Live imaging of paracrine signaling: Advances in visualization and tracking techniques.

IF 2.2 4区 生物学 Q4 CELL BIOLOGY Cell structure and function Pub Date : 2025-01-01 DOI:10.1247/csf.24064
Eriko Deguchi, Michiyuki Matsuda, Kenta Terai
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Abstract

Live imaging techniques have revolutionized our understanding of paracrine signaling, a crucial form of cell-to-cell communication in biological processes. This review examines recent advances in visualizing and tracking paracrine factors through four key stages: secretion from producing cells, diffusion through extracellular space, binding to target cells, and activation of intracellular signaling within target cells. Paracrine factor secretion can be directly visualized by fluorescent protein tagging to ligand, or indirectly by visualizing the cleavage of the transmembrane pro-ligands or plasma membrane fusion of endosomes comprising the paracrine factors. Diffusion of paracrine factors has been studied using techniques such as fluorescence correlation spectroscopy (FCS), fluorescence recovery after photobleaching (FRAP), fluorescence decay after photoactivation (FDAP), and single-molecule tracking. Binding of paracrine factors to target cells has been visualized through various biosensors, including GPCR-activation-based (GRAB) sensors and Förster resonance energy transfer (FRET) probes for receptor tyrosine kinases. Finally, activation of intracellular signaling is monitored within the target cells by biosensors for second messengers, transcription factors, and so on. In addition to the imaging tools, the review also highlights emerging optogenetic and chemogenetic tools for triggering the release of paracrine factors, which is essential for associating the paracrine factor secretion to biological outcomes during the bioimaging of paracrine factor signaling.Key words: paracrine signaling, live imaging, biosensors, optogenetics, chemogenetics.

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旁分泌信号的实时成像:可视化和跟踪技术的进展。
实时成像技术彻底改变了我们对旁分泌信号的理解,旁分泌信号是生物过程中细胞间通信的重要形式。本文综述了通过四个关键阶段观察和跟踪旁分泌因子的最新进展:从产生细胞分泌,通过细胞外空间扩散,与靶细胞结合,以及靶细胞内细胞内信号的激活。旁分泌因子的分泌可以通过荧光蛋白标记配体直接观察,也可以通过观察含有旁分泌因子的核内体的跨膜前配体的分裂或质膜融合来间接观察。利用荧光相关光谱(FCS)、光漂白后荧光恢复(FRAP)、光活化后荧光衰减(FDAP)和单分子跟踪等技术研究了旁分泌因子的扩散。旁分泌因子与靶细胞的结合已经通过各种生物传感器可视化,包括基于gpcr激活的(GRAB)传感器和酪氨酸受体激酶的Förster共振能量转移(FRET)探针。最后,细胞内信号的激活由靶细胞内的第二信使、转录因子等生物传感器监测。除了成像工具外,本文还重点介绍了用于触发旁分泌因子释放的新兴光遗传学和化学遗传学工具,这对于在旁分泌因子信号的生物成像过程中将旁分泌因子分泌与生物学结果联系起来至关重要。关键词:旁分泌信号,实时成像,生物传感器,光遗传学,化学遗传学
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来源期刊
Cell structure and function
Cell structure and function 生物-细胞生物学
CiteScore
2.50
自引率
0.00%
发文量
6
审稿时长
>12 weeks
期刊介绍: Cell Structure and Function is a fully peer-reviewed, fully Open Access journal. As the official English-language journal of the Japan Society for Cell Biology, it is published continuously online and biannually in print. Cell Structure and Function publishes important, original contributions in all areas of molecular and cell biology. The journal welcomes the submission of manuscripts on research areas such as the cell nucleus, chromosomes, and gene expression; the cytoskeleton and cell motility; cell adhesion and the extracellular matrix; cell growth, differentiation and death; signal transduction; the protein life cycle; membrane traffic; and organelles.
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