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用于监测细胞和组织中PINK1-PRKN信号传导的磷酸化泛素抗体的开发与表征

Development and characterization of phospho-ubiquitin antibodies to monitor PINK1-PRKN signaling in cells and tissue.

作者信息

Watzlawik Jens O, Hou Xu, Richardson Tyrique, Lewicki Szymon L, Siuda Joanna, Wszolek Zbigniew K, Cook Casey N, Petrucelli Leonard, DeTure Michael, Dickson Dennis W, Antico Odetta, Muqit Miratul M K, Fishman Jordan B, Pirani Karima, Kumaran Ravindran, Polinski Nicole K, Fiesel Fabienne C, Springer Wolfdieter

机构信息

Department of Neuroscience, Mayo Clinic, Jacksonville, FL 32224, USA.

Department of Neurology, Faculty of Medical Sciences in Katowice, Medical University of Silesia, Katowice 40-055, Poland.

出版信息

bioRxiv. 2024 Jan 16:2024.01.15.575715. doi: 10.1101/2024.01.15.575715.

Abstract

The selective removal of dysfunctional mitochondria, a process termed mitophagy, is critical for cellular health and impairments have been linked to aging, Parkinson disease, and other neurodegenerative conditions. A central mitophagy pathway is orchestrated by the ubiquitin (Ub) kinase PINK1 together with the E3 Ub ligase PRKN/Parkin. The decoration of damaged mitochondrial domains with phosphorylated Ub (p-S65-Ub) mediates their elimination though the autophagy system. As such p-S65-Ub has emerged as a highly specific and quantitative marker of mitochondrial damage with significant disease relevance. Existing p-S65-Ub antibodies have been successfully employed as research tools in a range of applications including western blot, immunocytochemistry, immunohistochemistry, and ELISA. However, physiological levels of p-S65-Ub in the absence of exogenous stress are very low, therefore difficult to detect and require reliable and ultrasensitive methods. Here we generated and characterized a collection of novel recombinant, rabbit monoclonal p-S65-Ub antibodies with high specificity and affinity in certain applications that allow the field to better understand the molecular mechanisms and disease relevance of PINK1-PRKN signaling. These antibodies may also serve as novel diagnostic or prognostic tools to monitor mitochondrial damage in various clinical and pathological specimens.

摘要

选择性清除功能失调的线粒体(一种称为线粒体自噬的过程)对细胞健康至关重要,其功能受损与衰老、帕金森病和其他神经退行性疾病有关。一条核心的线粒体自噬途径由泛素(Ub)激酶PINK1与E3 Ub连接酶PRKN/帕金蛋白共同协调。磷酸化泛素(p-S65-Ub)对受损线粒体结构域的修饰通过自噬系统介导其清除。因此,p-S65-Ub已成为具有重要疾病相关性的线粒体损伤的高度特异性和定量标志物。现有的p-S65-Ub抗体已成功用作研究工具,应用于包括蛋白质印迹、免疫细胞化学、免疫组织化学和酶联免疫吸附测定等一系列应用中。然而,在没有外源性应激的情况下,p-S65-Ub的生理水平非常低,因此难以检测,需要可靠且超灵敏的方法。在此,我们生成并鉴定了一系列新型重组兔单克隆p-S65-Ub抗体,这些抗体在某些应用中具有高特异性和亲和力,有助于该领域更好地理解PINK1-PRKN信号传导的分子机制和疾病相关性。这些抗体还可作为新型诊断或预后工具,用于监测各种临床和病理标本中的线粒体损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4243/10827112/bdf39ee9c4e0/nihpp-2024.01.15.575715v1-f0001.jpg

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