Antitumor and antibacterial properties of virally encoded cationic sequences

IF 5.3 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
J. Colle, B. Périchon, Alphonse Garcia
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引用次数: 5

Abstract

Objective: The objective of this study was to test our Viral Quinta Columna Strategy (VQCS), a new biological hypothesis predicting that specific multifunctional virally encoded cationic domains may have the capacity to penetrate human cells and interact with PP2A proteins to deregulate important human intracellular pathways, and may display LL37 cathelicidin-like antagonistic effects against multiple pathogens such as bacteria or viruses. Methods: We comparatively analyzed the host defense properties of adenodiaphorins and of some specific cationic sequences encoded by different viruses using two distinct biological models: U87G, a well-characterized cell tumor model; and a group B Streptococcus agalactiae NEM316 ΔdltA, highly sensitive to LL37 cathelicidin. Results: We found that the adenovirus type 2 E4orf4 is a cell-permeable protein containing a new E4orf464–95 protein transduction domain, named large adenodiaphorin or LadD64–95. Interestingly, the host defense LL37 peptide is the unique cathelicidin in humans. In this context, we also demonstrated that similarly to LL37 LadD64–95, several virally encoded cationic sequences including the C-terminus HIV-1 89.6 Vpr77–92, shorter adenodiaphorins AdD67–84/AdD/69–84/AdD69–83, as well as HIV-2 Tat67–90 and JC polyomavirus small t115–134, displayed similar toxicity against Gram-positive S. agalactiae NEM316 ΔdltA strain. Finally, LadD64–95, adenodiaphorin AdD67–84, AdD69–84, and LL37 and LL17–32 cathelicidin peptides also inhibited the survival of human U87G glioblastoma cells. Conclusion: In this study, we demonstrated that specific cationic sequences encoded by four different viruses displayed antibacterial activities against S. agalactiae NEM316 ΔdltA strain. In addition, HIV-1 Vpr71–92 and adenovirus 2 E4orf464–95, two cationic penetrating sequences that bind PP2A, inhibited the survival of U87G glioblastoma cells. These results illustrate the host defense properties of virally encoded sequences and could represent an initial step for future complete validation of the VQCS hypothesis.
病毒编码阳离子序列的抗肿瘤和抗菌特性
目的:本研究的目的是验证我们的病毒昆塔柱策略(VQCS),这是一种新的生物学假设,预测特定的多功能病毒编码阳离子结构域可能具有穿透人类细胞并与PP2A蛋白相互作用以调节重要的人类细胞内通路的能力,并可能对多种病原体(如细菌或病毒)显示LL37 cathelicidin样拮抗作用。方法:采用两种不同的生物模型:典型的细胞肿瘤模型U87G,比较分析不同病毒所编码的腺导管素和一些特定阳离子序列的宿主防御特性;B组无乳链球菌NEM316 ΔdltA,对LL37抗菌肽高度敏感。结果:我们发现2型腺病毒E4orf4是一种细胞渗透性蛋白,含有一个新的E4orf464-95蛋白转导结构域,称为大腺diaphorin或LadD64-95。有趣的是,宿主防御LL37肽是人类独有的抗菌肽。在这种情况下,我们还证明了与LL37 LadD64-95类似,几种病毒编码的阳离子序列,包括c端HIV-1 89.6 Vpr77-92,较短的腺导管素AdD67-84 /AdD/ 69-84 / AdD69-83,以及HIV-2 Tat67-90和JC多瘤病毒小t115-134,对革兰氏阳性无乳链球菌NEM316 ΔdltA菌株表现出类似的毒性。最后,LadD64-95、AdD67-84、AdD69-84、LL37和LL17-32抗菌肽也能抑制人U87G胶质母细胞瘤细胞的存活。结论:在本研究中,我们证实了四种不同病毒编码的特定阳离子序列对无乳链球菌NEM316 ΔdltA菌株具有抗菌活性。此外,HIV-1 Vpr71-92和腺病毒2 E4orf464-95这两个结合PP2A的阳离子穿透序列抑制了U87G胶质母细胞瘤细胞的存活。这些结果说明了病毒编码序列的宿主防御特性,并且可以代表未来完全验证VQCS假设的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biologics : Targets & Therapy
Biologics : Targets & Therapy MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
8.30
自引率
0.00%
发文量
22
审稿时长
16 weeks
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