Nishikawa Masanobu, Ogawa Ken'ichi
Research Institute for Biological Sciences, Okayama (RIBS), 7549-1 Kayo-cho, Okayama 716-1241, Japan.
Antimicrob Agents Chemother. 2004 Jan;48(1):229-35. doi: 10.1128/AAC.48.1.229-235.2004.
We have recently developed a convenient method of screening a broad range of microorganisms that produce epsilon-poly-L-lysine (M. Nishikawa and K. Ogawa, Appl. Environ. Microbiol. 68:3575-3581, 2002). Using this method, we found an ergot fungus that secretes a charged polypeptide other than epsilon-poly-L-lysine. It was identified as a new species on the basis of its 28S rRNA sequence and was named Verticillium kibiense (formerly Epichloe kibiensis). Peptide sequencing and mass spectrometry revealed that the polypeptide is a linear peptide composed of repeated units of arginyl-histidine. The numbers of repeated units were in most cases five and in some cases four or six. This peptide showed activity against a broad range of bacteria and fungi but lost its activity under conditions of high ionic strength. Zinc and copper ions specifically changed the circular dichroism spectra of the peptide and restored the antimicrobial activity from abrogation under high ionic conditions, although these ions had no reinforcing effect on antimicrobial activity when they were added to solutions at a low ionic strength. The peptide labeled with fluorescein was able to permeate the cell membranes of target microbes, but its ability to permeate cell membranes decreased under conditions of high ionic strength. This decreased ability was partially recovered specifically by the addition of zinc and copper ions. These results indicate that poly(arginyl-histidine) is a cationic polypeptide characterized by specific metal binding and resistance to salts.
我们最近开发了一种便捷的方法,用于筛选多种能产生ε-聚-L-赖氨酸的微生物(西川真和小川健,《应用与环境微生物学》68:3575 - 3581,2002年)。利用该方法,我们发现了一种麦角真菌,它能分泌除ε-聚-L-赖氨酸之外的一种带电荷的多肽。基于其28S rRNA序列,它被鉴定为一个新物种,并被命名为基比黄萎病菌(以前称为基比麦角菌)。肽测序和质谱分析表明,该多肽是一种由精氨酰-组氨酸重复单元组成的线性肽。重复单元的数量在大多数情况下为五个,在某些情况下为四个或六个。这种肽对多种细菌和真菌具有活性,但在高离子强度条件下会失去活性。锌离子和铜离子能特异性地改变该肽的圆二色光谱,并在高离子条件下从失活状态恢复抗菌活性,尽管当它们以低离子强度添加到溶液中时,这些离子对抗菌活性没有增强作用。用荧光素标记的该肽能够穿透靶微生物的细胞膜,但其穿透细胞膜的能力在高离子强度条件下会降低。通过添加锌离子和铜离子可部分特异性地恢复这种降低的能力。这些结果表明,聚(精氨酰-组氨酸)是一种具有特定金属结合特性和耐盐性的阳离子多肽。