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首页> 外文期刊>Chemical science >De novo design of isopeptide bond-tethered triple-stranded coiled coils with exceptional resistance to unfolding and proteolysis: implication for developing antiviral therapeutics
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De novo design of isopeptide bond-tethered triple-stranded coiled coils with exceptional resistance to unfolding and proteolysis: implication for developing antiviral therapeutics

机译:从头设计异肽键连接的三链卷曲螺旋,具有出色的抗折叠和蛋白水解能力:对开发抗病毒治疗剂具有重要意义

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摘要

Isopeptide bond-tethered triple-stranded coiled coils of HIV-1 gp41 N-terminal heptad repeat (NHR) peptides have been designed with de novo auxiliaries to guide site-directed trimerized cross-linking. The presence of isopeptide bridges in the rationally designed trimerization motifs provides extraordinary stability to withstand thermal and chemical denaturation. As a result, these ultra-stable and well-folded trimeric coiled coils direct and yield proteolysis-resistant and remarkably potent N-peptide chimeric trimers with HIV-1 fusion inhibitory activities in the low nanomolar range, much more effective than the corresponding unstructured N-peptide monomers and reaching the potency of clinically used T20 peptide (enfuvirtide). Thus, these isopeptide bond-crosslinked de novo coiled coils may also be used as attractive scaffolds for isolating NHR-trimers in other class I enveloped viruses for therapeutic intervention. Furthermore, this isopeptide bridge-tethering strategy could be extendable to the construction of ultra-stable proteins interfering with certain biological processes.
机译:HIV-1 gp41 N端七肽重复序列(NHR)肽的异肽键连接的三链卷曲螺旋与新生助剂一起设计,可指导定点三聚交联。合理设计的三聚体基序中存在异肽桥可提供出色的稳定性以承受热和化学变性。结果,这些超稳定且折叠得很好的三聚体卷曲螺旋直接引导并产生了抗蛋白水解且非常有效的N肽嵌合三聚体,在低纳摩尔范围内具有HIV-1融合抑制活性,比相应的非结构化N更有效-肽单体并达到临床使用的T20肽(恩夫韦肽)的效力。因此,这些异肽键交联的从头开始的卷曲螺旋也可以用作有吸引力的支架,以分离其他I类包膜病毒中的NHR-三聚体用于治疗干预。此外,这种异肽桥联策略可以扩展到干扰某些生物过程的超稳定蛋白的构建。

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