Suppr超能文献

多价糖模拟物-金纳米颗粒揭示聚糖展示在多价凝集素-聚糖相互作用生物物理学和抗病毒特性中的关键作用。

Polyvalent Glycomimetic-Gold Nanoparticles Revealing Critical Roles of Glycan Display on Multivalent Lectin-Glycan Interaction Biophysics and Antiviral Properties.

作者信息

Ning Xinyu, Budhadev Darshita, Pollastri Sara, Nehlmeier Inga, Kempf Amy, Manfield Iain, Turnbull W Bruce, Pöhlmann Stefan, Bernardi Anna, Li Xin, Guo Yuan, Zhou Dejian

机构信息

School of Chemistry and Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds LS2 9JT, United Kingdom.

Dipartimento di Chimica, Universita' Degli Studi di Milano, via Golgi 19, Milano 20133, Italy.

出版信息

JACS Au. 2024 Aug 15;4(8):3295-3309. doi: 10.1021/jacsau.4c00610. eCollection 2024 Aug 26.

Abstract

Multivalent lectin-glycan interactions (MLGIs) are widespread and vital for biology, making them attractive therapeutic targets. Unfortunately, the structural and biophysical mechanisms of several key MLGIs remain poorly understood, limiting our ability to design spatially matched glycoconjugates as potential therapeutics against specific MLGIs. We have recently demonstrated that natural oligomannose-coated nanoparticles are powerful probes for MLGIs. They can provide not only quantitative affinity and binding thermodynamic data but also key structural information (, binding site orientation and mode) useful for designing glycoconjugate therapeutics against specific MLGIs. Despite success, how designing parameters (., glycan type, density, and scaffold size) control their MLGI biophysical and antiviral properties remains to be elucidated. A synthetic pseudodimannose (psDiMan) ligand has been shown to selectively bind to a dendritic cell surface tetrameric lectin, DC-SIGN, over some other multimeric lectins sharing monovalent mannose specificity but having distinct cellular functions. Herein, we display psDiMan polyvalently onto gold nanoparticles (GNPs) of varying sizes (., ∼5 and ∼13 nm, denoted as G5- and G13 psDiMan hereafter) to probe how the scaffold size and glycan display control their MLGI properties with DC-SIGN and the closely related lectin DC-SIGNR. We show that G5/13 psDiMan binds strongly to DC-SIGN, with sub-nM s, with affinity being enhanced with increasing scaffold size, whereas they show apparently no or only weak binding to DC-SIGNR. Interestingly, there is a minimal, GNP-size-dependent, glycan density threshold for forming strong binding with DC-SIGN. By combining temperature-dependent affinity and Van't Hoff analyses, we have developed a new GNP fluorescence quenching assay for MLGI thermodynamics, revealing that DC-SIGN-G-psDiMan binding is enthalpy-driven, with a standard binding Δ of ∼ -95 kJ mol, which is ∼4-fold that of the monovalent binding and is comparable to that measured by isothermal titration calorimetry. We further reveal that the enhanced DC-SIGN affinity with G-psDiMan with increasing GNP scaffold size is due to reduced binding entropy penalty and not due to enhanced favorable binding enthalpy. We further show that DC-SIGN binds tetravalently to a single G-psDiMan, irrespective of the GNP size, whereas DC-SIGNR binding is dependent on GNP size, with no apparent binding with G5, and weak cross-linking with G13. Finally, we show that G-psDiMans potently inhibit DC-SIGN-dependent augmentation of cellular entry of Ebola pseudoviruses with sub-nM EC values, whereas they exhibit no significant (for G5) or weak (for G13) inhibition against DC-SIGNR-augmented viral entry, consistent to their MLGI properties with DC-SIGNR in solution. These results have established G-psDiMan as a versatile new tool for probing MLGI affinity, selectivity, and thermodynamics, as well as GNP-glycan antiviral properties.

摘要

多价凝集素-聚糖相互作用(MLGIs)广泛存在且对生物学至关重要,使其成为有吸引力的治疗靶点。不幸的是,几种关键MLGIs的结构和生物物理机制仍知之甚少,限制了我们设计空间匹配的糖缀合物作为针对特定MLGIs的潜在治疗药物的能力。我们最近证明,天然低聚甘露糖包被的纳米颗粒是用于MLGIs的强大探针。它们不仅可以提供定量亲和力和结合热力学数据,还能提供对设计针对特定MLGIs的糖缀合物治疗药物有用的关键结构信息(如结合位点方向和模式)。尽管取得了成功,但设计参数(如聚糖类型、密度和支架大小)如何控制其MLGI生物物理和抗病毒特性仍有待阐明。一种合成假二甘露糖(psDiMan)配体已被证明能选择性地结合树突状细胞表面的四聚体凝集素DC-SIGN,而不是其他一些具有单价甘露糖特异性但具有不同细胞功能的多聚体凝集素。在此,我们将psDiMan多价展示在不同大小(如5和13 nm,以下分别表示为G5-psDiMan和G13-psDiMan)的金纳米颗粒(GNPs)上,以探究支架大小和聚糖展示如何控制它们与DC-SIGN以及密切相关的凝集素DC-SIGNR的MLGI特性。我们表明,G5/13-psDiMan与DC-SIGN强烈结合,解离常数为亚纳摩尔级别,亲和力随着支架大小的增加而增强,而它们与DC-SIGNR明显无结合或仅有弱结合。有趣的是,与DC-SIGN形成强结合存在一个最小的、依赖于GNP大小的聚糖密度阈值。通过结合温度依赖性亲和力和范特霍夫分析,我们开发了一种用于MLGI热力学的新型GNP荧光猝灭测定法,揭示DC-SIGN-G-psDiMan结合是由焓驱动的,标准结合焓变约为-95 kJ/mol,这是单价结合的约4倍,与等温滴定量热法测得的结果相当。我们进一步揭示,随着GNP支架大小增加,DC-SIGN与G-psDiMan的亲和力增强是由于结合熵罚降低,而非有利结合焓增强。我们还表明,无论GNP大小如何,DC-SIGN都以四价方式结合单个G-psDiMan,而DC-SIGNR的结合则依赖于GNP大小,与G5无明显结合,与G13有弱交联。最后,我们表明G-psDiMans以亚纳摩尔EC值有效抑制埃博拉假病毒细胞进入过程中DC-SIGN依赖性的增强,而它们对DC-SIGNR增强的病毒进入没有显著抑制作用(对于G5)或仅有微弱抑制作用(对于G13),这与它们在溶液中与DC-SIGNR的MLGI特性一致。这些结果确立了G-psDiMan作为一种用于探究MLGI亲和力、选择性和热力学以及GNP-聚糖抗病毒特性的通用新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0124/11350578/21c8a60cffe4/au4c00610_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验