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首页> 外文期刊>Clinical and vaccine immunology: CVI >The gamma interferon (IFN-gamma) mimetic peptide IFN-gamma (95-133) prevents encephalomyocarditis virus infection both in tissue culture and in mice.
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The gamma interferon (IFN-gamma) mimetic peptide IFN-gamma (95-133) prevents encephalomyocarditis virus infection both in tissue culture and in mice.

机译:伽马干扰素(IFN-GAMMA)模拟肽IFN-GAMMA(95-133)可防止组织培养和小鼠中的脑膜炎病毒感染。

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摘要

We have demonstrated previously that the C-terminal gamma interferon (IFN-gamma) mimetic peptide consisting of residues 95 to 133 [IFN-gamma(95-133)], which contains the crucial IFN-gamma nuclear localization sequence (NLS), has antiviral activity in tissue culture. Here we evaluate the efficacy of this peptide and its derivatives first in vitro and then in an animal model of lethal viral infection with the encephalomyocarditis (EMC) virus. Deletion of the NLS region from the IFN-gamma mimetic peptide IFN-gamma(95-133) resulted in loss of antiviral activity. However, the NLS region does not have antiviral activity in itself. Replacing the NLS region of IFN-gamma(95-133) with the NLS region of the simian virus 40 large T antigen retains the antiviral activity in tissue culture. IFN-gamma(95-133) prevented EMC virus-induced lethality in mice in a dose-dependent manner compared to controls. Mice treated with IFN-gamma(95-133) had no or low EMC virus titers in their internal organs, whereas control mice had consistently high viral titers, especially in the heart tissues. Injection of B8R protein, which is encoded by poxviruses as a defense mechanism to neutralize host IFN-gamma, did not inhibit IFN-gamma(95-133) protection against a lethal dose of EMC virus, whereas mice treated with rat IFN-gamma were not protected. The data presented here show that the IFN-gamma mimetic peptide IFN-gamma(95-133) prevents EMC virus infection in vivo and in vitro and may have potential against other lethal viruses, such as the smallpox virus, which encodes the B8R protein.
机译:我们先前已经证明,由残基95至133组成的C末端伽马干扰素(IFN-GAMMA)模拟肽[IFN-GAMMA(95-133)],其中包含至关重要的IFN-GAMMA核定位序列(NLS),具有至关重要的IFN-GAMMA核定位序列(NLS)组织培养中的抗病毒活性。在这里,我们首先在体外评估该肽及其衍生物的功效,然后在用脑膜炎(EMC)病毒的致死病毒感染动物模型中进行评估。从IFN-GAMMA模拟肽IFN-GAMMA(95-133)中删除NLS区域会导致抗病毒活性的丧失。但是,NLS区域本身没有抗病毒活性。用Simian病毒的NLS区域代替IFN-GAMMA(95-133)的NLS区域40大T抗原保留了组织培养中的抗病毒活性。与对照组相比,IFN-GAMMA(95-133)以剂量依赖性方式阻止了EMC病毒诱导的小鼠致死性。用IFN-gamma治疗的小鼠(95-133)的内脏内脏没有EMC病毒滴度或低的EMC病毒滴度,而对照小鼠的病毒滴度始终高,尤其是在心脏组织中。注射B8R蛋白,由毒病毒编码为中和宿主IFN-GAMMA的防御机制,并未抑制IFN-GAMMA(95-133)对EMC病毒的致命剂量的保护,而用大鼠IFN-Gamma治疗的小鼠是不受保护。此处提供的数据表明,IFN-GAMMA模拟肽IFN-GAMMA(95-133)可防止体内和体外的EMC病毒感染,并且可能具有针对其他致命病毒的潜力,例如编码B8R蛋白的天花病毒。

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