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用于从临床样本中免疫亲和富集天然溶酶体的无标签溶酶体免疫沉淀法

Tagless LysoIP for immunoaffinity enrichment of native lysosomes from clinical samples.

作者信息

Saarela Daniel, Lis Pawel, Gomes Sara, Nirujogi Raja S, Dong Wentao, Rawat Eshaan, Glendinning Sophie, Zeneviciute Karolina, Bagnoli Enrico, Fasimoye Rotimi, Lin Cindy, Nyame Kwamina, Boros Fanni A, Zunke Friederike, Lamoliatte Frederic, Elshani Sadik, Jaconelli Matthew, Jans Judith Jm, Huisman Margriet A, Posern Christian, Westermann Lena M, Schulz Angela, van Hasselt Peter M, Alessi Dario R, Abu-Remaileh Monther, Sammler Esther M

机构信息

Medical Research Council (MRC) Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, United Kingdom.

Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, Chevy Chase, Maryland, USA.

出版信息

J Clin Invest. 2024 Dec 26;135(4):e183592. doi: 10.1172/JCI183592.

Abstract

Lysosomes are implicated in a wide spectrum of human diseases, including monogenic lysosomal storage disorders (LSDs), age-associated neurodegeneration, and cancer. Profiling lysosomal content using tag-based lysosomal immunoprecipitation (LysoTagIP) in cell and animal models has substantially moved the field forward, but studying lysosomal dysfunction in patients remains challenging. Here, we report the development of the 'tagless LysoIP' method, designed to enable the rapid enrichment of lysosomes, via immunoprecipitation, using the endogenous integral lysosomal membrane protein TMEM192, directly from clinical samples and human cell lines (e.g., induced pluripotent stem cell-derived neurons). Isolated lysosomes were intact and suitable for subsequent multimodal omics analyses. To validate our approach, we applied the tagless LysoIP to enrich lysosomes from peripheral blood mononuclear cells derived from fresh blood of healthy donors and patients with CLN3 disease, an autosomal recessive neurodegenerative LSD. Metabolic profiling of isolated lysosomes revealed massive accumulation of glycerophosphodiesters (GPDs) in patients' lysosomes. Interestingly, a patient with a milder phenotype and genotype displayed lower accumulation of lysosomal GPDs, consistent with their potential role as disease biomarkers. Altogether, the tagless LysoIP provides a framework to study native lysosomes from patient samples, identify disease biomarkers, and discover human-relevant disease mechanisms.

摘要

溶酶体与多种人类疾病有关,包括单基因溶酶体贮积症(LSDs)、年龄相关性神经退行性变和癌症。在细胞和动物模型中使用基于标签的溶酶体免疫沉淀法(LysoTagIP)对溶酶体内容物进行分析,极大地推动了该领域的发展,但研究患者的溶酶体功能障碍仍然具有挑战性。在此,我们报告了“无标签LysoIP”方法的开发,该方法旨在通过免疫沉淀,利用内源性溶酶体膜整合蛋白TMEM192,直接从临床样本和人类细胞系(如诱导多能干细胞衍生的神经元)中快速富集溶酶体。分离出的溶酶体完整无损,适用于后续的多组学分析。为了验证我们的方法,我们应用无标签LysoIP从健康供体和患有CLN3病(一种常染色体隐性神经退行性LSD)患者的新鲜血液中分离出的外周血单核细胞中富集溶酶体。对分离出的溶酶体进行代谢分析,结果显示患者的溶酶体中甘油磷酸二酯(GPDs)大量积累。有趣的是,一名表型和基因型较轻的患者溶酶体中GPDs的积累较少,这与其作为疾病生物标志物的潜在作用一致。总之,无标签LysoIP为研究患者样本中的天然溶酶体、识别疾病生物标志物以及发现与人类相关的疾病机制提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64d1/11827837/e3f42e98ed5e/jci-135-183592-g124.jpg

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