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IgA1抗体上聚糖的单分子动力学指纹图谱

Single Molecule Kinetic Fingerprinting of Glycans on IgA1 Antibodies.

作者信息

Rubin Joseph R, Taylor Steven K, Rudchenko Sergei, Stojanovic Milan N, Hess Henry

机构信息

Department of Biomedical Engineering, Columbia University, 1210 Amsterdam Ave., New York, New York 10027, United States.

Division of Experimental Therapeutics, Department of Medicine, Columbia University, 630 W. 168th St., New York, New York 10032, United States.

出版信息

Anal Chem. 2025 Jul 15;97(27):14388-14396. doi: 10.1021/acs.analchem.5c01488. Epub 2025 Jul 2.

Abstract

Immunoglobulin A (IgA) nephropathy is the most common form of primary glomerulonephritis and is triggered by damage to glomeruli from deposition of complexes formed between glycosylated IgA1 antibodies that are "galactose-deficient" and antibodies directed to these aberrant proteins. Currently, galactose deficiencies are detected with ensemble measurements, e.g., via mass spectrometry or liquid chromatography, which only measure average glycan-IgA1 ratios, but cannot resolve heterogeneity of O-glycosylation between different IgA1 populations. To resolve these differences at the single molecule level, we developed an assay to detect the glycosylation state of individual IgA1 using single molecule fluorescence microscopy. By using fluorescence resonance energy transfer (FRET), high concentrations of fluorescently labeled probes with low binding rates can be employed to observe the binding of protein probes to surface adhered target molecules and obtain their kinetic fingerprints. We measured the binding and unbinding rates of jacalin (a lectin binding to O-linked glycans) to individual IgA1 molecules on a glass surface. Adding galactose decreased binding, which demonstrated that the jacalin probe binds specifically to O-linked glycans on the hinge region of IgA1. This result is a first step toward using kinetic fingerprinting to sequence glycans on IgA1.

摘要

免疫球蛋白A(IgA)肾病是原发性肾小球肾炎最常见的形式,由“半乳糖缺乏型”糖基化IgA1抗体与针对这些异常蛋白的抗体形成的复合物沉积对肾小球造成损伤所引发。目前,半乳糖缺乏情况是通过整体测量来检测的,例如通过质谱法或液相色谱法,这些方法只能测量平均聚糖-IgA1比率,但无法分辨不同IgA1群体之间O-糖基化的异质性。为了在单分子水平上分辨这些差异,我们开发了一种利用单分子荧光显微镜检测单个IgA1糖基化状态的检测方法。通过使用荧光共振能量转移(FRET),可以采用具有低结合率的高浓度荧光标记探针来观察蛋白质探针与表面附着的靶分子的结合,并获得它们的动力学指纹。我们测量了jacalin(一种与O-连接聚糖结合的凝集素)与玻璃表面单个IgA1分子的结合和解离速率。添加半乳糖会降低结合,这表明jacalin探针特异性结合IgA1铰链区的O-连接聚糖。这一结果是朝着利用动力学指纹对IgA1上的聚糖进行测序迈出的第一步。

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