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首页> 外文期刊>Journal of venomous animals and toxins >Ocellatin peptides from the skin secretion of the South American frog Leptodactylus labyrinthicus (Leptodactylidae): characterization, antimicrobial activities and membrane interactions
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Ocellatin peptides from the skin secretion of the South American frog Leptodactylus labyrinthicus (Leptodactylidae): characterization, antimicrobial activities and membrane interactions

机译:南美蛙唇齿唇hi科(Leptodactylidae)的皮肤分泌物中的Ocellatin肽:表征,抗菌活性和膜相互作用

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摘要

The availability of antimicrobial peptides from several different natural sources has opened an avenue for the discovery of new biologically active molecules. To the best of our knowledge, only two peptides isolated from the frog Leptodactylus labyrinthicus, namely pentadactylin and ocellatin-F1, have shown antimicrobial activities. Therefore, in order to explore the antimicrobial potential of this species, we have investigated the biological activities and membrane interactions of three peptides isolated from the anuran skin secretion. Three peptide primary structures were determined by automated Edman degradation. These sequences were prepared by solid-phase synthesis and submitted to activity assays against gram-positive and gram-negative bacteria and against two fungal strains. The hemolytic properties of the peptides were also investigated in assays with rabbit blood erythrocytes. The conformational preferences of the peptides and their membrane interactions have been investigated by circular dichroism spectroscopy and liposome dye release assays. The amino acid compositions of three ocellatins were determined and the sequences exhibit 100% homology for the first 22 residues (ocellatin-LB1 sequence). Ocellatin-LB2 carries an extra Asn residue and ocellatin-F1 extra Asn-Lys-Leu residues at C-terminus. Ocellatin-F1 presents a stronger antibiotic potential and a broader spectrum of activities compared to the other peptides. The membrane interactions and pore formation capacities of the peptides correlate directly with their antimicrobial activities, i.e., ocellatin-F1?>?ocellatin-LB1?>?ocellatin-LB2. All peptides acquire high helical contents in membrane environments. However, ocellatin-F1 shows in average stronger helical propensities. The obtained results indicate that the three extra amino acid residues at the ocellatin-F1 C-terminus play an important role in promoting stronger peptide-membrane interactions and antimicrobial properties. The extra Asn-23 residue present in ocellatin-LB2 sequence seems to decrease its antimicrobial potential and the strength of the peptide-membrane interactions.
机译:来自几种不同天然来源的抗菌肽的可用性为发现新的生物活性分子开辟了一条途径。据我们所知,只有从青蛙唇形唇扁柏中分离出的两种肽,即五环迷迭香和ocellatin-F1,才显示出抗菌活性。因此,为了探索该物种的抗菌潜能,我们研究了从无水牛皮肤分泌物中分离的三种肽的生物学活性和膜相互作用。通过自动的Edman降解确定了三个肽的一级结构。这些序列通过固相合成制备,并进行针对革兰氏阳性和革兰氏阴性细菌以及两种真菌菌株的活性测定。在用兔血红细胞的测定中还研究了肽的溶血特性。肽的构象偏好及其膜相互作用已通过圆二色光谱和脂质体染料释放测定法进行了研究。确定了三种卵磷脂的氨基酸组成,并且该序列对前22个残基表现出100%的同源性(卵磷脂-LB1序列)。 Ocellatin-LB2在C末端带有一个额外的Asn残基,ocellatin-F1带有一个额外的Asn-Lys-Leu残基。与其他肽相比,Ocellatin-F1具有更强的抗生素潜力和更广泛的活性谱。肽的膜相互作用和孔形成能力与其抗菌活性直接相关,即,ocellatin-F1α>βocellatin-LB1β>αocellatin-LB2。所有肽在膜环境中都具有很高的螺旋含量。然而,ocellatin-F1平均表现出更强的螺旋倾向。获得的结果表明,在ocellatin-F1 C末端的三个额外的氨基酸残基在促进更强的肽膜相互作用和抗菌性能中起重要作用。 ocellatin-LB2序列中存在的额外Asn-23残基似乎降低了其抗菌潜能,并降低了肽膜相互作用的强度。

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