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Inhibitory Activity of Synthetic Peptide Antibiotics on Feline Immunodeficiency Virus Infectivity In Vitro

机译:合成肽类抗生素对猫免疫缺陷病毒感染的体外抑制活性。

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摘要

Natural peptide antibiotics are part of host innate immunity against a wide range of microbes, including some viruses. Synthetic peptides modeled after natural peptide antibiotics interfere with microbial membranes and are termed peptidyl membrane-interactive molecules (peptidyl-MIM [Demegen Inc, Pittsburgh, Pa.]). Sixteen peptidyl-MIM candidates were tested for activity against feline immunodeficiency virus (FIV) on infected CrFK cells. Three of them (D4E1, DC1, and D1D6) showed potent anti-FIV activity in chronically infected CrFK cells as measured by decreased reverse transcriptase (RT) activity, having 50% inhibitory concentrations of 0.46, 0.75, and 0.94 μM, respectively, which were approximately 10 times lower than their direct cytotoxic concentrations. Treatment of chronically infected CrFK cells with 2 μM D4E1 for 3 days completely reversed virus-induced cytopathic effect. Immunofluorescence revealed reduced p26 staining in these cells. Treatment of chronically infected CrFK cells with 2 μM D4E1 suppressed virus production (∼50%) for up to 7 days, The virions from the D4E1-treated culture had impaired infectivity, as measured by the 50% tissue culture infectious dose and nested PCR analysis of proviral DNA. However, these noninfectious virions were able to bind and internalize, suggesting a defect at some postentry step. After chronically infected CrFK cells were treated with D4E1 for 24 h, increased cell-associated mature p26 Gag and decreased extracellular virus-associated p26 Gag were observed by Western blot analysis, suggesting that virus assembly and/or release may be blocked by D4E1 treatment, whereas virus binding, penetration, RNA synthesis, and protein synthesis appear to be unaffected. Synthetic peptide antibiotics may be useful tools in the search for antiviral drugs having a wide therapeutic window for host cells.
机译:天然肽抗生素是宿主针对多种微生物(包括某些病毒)的固有免疫力的一部分。在天然肽抗生素之后模拟的合成肽会干扰微生物膜,被称为肽基膜相互作用分子(肽基-MIM [Demegen Inc,匹兹堡,宾夕法尼亚州])。测试了十六种肽基-MIM候选物对感染的CrFK细胞的猫免疫缺陷病毒(FIV)的活性。通过降低逆转录酶(RT)活性来测量,其中三个(D4E1,DC1和D1D6)在慢性感染的CrFK细胞中显示出强大的抗FIV活性,分别具有50%的抑制浓度0.46、0.75和0.94μM。比其直接细胞毒性浓度低约10倍。用2μMD4E1处理慢性感染的CrFK细胞3天,完全逆转了病毒诱导的细胞病变作用。免疫荧光显示这些细胞中p26染色减少。用2μMD4E1处理慢性感染的CrFK细胞长达7天可抑制病毒产生(约50%),用50%组织培养物的感染剂量和巢式PCR分析测得,经D4E1处理的培养物中的病毒粒子感染力减弱。前病毒DNA。但是,这些非感染性病毒粒子能够结合并内在化,表明在某些进入后步骤中存在缺陷。用D4E1处理慢性感染的CrFK细胞24小时后,通过Western印迹分析观察到细胞相关的成熟p26 Gag升高,而细胞外病毒相关的p26 Gag降低,这表明病毒的组装和/或释放可能被D4E1处理所阻断,而病毒结合,渗透,RNA合成和蛋白质合成似乎不受影响。合成肽抗生素可能是寻找对宿主细胞具有宽广治疗窗口的抗病毒药物的有用工具。

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