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协调标签和分析策略以获得完整成年动物中的蛋白质周转率。

Harmonizing Labeling and Analytical Strategies to Obtain Protein Turnover Rates in Intact Adult Animals.

机构信息

Department of Biochemistry and System Biology, Institute of Systems and Integrative Biology, University of Liverpool, Liverpool, United Kingdom.

Centre for Metabolomics Research, Institute of Systems and Integrative Biology, University of Liverpool, Liverpool, United Kingdom.

出版信息

Mol Cell Proteomics. 2022 Jul;21(7):100252. doi: 10.1016/j.mcpro.2022.100252. Epub 2022 May 28.

Abstract

Changes in the abundance of individual proteins in the proteome can be elicited by modulation of protein synthesis (the rate of input of newly synthesized proteins into the protein pool) or degradation (the rate of removal of protein molecules from the pool). A full understanding of proteome changes therefore requires a definition of the roles of these two processes in proteostasis, collectively known as protein turnover. Because protein turnover occurs even in the absence of overt changes in pool abundance, turnover measurements necessitate monitoring the flux of stable isotope-labeled precursors through the protein pool such as labeled amino acids or metabolic precursors such as ammonium chloride or heavy water. In cells in culture, the ability to manipulate precursor pools by rapid medium changes is simple, but for more complex systems such as intact animals, the approach becomes more convoluted. Individual methods bring specific complications, and the suitability of different methods has not been comprehensively explored. In this study, we compare the turnover rates of proteins across four mouse tissues, obtained from the same inbred mouse strain maintained under identical husbandry conditions, measured using either [C]lysine or [H]O as the labeling precursor. We show that for long-lived proteins, the two approaches yield essentially identical measures of the first-order rate constant for degradation. For short-lived proteins, there is a need to compensate for the slower equilibration of lysine through the precursor pools. We evaluate different approaches to provide that compensation. We conclude that both labels are suitable, but careful determination of precursor enrichment kinetics in amino acid labeling is critical and has a considerable influence on the numerical values of the derived protein turnover rates.

摘要

蛋白质组中单个蛋白质丰度的变化可以通过调节蛋白质合成(新合成蛋白质输入蛋白质库的速度)或降解(从库中去除蛋白质分子的速度)来引发。因此,要全面了解蛋白质组的变化,就需要定义这两个过程在蛋白质稳态中的作用,这两个过程统称为蛋白质周转率。由于即使在蛋白质库丰度没有明显变化的情况下也会发生蛋白质周转率,因此周转率的测量需要监测稳定同位素标记前体通过蛋白质库的通量,例如标记的氨基酸或代谢前体,如氯化铵或重水。在培养的细胞中,通过快速改变培养基来操纵前体库的能力很简单,但对于更复杂的系统,如完整的动物,这种方法就变得更加复杂了。个别方法带来了具体的并发症,而且不同方法的适用性尚未得到全面探讨。在这项研究中,我们比较了来自相同近交系小鼠在相同饲养条件下维持的四个小鼠组织中的蛋白质周转率,使用 [C]赖氨酸或 [H]O 作为标记前体进行测量。我们表明,对于长寿命的蛋白质,这两种方法在降解的一级速率常数方面得出了基本相同的测量结果。对于短寿命的蛋白质,需要通过前体库来补偿赖氨酸平衡较慢的问题。我们评估了不同的方法来提供这种补偿。我们的结论是,两种标记物都是合适的,但在氨基酸标记中仔细确定前体富集动力学是至关重要的,并且对推导的蛋白质周转率的数值有很大的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d43/9249856/73ec570189f8/fx1.jpg

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