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使用特异性杂交内化探针(SHIP)对B细胞受体细胞内运输进行高分辨率成像。

High-Resolution Imaging of Intracellular Trafficking of B Cell Receptor Using Specific Hybridization Internalization Probe (SHIP).

作者信息

Hernández-Pérez Sara, Mattila Pieta K

机构信息

Institute of Biomedicine, and MediCity Research Laboratories, University of Turku, Turku, Finland.

Turku Bioscience, University of Turku and Åbo Akademi University, Turku, Finland.

出版信息

Methods Mol Biol. 2025;2909:73-82. doi: 10.1007/978-1-0716-4442-3_6.

Abstract

Recent advancements in microscopy have greatly expanded our understanding of intracellular traffic. Yet, due to the inherent characteristics of B cells, such as their small size and high receptor density on the plasma membrane, visualization of internalized cargo or receptors remains challenging. This challenge is particularly pronounced in the case of the B cell receptor (BCR), where accurate detection of internalized, antigen-bound BCR molecules can be strongly hindered by the signal from the plasma membrane-bound pool of the same molecules.To tackle this issue, we adapted the Specific Hybridization Internalization Probe (SHIP) assay, initially designed for flow cytometry studies, for the study of BCR internalization using microscopy. This assay utilizes a single-stranded DNA (ssDNA) fluorescence internalization probe (FIP) paired with a complementary ssDNA quenching probe that "turns off" the signal from the (extracellular) surface-bound BCRs, greatly facilitating the unambiguous identification of internalized (intracellular) receptors. Moreover, the assay is versatile and adaptable to a range of imaging modalities, including live-cell imaging and super-resolution microscopy. SHIP proves to be a valuable tool in the study of intracellular processes, offering enhanced imaging precision for the detection of internalized BCRs.

摘要

显微镜技术的最新进展极大地扩展了我们对细胞内运输的理解。然而,由于B细胞的固有特性,如它们的小尺寸和质膜上高受体密度,内化货物或受体的可视化仍然具有挑战性。在B细胞受体(BCR)的情况下,这种挑战尤为明显,其中来自相同分子的质膜结合池的信号会强烈阻碍对内化的、抗原结合的BCR分子的准确检测。为了解决这个问题,我们将最初为流式细胞术研究设计的特异性杂交内化探针(SHIP)检测法进行了改进,用于使用显微镜研究BCR内化。该检测法利用与互补单链DNA淬灭探针配对的单链DNA(ssDNA)荧光内化探针(FIP),该淬灭探针可“关闭”来自(细胞外)表面结合的BCR的信号,极大地促进了内化(细胞内)受体的明确识别。此外,该检测法通用性强,适用于一系列成像模式,包括活细胞成像和超分辨率显微镜。SHIP被证明是研究细胞内过程的一个有价值的工具,为检测内化的BCR提供了更高的成像精度。

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