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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Peptide-bacteria interactions using engineered surface-immobilized peptides from class IIa bacteriocins
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Peptide-bacteria interactions using engineered surface-immobilized peptides from class IIa bacteriocins

机译:使用IIa类细菌素的表面固定化肽段进行肽-细菌相互作用

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Specificity of the class IIa bacteriocin Leucocin A (LeuA), an antimicrobial peptide active against Gram-positive bacteria, including Listeria monocytogenes, is known to be dictated by the C-terminal amphipathic helical region, including the extended hairpin-like structure. However, its specificity when attached to a substrate has not been investigated. Exploiting properties of LeuA, we have synthesized two LeuA derivatives, which span the amphipathic helical region of the wild-type LeuA, consisting of 14-(14AA LeuA, CWGEAFSAGVHRLA) and 24-amino acid residues (24AA LeuA, CSVNWGEAFSAGVHRLANGGNGFW). The peptides were purified to >95% purity, as shown by analytical RP-HPLC and mass spectrometry. By including an N-terminal cysteine group, the tailored peptide fragments were readily immobilized at the gold interfaces. The resulting thickness and molecular orientation, determined by ellipsometry and grazing angle infrared spectroscopy, respectively, indicated that the peptides were covalently immobilized in a random helical orientation. The bacterial specificity of the anchored peptide fragments was tested against Gram-positive and Gram-negative bacteria. Our results showed that the adsorbed 14AA LeuA exhibited no specificity toward the bacterial strains, whereas the surface-immobilized 24AA LeuA displayed significant binding toward Gram-positive bacteria with various binding affinities from one strain to another. The 14AA LeuA did not show binding as this fragment is most likely too short in length for recognition by the membrane-bound receptor on the target bacterial cell membrane. These results support the potential use of class IIa bacteriocins as molecular recognition elements in biosensing platforms.
机译:已知IIa类细菌素类亮氨酸A(LeuA)是对革兰氏阳性细菌(包括单核细胞增生李斯特菌)具有活性的抗菌肽,其特异性由C端两亲螺旋区(包括延伸的发夹状结构)决定。但是,尚未研究其附着于底物时的特异性。利用LeuA的特性,我们合成了两个LeuA衍生物,它们跨越野生型LeuA的两亲性螺旋区,由14-(14AA LeuA,CWGEAFSAGVHRLA)和24个氨基酸残基(24AA LeuA,CSVNWGEAFSAGVHRLANGGNGFW)组成。如分析型RP-HPLC和质谱所示,将肽纯化至> 95%的纯度。通过包括一个N端半胱氨酸基团,可将定制的肽片段轻松固定在金界面上。分别通过椭圆偏振法和掠射角红外光谱法测定的所得厚度和分子取向表明,肽以随机螺旋取向共价固定。测试了针对革兰氏阳性和革兰氏阴性细菌的锚定肽片段的细菌特异性。我们的结果表明,吸附的14AA LeuA对细菌菌株没有特异性,而表面固定的24AA LeuA对革兰氏阳性细菌显示出显着的结合力,从一种菌株到另一种菌株具有各种结合亲和力。 14AA LeuA没有显示出结合,因为该片段的长度很可能太短,无法被目标细菌细胞膜上的膜结合受体识别。这些结果支持IIa类细菌素在生物传感平台中作为分子识别元件的潜在用途。

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