von Horsten Hans Henning, Schäfer Bettina, Kirchhoff Christiane
IHF Institute for Hormone and Fertility Research at the University of Hamburg, Hamburg, Germany.
Peptides. 2004 Aug;25(8):1223-33. doi: 10.1016/j.peptides.2004.05.016.
A human caput epididymidal cDNA, HE2C, was cloned based on its homology to the known chimpanzee counterpart, suggesting that the encoded beta-defensin-like peptide represented a conserved component of the innate epididymidal epithelial defense system in primates. An approximately 6kDa HE2- related peptide was co-purified together with other HE2 isoforms from human seminal plasma by affinity chromatography. By its antibody reactivity as shown by Western blot analysis, this peptide was distinct from the more abundant HE2 isoforms and was concluded to correspond to HE2C. Similar to other HE2-encoded isoforms, the endogenous HE2C was proteolytically processed from a larger precursor by a furin-like prohormone convertase. This was confirmed by N-terminal sequencing. In order to study the structural and functional properties of HE2C it was recombinantly expressed in insect cells. Post-translational processing also occurred within these cells, yielding the mature processed HE2C peptide. Correct disulfide bonding of the recHE2C peptide was shown by p-aminophenylarsineoxide(PAPAO)-agarose binding assay. Purified recHE2C strongly bound to Escherichia coli DH5alpha and Bacillus subtilis; however, it did not exhibit microbicidal activity when tested in a radial diffusion assay against these bacteria. Different from the previously described beta-defensins, the mature HE2C peptide has an anionic pI and an algebraic net charge of -1. Also, it lacks the amphipathic transitions, which, according to the Shai-Matzusaki-Huang model, are prerequisite for the membranolytic activity of antimicrobial peptides.
基于与已知黑猩猩对应物的同源性,克隆了一种人类附睾头部的cDNA,即HE2C,这表明所编码的β-防御素样肽是灵长类动物附睾上皮先天性防御系统的一个保守组成部分。通过亲和层析从人精浆中与其他HE2同工型一起共纯化出一种约6kDa的HE2相关肽。通过蛋白质印迹分析显示的抗体反应性,该肽与更丰富的HE2同工型不同,得出其对应于HE2C的结论。与其他HE2编码的同工型类似,内源性HE2C由一种弗林蛋白酶样激素原转化酶从更大的前体蛋白进行蛋白水解加工。这通过N端测序得到证实。为了研究HE2C的结构和功能特性,在昆虫细胞中进行了重组表达。翻译后加工也在这些细胞内发生,产生成熟的加工后的HE2C肽。对氨基苯胂酸氧化物(PAPAO)-琼脂糖结合试验表明重组HE2C肽形成了正确的二硫键。纯化的重组HE2C与大肠杆菌DH5α和枯草芽孢杆菌强烈结合;然而,在针对这些细菌的径向扩散试验中进行测试时,它没有表现出杀菌活性。与先前描述的β-防御素不同,成熟的HE2C肽具有阴离子pI和-1的代数净电荷。此外,它缺乏两亲性转变,根据沙伊-松崎-黄模型,这是抗菌肽膜溶解活性的先决条件。