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一种高选择性组织蛋白酶S两步基于活性的探针在多色生物正交相关光电子显微镜中的应用。

Application of a Highly Selective Cathepsin S Two-step Activity-Based Probe in Multicolor Bio-Orthogonal Correlative Light-Electron Microscopy.

作者信息

van Dalen Floris J, Bakkum Thomas, van Leeuwen Tyrza, Groenewold Mirjam, Deu Edgar, Koster Abraham J, van Kasteren Sander I, Verdoes Martijn

机构信息

Department of Tumor Immunology and the Institute for Chemical Immunology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Centre, Nijmegen, Netherlands.

Leiden Institute of Chemistry and the Institute for Chemical Immunology, Leiden University, Leiden, Netherlands.

出版信息

Front Chem. 2021 Feb 8;8:628433. doi: 10.3389/fchem.2020.628433. eCollection 2020.

Abstract

Cathepsin S is a lysosomal cysteine protease highly expressed in immune cells such as dendritic cells, B cells and macrophages. Its functions include extracellular matrix breakdown and cleavage of cell adhesion molecules to facilitate immune cell motility, as well as cleavage of the invariant chain during maturation of major histocompatibility complex II. The identification of these diverse specific functions has brought the challenge of delineating cathepsin S activity with great spatial precision, relative to related enzymes and substrates. Here, the development of a potent and highly selective two-step activity-based probe for cathepsin S and the application in multicolor bio-orthogonal correlative light-electron microscopy is presented. LHVS, which has been reported as a selective inhibitor of cathepsin S with nanomolar potency, formed the basis for our probe design. However, in competitive activity-based protein profiling experiments LHVS showed significant cross-reactivity toward Cat L. Introduction of an azide group in the P2 position expanded the selectivity window for cathepsin S, but rendered the probe undetectable, as demonstrated in bio-orthogonal competitive activity-based protein profiling. Incorporation of an additional azide handle for click chemistry on the solvent-exposed P1 position allowed for selective labeling of cathepsin S. This highlights the influence of click handle positioning on probe efficacy. This probe was utilized in multicolor bio-orthogonal confocal and correlative light-electron microscopy to investigate the localization of cathepsin S activity at an ultrastructural level in bone marrow-derived dendritic cells. The tools developed in this study will aid the characterization of the variety of functions of cathepsin S throughout biology.

摘要

组织蛋白酶S是一种溶酶体半胱氨酸蛋白酶,在树突状细胞、B细胞和巨噬细胞等免疫细胞中高度表达。其功能包括分解细胞外基质和切割细胞粘附分子以促进免疫细胞运动,以及在主要组织相容性复合体II成熟过程中切割恒定链。相对于相关酶和底物,确定这些多样的特定功能带来了以极高空间精度描绘组织蛋白酶S活性的挑战。本文介绍了一种用于组织蛋白酶S的高效且高选择性的两步活性探针的开发及其在多色生物正交相关光电子显微镜中的应用。LHVS已被报道为具有纳摩尔效力的组织蛋白酶S选择性抑制剂,是我们探针设计的基础。然而,在基于竞争活性的蛋白质谱分析实验中,LHVS对组织蛋白酶L表现出显著的交叉反应性。在P2位置引入叠氮基团扩大了组织蛋白酶S的选择性窗口,但正如基于生物正交竞争活性的蛋白质谱分析所表明的那样,使探针无法检测到。在暴露于溶剂的P1位置引入额外的用于点击化学的叠氮手柄,使得能够对组织蛋白酶S进行选择性标记。这突出了点击手柄位置对探针功效的影响。该探针用于多色生物正交共聚焦和相关光电子显微镜,以在超微结构水平研究骨髓来源树突状细胞中组织蛋白酶S活性的定位。本研究中开发的工具将有助于表征组织蛋白酶S在整个生物学中的各种功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5194/7903248/22c881ff5ebf/fchem-08-628433-g001.jpg

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