De Novo Glycan Display on Cell Surfaces Using HaloTag: Visualizing the Effect of the Galectin Lattice on the Lateral Diffusion and Extracellular Vesicle Loading of Glycosylated Membrane Proteins.

IF 14.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of the American Chemical Society Pub Date : 2024-08-14 Epub Date: 2024-07-04 DOI:10.1021/jacs.4c02040
Ayane Miura, Yoshiyuki Manabe, Kenichi G N Suzuki, Hiroki Shomura, Soichiro Okamura, Asuka Shirakawa, Kumpei Yano, Shuto Miyake, Koki Mayusumi, Chun-Cheng Lin, Kenta Morimoto, Jojiro Ishitobi, Ikuhiko Nakase, Kenta Arai, Shouhei Kobayashi, Ushio Ishikawa, Hirotaka Kanoh, Eiji Miyoshi, Toshiyuki Yamaji, Kazuya Kabayama, Koichi Fukase
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Abstract

Glycans cover the cell surface to form the glycocalyx, which governs a myriad of biological phenomena. However, understanding and regulating glycan functions is extremely challenging due to the large number of heterogeneous glycans that engage in intricate interaction networks with diverse biomolecules. Glycocalyx-editing techniques offer potent tools to probe their functions. In this study, we devised a HaloTag-based technique for glycan manipulation, which enables the introduction of chemically synthesized glycans onto a specific protein (protein of interest, POI) and concurrently incorporates fluorescent units to attach homogeneous, well-defined glycans to the fluorescence-labeled POIs. Leveraging this HaloTag-based glycan-display system, we investigated the influence of the interactions between Gal-3 and various N-glycans on protein dynamics. Our analyses revealed that glycosylation modulates the lateral diffusion of the membrane proteins in a structure-dependent manner through interaction with Gal-3, particularly in the context of the Gal-3-induced formation of the glycan network (galectin lattice). Furthermore, N-glycan attachment was also revealed to have a significant impact on the extracellular vesicle-loading of membrane proteins. Notably, our POI-specific glycan introduction does not disrupt intact glycan structures, thereby enabling a functional analysis of glycans in the presence of native glycan networks. This approach complements conventional glycan-editing methods and provides a means for uncovering the molecular underpinnings of glycan functions on the cell surface.

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利用 HaloTag 在细胞表面进行新糖显示:可视化加连蛋白晶格对糖基化膜蛋白横向扩散和细胞外囊泡负载的影响
聚糖覆盖细胞表面,形成糖萼,支配着无数的生物现象。然而,由于大量异构聚糖与不同的生物大分子形成错综复杂的相互作用网络,了解和调控聚糖的功能极具挑战性。糖萼编辑技术为探究其功能提供了有力的工具。在这项研究中,我们设计了一种基于 HaloTag 的聚糖操作技术,它能将化学合成的聚糖引入特定蛋白质(感兴趣的蛋白质,POI),同时结合荧光单元将同质、定义明确的聚糖连接到荧光标记的 POI 上。利用这种基于 HaloTag 的聚糖显示系统,我们研究了 Gal-3 与各种 N-聚糖之间的相互作用对蛋白质动态的影响。我们的分析表明,糖基化通过与 Gal-3 的相互作用,特别是在 Gal-3 诱导的聚糖网络(galectin 网格)形成的背景下,以结构依赖的方式调节了膜蛋白的横向扩散。此外,研究还发现,N-聚糖的附着对膜蛋白的细胞外囊载荷也有重大影响。值得注意的是,我们的 POI 特异性聚糖导入不会破坏完整的聚糖结构,因此可以在存在原生聚糖网络的情况下对聚糖进行功能分析。这种方法补充了传统的聚糖编辑方法,为揭示细胞表面聚糖功能的分子基础提供了一种手段。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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