Ruissen A L, Groenink J, Helmerhorst E J, Walgreen-Weterings E, Van't Hof W, Veerman E C, Nieuw Amerongen A V
Academic Centre for Dentistry Amsterdam (ACTA), Department of Dental Basic Sciences, Section of Oral Biochemistry, Van der Boechorststraat 7, 1081 BT Amsterdam, The Netherlands.
Biochem J. 2001 Jun 1;356(Pt 2):361-8. doi: 10.1042/0264-6021:3560361.
Three anti-microbial peptides were compared with respect to their killing activity against Candida albicans and their ability to disturb its cellular and internal membranes. Histatin 5 is an anti-fungal peptide occurring naturally in human saliva, while dhvar4 and dhvar5 are variants of its active domain, with increased anti-microbial activity. dhvar4 has increased amphipathicity compared with histatin 5, whereas dhvar5 has amphipathicity comparable with that of histatin 5. All three peptides caused depolarization of the cytoplasmic and/or mitochondrial membrane, indicating membranolytic activity. For the variant peptides both depolarization and killing occurred at a faster rate. With FITC-labelled peptides, no association with the cytoplasmic membrane was observed, contradicting the formation of permanent transmembrane multimeric peptide pores. Instead, the peptides were internalized and act on internal membranes, as demonstrated with mitochondrion- and vacuole-specific markers. In comparison with histatin 5, the variant peptides showed a more destructive effect on mitochondria. Entry of the peptides and subsequent killing were dependent on the metabolic state of the cells. Blocking of the mitochondrial activity led to complete protection against histatin 5 activity, whereas that of dhvar4 was hardly affected and that of dhvar5 was affected only intermediately.
比较了三种抗菌肽对白色念珠菌的杀伤活性及其干扰其细胞膜和内膜的能力。组蛋白5是一种天然存在于人类唾液中的抗真菌肽,而dhvar4和dhvar5是其活性结构域的变体,具有增强的抗菌活性。与组蛋白5相比,dhvar4的两亲性增加,而dhvar5的两亲性与组蛋白5相当。所有三种肽都导致细胞质膜和/或线粒体膜去极化,表明具有膜溶解活性。对于变体肽,去极化和杀伤都以更快的速度发生。用异硫氰酸荧光素标记的肽未观察到与细胞质膜的结合,这与形成永久性跨膜多聚体肽孔相矛盾。相反,这些肽被内化并作用于内膜,线粒体和液泡特异性标记物证明了这一点。与组蛋白5相比,变体肽对线粒体具有更大的破坏作用。肽的进入和随后的杀伤取决于细胞的代谢状态。线粒体活性的阻断导致对组蛋白5活性的完全保护,而dhvar4的活性几乎不受影响,dhvar5的活性仅受到中等程度的影响。