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Site-specific Polymer Attachment to HR2 Peptide Fusion Inhibitors against HIV-1 Decreases Binding Association Rates and Dissociation Rates rather than Binding Affinity

机译:针对HIV-1的HR2肽融合抑制剂的位点特异性聚合物附着降低了结合缔合速率和解离速率而不是结合亲和力

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摘要

A popular strategy to overcome the limited plasma half-life of peptide heptad repeat 2 (HR2) fusion inhibitors against HIV-1 is through conjugation with biocompatible polymers such as poly(ethylene glycol) (PEG). However, despite improved resistance to proteolysis and reduced renal elimination, covalent attachment of polymers often causes a loss in therapeutic potency. In this study, we investigated the molecular origins of the loss in potency upon conjugation of linear, mid-functional and hyperbranched PEG-like polymers to peptides that inhibit HIV-1 – host cell membrane fusion. Fluorescence binding assays revealed that polymer conjugation imparted mass transport limitations that manifested as coexistent slower association and dissociation rates from the gp41 target on HIV-1. Furthermore, reduced association kinetics rather than affinity disruption was responsible for the loss in antiviral potency. Finally, the binding assays indicated that the unmodified HR2-derived peptide demonstrated diffusion-limited binding. The observed high potency of the unmodified peptide in HIV-1 inhibition assays was therefore attributed to rapid peptide conformational changes upon binding the gp41 prehairpin structure. This study emphasizes that the view in which polymer ligation to therapeutic peptides inadvertently leads to loss in potency due to a loss in binding affinity requires scientific verification on a case-by-case basis, and that high peptide potency may be due to rapid target-binding events.
机译:克服针对HIV-1的肽七肽重复序列2(HR2)融合抑制剂有限的血浆半衰期的流行策略是通过与生物相容性聚合物(例如聚乙二醇(PEG))结合。然而,尽管提高了对蛋白水解的抵抗力并减少了肾脏消除,但是聚合物的共价结合常常导致治疗功效的下降。在这项研究中,我们研究了线性,中功能和超支化PEG状聚合物与抑制HIV-1-宿主细胞膜融合的肽缀合后效能丧失的分子原因。荧光结合试验表明,聚合物结合赋予了传质限制​​,表现为与HIV-1的gp41靶标同时存在较慢的缔合和解离速率。此外,降低的缔合动力学而不是亲和力破坏是抗病毒效力损失的原因。最后,结合测定表明未修饰的HR2衍生的肽表现出扩散受限的结合。因此,在HIV-1抑制试验中观察到的未修饰肽的高效力归因于结合gp41前发夹结构后肽构象的快速变化。这项研究强调,鉴于结合亲和力的丧失,聚合物与治疗性肽的连接无意中导致了效力的丧失,这种观点需要逐案进行科学验证,而高肽效性可能是由于快速靶向-绑定事件。

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