的强效抗菌剂。BPI可与脂多糖(LPS)结合并中和其毒性。然而,关于BPI参与这种LPS结合和抗菌活性的具体位点和机制知之甚少。本研究比较了BPI、天蚕素A、蛙皮素2和多粘菌素B之间的氨基酸序列,并确定了这四种杀菌剂之间的共同结构。它们共享一个基本的两亲性α螺旋基序(Baah)。然后合成了一段代表BPI第90 - 101位氨基酸的短肽,以测试其是否具有任何LPS结合和抗菌活性。体外淋巴细胞培养结果表明,该肽能够抑制LPS诱导的淋巴细胞增殖,提示其可能与LPS相互作用。HPLC分析结果进一步支持了BPI 90 - 101肽的这种LPS结合能力,结果显示在LPS存在下该肽的迁移率发生了变化。此外,该肽和天蚕素肽1 - 11的抗菌谱与多粘菌素B非常相似,尽管这两种肽的抗菌活性不如多粘菌素B强。此外,游离LPS或高浓度的MgCl2可抑制这两种肽和多粘菌素B的抗菌活性。因此,这些结果表明这些抗菌剂可能涉及一种共同的结构(Baah)和抗菌机制。