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Single Amino Acid Substitutions at Specific Positions of the Heptad Repeat Sequence of Piscidin-1 Yielded Novel Analogs That Show Low Cytotoxicity and In Vitro and In Vivo Antiendotoxin Activity

机译:Piscidin-1的七肽重复序列特定位置上的单个氨基酸取代产生了新型的类似物它们显示出低的细胞毒性以及体内和体外的抗内毒素活性

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摘要

Piscidin-1 possesses significant antimicrobial and cytotoxic activities. To recognize the primary amino acid sequence(s) in piscidin-1 that could be important for its biological activity, a long heptad repeat sequence located in the region from amino acids 2 to 19 was identified. To comprehend the possible role of this motif, six analogs of piscidin-1 were designed by selectively replacing a single isoleucine residue at a d (5th) position or at an a (9th or 16th) position with either an alanine or a valine residue. Two more analogs, namely, I5F,F6A-piscidin-1 and V12I-piscidin-1, were designed for investigating the effect of interchanging an alanine residue at a d position with an adjacent phenylalanine residue and replacing a valine residue with an isoleucine residue at another d position of the heptad repeat of piscidin-1, respectively. Single alanine-substituted analogs exhibited significantly reduced cytotoxicity against mammalian cells compared with that of piscidin-1 but appreciably retained the antibacterial and antiendotoxin activities of piscidin-1. All the single valine-substituted piscidin-1 analogs and I5F,F6A-piscidin-1 showed cytotoxicity greater than that of the corresponding alanine-substituted analogs, antibacterial activity marginally greater than or similar to that of the corresponding alanine-substituted analogs, and also antiendotoxin activity superior to that of the corresponding alanine-substituted analogs. Interestingly, among these peptides, V12I-piscidin-1 showed the highest cytotoxicity and antibacterial and antiendotoxin activities. Lipopolysaccharide (12 mg/kg of body weight)-treated mice, further treated with I16A-piscidin-1, the piscidin-1 analog with the highest therapeutic index, at a single dose of 1 or 2 mg/kg of body weight, showed 80 and 100% survival, respectively. Structural and functional characterization of these peptides revealed the basis of their biological activity and demonstrated that nontoxic piscidin-1 analogs with significant antimicrobial and antiendotoxin activities can be designed by incorporating single alanine substitutions in the piscidin-1 heptad repeat.
机译:Piscidin-1具有重要的抗菌和细胞毒性活性。为了识别可能对其生物活性重要的piscidin-1中的一个或多个主要氨基酸序列,鉴定了位于2至19位氨基酸区域的长七肽重复序列。为了理解该基序的可能作用,通过用丙氨酸或缬氨酸残基选择性地替换d(第5位)或a(第9或16位)的单个异亮氨酸残基来设计piscidin-1的六个类似物。设计了另外两个类似物,即I5F,F6A-piscidin-1和V12I-piscidin-1,用于研究将位置上的丙氨酸残基与相邻的苯丙氨酸残基互换并将另一个缬氨酸残基替换为另一个残基上的异亮氨酸残基的作用。 piscidin-1的七肽重复序列的d位置。与piscidin-1相比,单个丙氨酸取代的类似物对哺乳动物细胞的细胞毒性显着降低,但明显保留了piscidin-1的抗菌和抗内毒素活性。所有单个缬氨酸取代的piscidin-1类似物和I5F,F6A-piscidin-1的细胞毒性均大于相应的丙氨酸取代的类似物,其抗菌活性略大于或相似于相应的丙氨酸取代的类似物,并且抗内毒素活性优于相应的丙氨酸取代的类似物。有趣的是,在这些肽中,V12I-piscidin-1表现出最高的细胞毒性以及抗菌和抗内毒素活性。脂多糖(12 mg / kg体重)处理的小鼠,以1或2 mg / kg体重的单次剂量进一步用I16A-piscidin-1(具有最高治疗指数的piscidin-1类似物)治疗,显示存活率分别为80%和100%。这些肽的结构和功能表征揭示了其生物学活性的基础,并表明可以通过在piscidin-1 heptad重复序列中掺入单个丙氨酸取代来设计具有显着抗菌和抗内毒素活性的无毒piscidin-1类似物。

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