Clarke D J, Campopiano D J
School of Chemistry, University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, Scotland, UK.
Biochem Soc Trans. 2006 Apr;34(Pt 2):251-6. doi: 10.1042/BST20060251.
Mammals have evolved complex self-defence mechanisms to protect themselves from infection. This innate immune system comprises a large family of hundreds of peptides and proteins which have potent antibiotic activity at nanomolar concentrations. The defensins are a group of small cationic peptides which contain a high proportion of positively charged and hydrophobic amino acids. Their exact mechanism of antimicrobial action is unclear, but it is thought that the defensins bind to and disrupt the outer cell membrane which ultimately causes lysis and cell death. They are characterized by six conserved cysteine residues which oxidize to form three intramolecular disulphide (S-S) bonds. The human and mouse defensins have been subdivided into classes based on their sequence, site of expression and the S-S bond connectivity of the cysteine residues. Alpha-defensins are connected by cysteines 1 and 6, 2 and 4, and 3 and 5, whereas beta-defensins have a 1-5, 2-4 and 3-6 cysteine S-S connectivity. We present our structural and functional studies of a novel mouse beta-defensin-related peptide (Defr1) which contains only five cysteine residues. Synthetic Defr1 was more active than its six-cysteine analogue against a large panel of pathogens. High-resolution MS techniques revealed that Defr1 contains an unusual defensin structure. These studies have guided the design of novel peptides to explore the roles of defensins as antibiotics and as stimulants of the immune response.
哺乳动物已经进化出复杂的自我防御机制来保护自己免受感染。这种先天免疫系统由一个包含数百种肽和蛋白质的大家族组成,这些肽和蛋白质在纳摩尔浓度下具有强大的抗菌活性。防御素是一组小的阳离子肽,含有高比例的带正电荷和疏水的氨基酸。它们确切的抗菌作用机制尚不清楚,但据认为防御素与外细胞膜结合并破坏外细胞膜,最终导致细胞裂解和死亡。它们的特征是有六个保守的半胱氨酸残基,这些残基氧化形成三个分子内二硫键(S-S)。根据其序列、表达位点和半胱氨酸残基的S-S键连接性,人类和小鼠的防御素已被细分为不同类别。α-防御素由半胱氨酸1和6、2和4以及3和5连接,而β-防御素具有1-5、2-4和3-6的半胱氨酸S-S连接性。我们展示了一种新型小鼠β-防御素相关肽(Defr1)的结构和功能研究,该肽仅含有五个半胱氨酸残基。合成的Defr1对一大类病原体的活性比其六半胱氨酸类似物更高。高分辨率质谱技术表明Defr1含有一种不寻常的防御素结构。这些研究指导了新型肽的设计,以探索防御素作为抗生素和免疫反应刺激剂的作用。