Chandrababu Karthik Balakrishna, Ho Bow, Yang Daiwen
Department of Chemistry, 3 Science Drive 3, Faculty of Science, National University of Singapore, Singapore 117543.
Biochemistry. 2009 Jul 7;48(26):6052-61. doi: 10.1021/bi900154f.
Human beta defensin-3 (HBD-3) is a unique potent antimicrobial peptide. To explore the importance of the three-dimensional structure of HBD-3 in its activity and selectivity, we have mutated all six cysteine residues of HBD-3 to other amino acids, expressed the mutant (named as Def-A) in Escherichia coli, and analyzed the mutant's activity, structure, and dynamics. Def-A is active against several bacterial strains, but the activity is influenced by the ionic strength of the environment. When subjected to vesicles like POPG or to micelles like SDS, Def-A is changed from a random coil structure to an ordered helical form. We have determined the structure of Def-A in SDS micelle and found that it is folded into two distinct helices separated by a proline kink. We propose that the long N-terminal helix with many hydrophobic residues is inserted inside the micelle while the C-terminal helix with one large positive charge patch is located outside the micelle and interacts with the charged head groups of the micelle. The model is supported by NMR relaxation and H-D exchange data. Our results indicate that in addition to the number of positively charged residues and hydrophobic residues, the arrangement of these residues in the three-dimensional space is important to the antimicrobial selectivity and salt-dependent activity of human beta defensins.
人β-防御素-3(HBD-3)是一种独特的强效抗菌肽。为了探究HBD-3三维结构在其活性和选择性方面的重要性,我们将HBD-3的所有六个半胱氨酸残基突变为其他氨基酸,在大肠杆菌中表达该突变体(命名为Def-A),并分析了该突变体的活性、结构和动力学。Def-A对几种细菌菌株具有活性,但其活性受环境离子强度的影响。当Def-A与如POPG这样的囊泡或如SDS这样的胶束接触时,它会从无规卷曲结构转变为有序的螺旋形式。我们确定了Def-A在SDS胶束中的结构,发现它折叠成两个由脯氨酸扭结隔开的不同螺旋。我们提出,具有许多疏水残基的长N端螺旋插入胶束内部,而带有一个大正电荷斑块的C端螺旋位于胶束外部并与胶束的带电头部基团相互作用。该模型得到了核磁共振弛豫和氢-氘交换数据的支持。我们的结果表明,除了带正电荷残基和疏水残基的数量外,这些残基在三维空间中的排列对人β-防御素的抗菌选择性和盐依赖性活性也很重要。