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自旋标记法深入探究化学固定如何影响细胞上聚糖的组织方式。

Spin-labeling Insights into How Chemical Fixation Impacts Glycan Organization on Cells.

作者信息

Jaiswal Mohit, Tran Trang T, Guo Jiatong, Zhou Mingwei, Kundu Sayan, Guo Zhongwu, Fanucci Gail E

机构信息

Department of Chemistry, University of Florida, 214 Leigh Hall, Gainesville, FL 32611, USA.

出版信息

Appl Magn Reson. 2024 Mar;55(1-3):317-333. doi: 10.1007/s00723-023-01624-w. Epub 2023 Oct 9.

Abstract

As new methods to interrogate glycan organization on cells develop, it is important to have a molecular level understanding of how chemical fixation can impact results and interpretations. Site-directed spin labeling technologies are well suited to study how the spin label mobility is impacted by local environmental conditions, such as those imposed by cross-linking effects of paraformaldehyde cell fixation methods. Here, we utilize three different azide-containing sugars for metabolic glycan engineering with HeLa cells to incorporate azido glycans that are modified with a DBCO-based nitroxide moiety via click reaction. Continuous wave X-band electron paramagnetic resonance spectroscopy is employed to characterize how the chronological sequence of chemical fixation and spin labeling impacts the local mobility and accessibility of the nitroxide-labeled glycans in the glycocalyx of HeLa cells. Results demonstrate that chemical fixation with paraformaldehyde can alter local glycan mobility and care should be taken in the analysis of data in any study where chemical fixation and cellular labeling occur.

摘要

随着用于研究细胞上聚糖组织的新方法不断发展,从分子层面理解化学固定如何影响结果及解读变得至关重要。定点自旋标记技术非常适合研究自旋标记的流动性如何受到局部环境条件的影响,例如多聚甲醛细胞固定方法的交联效应所带来的条件。在此,我们利用三种不同的含叠氮基糖对HeLa细胞进行代谢聚糖工程,以掺入通过点击反应被基于DBCO的氮氧化物部分修饰的叠氮聚糖。采用连续波X波段电子顺磁共振光谱来表征化学固定和自旋标记的时间顺序如何影响HeLa细胞糖萼中氮氧化物标记聚糖的局部流动性和可及性。结果表明,多聚甲醛化学固定会改变局部聚糖流动性,在任何涉及化学固定和细胞标记的研究中分析数据时都应谨慎。

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