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首页> 外文期刊>The Journal of Experimental Biology >Cloning, characterization and expression of escapin, a broadly antimicrobial FAD-containing L-amino acid oxidase from ink of the sea hare Aplysia californica
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Cloning, characterization and expression of escapin, a broadly antimicrobial FAD-containing L-amino acid oxidase from ink of the sea hare Aplysia californica

机译:从海兔Aplysia californica的墨水中分离出一种具有广泛FAD抗菌作用的L-氨基酸氧化酶-escapin,进行克隆,鉴定和表达

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A 60 kDa monomeric protein isolated from the defensive purple ink secretion of the sea hare Aplysia californica was cloned and sequenced, and is the first sea hare antimicrobial protein to be functionally expressed in E. coli. Sequence analysis suggested that this protein is a flavin-containing l-amino acid oxidase (LAAO), with one predicted potential glycosylation site, although the glycosylation could not be experimentally confirmed. This protein, which we call ;escapin', has high sequence similarity to several other gastropod proteins. Escapin was verified by NMR, mass spectroscopy and HPLC to have FAD as its flavin cofactor. Escapin's antimicrobial effects, bacteriostasis and bactericidal, were determined using a combination of two assays: (1) incubation of bacteria on solid media followed by assessment of inhibition by direct observation of zones of inhibition or by turbidity measurements; and (2) incubation of bacteria in liquid media followed by counting viable colonies after growing on agar plates. Native escapin inhibited the growth of Gram-positive and Gram-negative bacteria, including marine bacteria (Vibrio harveyii and Staphylococcus aureus) and pathogenic bacteria (Staphylococcus aureus, Streptococcus pyogenes and Pseudomonas aeruginosa). Escapin also inhibited the growth of yeast and fungi, with different efficacies. Escapin's antimicrobial activity was concentration dependent and did not decrease when stored for more than 5 months at room temperature. Escapin was bacteriostatic and not bactericidal in minimal media (e.g. salt media) with glucose, yeast extract, and a mixture of 20 amino acids each at 50 micromol l(-1), but was bactericidal in media enriched with Tryptone Peptone. Escapin was also strongly bactericidal in media with l-lysine at concentrations as low as 3 mmol l(-1) and slightly bactericidal in 50 mmol l(-1) l-arginine, but not in most other amino acids even at 50 mmol l(-1). Escapin had high oxidase activity (producing hydrogen peroxide) with either l-arginine or l-lysine as a substrate and little to no oxidase activity with other l-amino acids. Hydrogen peroxide alone (without escapin or amino acids) was strongly bacteriostatic but poorly bactericidal, similar in this respect to l-arginine but different from l-lysine in the presence of escapin. Together these results suggest that there are multiple mechanisms to escapin's antimicrobial effects, with bacteriostasis resulting largely or entirely from the effects of hydrogen peroxide produced by escapin's LAAO activity, but bactericidal effects resulting from lysine-dependent mechanisms not directly involving hydrogen peroxide. Recombinant escapin expressed in bacteria was also active against Gram-positive and Gram-negative bacteria, suggesting that glycosylation is not essential for antimicrobial activity.
机译:从海兔Aplysia californica的防御性紫色墨水分泌物中分离出的60 kDa单体蛋白被克隆并测序,它是第一个在大肠杆菌中功能表达的海兔抗菌蛋白。序列分析表明该蛋白是一种含有黄素的l-氨基酸氧化酶(LAAO),具有一个预测的潜在糖基化位点,尽管无法通过实验证实该糖基化。这种蛋白质,我们称为; escapin',与其他几种腹足动物蛋白质具有高度的序列相似性。通过NMR,质谱法和HPLC验证了Escapin具有FAD作为其黄素辅因子。使用两种测定法的组合测定Escapin的抗微生物作用,抑菌和杀菌作用:(1)在固体培养基上孵育细菌,然后通过直接观察抑菌圈或通过浊度测量来评估抑菌作用; (2)在液体培养基中培养细菌,然后在琼脂平板上生长后计数存活菌落。天然escapin抑制革兰氏阳性和革兰氏阴性细菌(包括海洋细菌(哈维弧菌和金黄色葡萄球菌)和病原菌(金黄色葡萄球菌,化脓性链球菌和铜绿假单胞菌)的生长。松香素还以不同的功效抑制酵母和真菌的生长。 Escapin的抗菌活性是浓度依赖性的,并且在室温下保存5个月以上不会降低。 Escapin在含有葡萄糖,酵母提取物和50微摩尔l(-1)的20种氨基酸的混合物的最小培养基(例如盐培养基)中具有抑菌作用,而不具有杀菌作用,但在富含胰蛋白P的培养基中具有杀菌作用。 Escapin在浓度低至3 mmol l(-1)的l-赖氨酸培养基中也具有强力杀菌作用,而在50 mmol l(-1)l-精氨酸中则具有轻度杀菌作用,但即使在50 mmol l时对大多数其他氨基酸也没有杀菌作用(-1)。硫醇素以L-精氨酸或L-赖氨酸为底物具有高的氧化酶活性(产生过氧化氢),而与其他L-氨基酸的氧化酶活性几乎没有或没有。单独的过氧化氢(没有香豆素或氨基酸)具有很强的抑菌作用,但杀菌性很差,在这方面与1-精氨酸相似,但是与在-ε-精氨酸存在下的1-赖氨酸不同。这些结果加在一起表明,逃逸素的抗菌作用有多种机制,其抑菌作用主要或完全是由逃生素的LAAO活性产生的过氧化氢产生的,而杀菌作用则是由赖氨酸依赖性机制引起的,而不直接涉及过氧化氢。在细菌中表达的重组衣索蛋白对革兰氏阳性和革兰氏阴性细菌也有活性,这表明糖基化对于抗菌活性不是必需的。

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