Kawasaki Hiroaki, Koyama Takumi, Conlon J Michael, Yamakura Fumiyuki, Iwamuro Shawichi
Department of Biology, Faculty of Science, Toho University, Funabashi, Chiba, Japan.
Biochimie. 2008 Nov-Dec;90(11-12):1693-702. doi: 10.1016/j.biochi.2008.07.003. Epub 2008 Jul 24.
Previous studies have led to the isolation of histone H2B with antibacterial properties from an extract of the skin of the Schlegel's green tree frog Rhacophorus schlegelii and it is now demonstrated that the intact peptide is released into norepinephrine-stimulated skin secretions. In order to investigate the mechanism of action of this peptide, a maltose-binding protein (MBP)-fused histone H2B (MBP-H2B) conjugate was prepared and subjected to antimicrobial assay. The fusion protein showed bacteriostatic activity against Escherichia coli strain JCM5491 with a minimum inhibitory concentration of 11 microM. The lysate prepared from JCM5491 cells was capable of fragmenting MBP-H2B within the histone H2B region, but the lysate from the outer membrane proteinase T (OmpT) gene-deleted BL21(DE3) cells was not. FITC-labeled MBP-H2B (FITC-MBP-H2B) penetrated into the bacterial cell membrane of JCM5491 and ompT-transformed BL21(DE3) cells, but not into ompT-deleted BL21(DE3) cells. Gel retardation assay using MBP-H2B-deletion mutants indicated that MBP-H2B bound to DNA at a site within the N-terminal region of histone H2B. Consequently, it is proposed that the antimicrobial action of histone H2B involves, at least in part, penetration of an OmpT-produced N-terminal histone H2B fragment into the bacterial cell membrane with subsequent inhibition of cell functions.
先前的研究已从施氏树蛙(Rhacophorus schlegelii)的皮肤提取物中分离出具有抗菌特性的组蛋白H2B,现在已证明完整的肽会释放到去甲肾上腺素刺激的皮肤分泌物中。为了研究该肽的作用机制,制备了麦芽糖结合蛋白(MBP)融合的组蛋白H2B(MBP-H2B)缀合物并进行抗菌测定。该融合蛋白对大肠杆菌菌株JCM5491具有抑菌活性,最低抑菌浓度为11微摩尔。从JCM5491细胞制备的裂解物能够在组蛋白H2B区域内切割MBP-H2B,但来自外膜蛋白酶T(OmpT)基因缺失的BL21(DE3)细胞的裂解物则不能。异硫氰酸荧光素标记的MBP-H2B(FITC-MBP-H2B)可穿透JCM5491和ompT转化的BL21(DE3)细胞的细菌细胞膜,但不能穿透ompT缺失的BL21(DE3)细胞。使用MBP-H2B缺失突变体的凝胶阻滞试验表明,MBP-H2B在组蛋白H2B N端区域内的一个位点与DNA结合。因此,有人提出组蛋白H2B的抗菌作用至少部分涉及OmpT产生的N端组蛋白H2B片段穿透细菌细胞膜,随后抑制细胞功能。