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通过相关电子显微镜和纳米级二次离子质谱成像揭示人类神经祖细胞中的亚细胞蛋白质周转

Subcellular protein turnover in human neural progenitor cells revealed by correlative electron microscopy and nanoscale secondary ion mass spectrometry imaging.

作者信息

Lork Alicia A, Rabasco Stefania, Ernst Carl, du Toit André, Rizzoli Silvio O, Phan Nhu T N

机构信息

Department of Chemistry and Molecular Biology University of Gothenburg SE-412 96 Gothenburg Sweden

Human Genetics, McGill University H4H1R3 Montreal Canada.

出版信息

Chem Sci. 2024 Jan 29;15(9):3311-3322. doi: 10.1039/d3sc05629e. eCollection 2024 Feb 28.

Abstract

Protein turnover is a critical process for accurate cellular function, in which damaged proteins in the cells are gradually replaced with newly synthesized ones. Many previous studies on cellular protein turnover have used stable isotopic labelling by amino acids in cell culture (SILAC), followed by proteomic bulk analysis. However, this approach does not take into account the heterogeneity observed at the single-cell and subcellular levels. To address this, we investigated the protein turnover of neural progenitor cells at the subcellular resolution, using correlative TEM and NanoSIMS imaging, relying on a pulse-chase analysis of isotopically-labelled protein precusors. Cellular protein turnover was found significantly heterogenous across individual organelles, which indicates a possible relation between protein turnover and subcellular activity. In addition, different isotopically-labelled amino acids provided different turnover patterns, in spite of all being protein precursors, suggesting that they undergo distinct protein synthesis and metabolic pathways at the subcellular level.

摘要

蛋白质周转是细胞精确发挥功能的关键过程,在此过程中,细胞内受损的蛋白质会逐渐被新合成的蛋白质所取代。此前许多关于细胞蛋白质周转的研究都采用了细胞培养中氨基酸的稳定同位素标记法(SILAC),随后进行蛋白质组学整体分析。然而,这种方法没有考虑到在单细胞和亚细胞水平上观察到的异质性。为了解决这一问题,我们利用相关的透射电子显微镜(TEM)和纳米二次离子质谱(NanoSIMS)成像技术,通过对同位素标记的蛋白质前体进行脉冲追踪分析,在亚细胞分辨率下研究了神经祖细胞的蛋白质周转。结果发现,细胞内蛋白质周转在各个细胞器之间存在显著的异质性,这表明蛋白质周转与亚细胞活性之间可能存在关联。此外,尽管所有同位素标记的氨基酸都是蛋白质前体,但它们提供了不同的周转模式,这表明它们在亚细胞水平上经历了不同的蛋白质合成和代谢途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49e1/10901485/91835dabb48f/d3sc05629e-f1.jpg

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