Fuss Janina, Liegmann Oliver, Krause Kirsten, Rensing Stefan A
Department of Arctic and Marine Biology, University of Tromsø, Dramsvegen 201, N-9037, Tromsø, Norway.
New Phytol. 2013 Dec;200(4):1022-33. doi: 10.1111/nph.12433. Epub 2013 Aug 5.
The challenges of plant protein targeting prediction are the existence of dual subcellular targets and the bias of experimentally confirmed data towards few and mostly nonplant model species. To assess whether training with proteins from evolutionarily distant species has a negative impact on prediction accuracy, we developed the Green Targeting Predictor tool, which was trained with a species-specific data set for Physcomitrella patens. Its performance was compared with that of the same tool trained with a mixed data set. In addition, we updated the Ambiguous Targeting Predictor. We found that predictions deviated from in vivo observations predominantly for proteins diverging within the green lineage, as well as for dual targeted proteins. To evaluate the usefulness of heterologous expression systems, selected proteins were subjected to localization studies in P. patens, Arabidopsis thaliana and Nicotiana tabacum. Four out of six proteins that show dual targeting in the original plant system were located only in a single compartment in one or both heterologous systems. We conclude that targeting signals of divergent plant species exhibit differences, calling for custom in silico and in vivo approaches when aiming to unravel the actual distribution patterns of proteins within a plant cell.
植物蛋白靶向预测面临的挑战包括存在双重亚细胞靶点以及实验确认数据偏向少数且大多为非植物模式物种。为评估使用进化上距离较远物种的蛋白质进行训练是否会对预测准确性产生负面影响,我们开发了绿色靶向预测工具,该工具使用小立碗藓的物种特异性数据集进行训练。将其性能与使用混合数据集训练的同一工具的性能进行了比较。此外,我们更新了模糊靶向预测器。我们发现,预测结果与体内观察结果存在偏差,主要体现在绿色谱系中分化的蛋白质以及双重靶向蛋白质上。为评估异源表达系统的实用性,对选定的蛋白质在小立碗藓、拟南芥和烟草中进行了定位研究。在原始植物系统中显示双重靶向的六种蛋白质中,有四种在一个或两个异源系统中仅定位于单个区室。我们得出结论,不同植物物种的靶向信号存在差异,因此在旨在揭示植物细胞内蛋白质实际分布模式时,需要定制的计算机模拟和体内方法。