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蛋白质周转:通过用稳定同位素标记的氨基酸对动物进行整体代谢标记来测量蛋白质组动力学。

Protein turnover: measurement of proteome dynamics by whole animal metabolic labelling with stable isotope labelled amino acids.

机构信息

Protein Function Group, Institute of Integrative Biology, University of Liverpool, Liverpool, UK.

出版信息

Proteomics. 2012 Apr;12(8):1194-206. doi: 10.1002/pmic.201100556.

Abstract

The measurement of protein turnover in tissues of intact animals is obtained by whole animal dynamic labelling studies, requiring dietary administration of precursor label. It is difficult to obtain full labelling of precursor amino acids in the diet and if partial labelling is used, calculation of the rate of turnover of each protein requires knowledge of the precursor relative isotope abundance (RIA). We describe an approach to dynamic labelling of proteins in the mouse with a commercial diet supplemented with a pure, deuterated essential amino acid. The pattern of isotopomer labelling can be used to recover the precursor RIA, and sampling of urinary secreted proteins can monitor the development of liver precursor RIA non-invasively. Time-series analysis of the labelling trajectories for individual proteins allows accurate determination of the first order rate constant for degradation. The acquisition of this parameter over multiple proteins permits turnover profiling of cellular proteins and comparisons of different tissues. The median rate of degradation of muscle protein is considerably lower than liver or kidney, with heart occupying an intermediate position.

摘要

在完整动物的动态标记研究中,可以通过对动物进行整体的动态标记来测量组织中的蛋白质周转率,这需要在饮食中添加前体标记。很难在饮食中完全标记前体氨基酸,如果使用部分标记,则需要知道每个蛋白质的周转率的前体相对同位素丰度(RIA)。我们描述了一种用商业饮食补充纯氘代必需氨基酸对小鼠进行蛋白质动态标记的方法。可以使用同位素标记物的模式来恢复前体 RIA,并且可以通过监测尿分泌蛋白的采样来无创地监测肝脏前体 RIA 的发展。对单个蛋白质的标记轨迹进行时间序列分析,可以准确确定降解的一级速率常数。通过多个蛋白质获得此参数,可以对细胞蛋白质进行周转率分析,并比较不同组织。肌肉蛋白的降解中位速率明显低于肝或肾,而心脏处于中间位置。

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