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转运蛋白注释阻碍了代谢建模的进展。

Transporter annotations are holding up progress in metabolic modeling.

作者信息

Casey John, Bennion Brian, D'haeseleer Patrik, Kimbrel Jeffrey, Marschmann Gianna, Navid Ali

机构信息

Biochemical and Biophysical Systems Group, Lawrence Livermore National Laboratory, Livermore, CA, United States.

Systems and Synthetic Biology Group, Lawrence Livermore National Laboratory, Livermore, CA, United States.

出版信息

Front Syst Biol. 2024 Jul 24;4:1394084. doi: 10.3389/fsysb.2024.1394084. eCollection 2024.

Abstract

Mechanistic, constraint-based models of microbial isolates or communities are a staple in the metabolic analysis toolbox, but predictions about microbe-microbe and microbe-environment interactions are only as good as the accuracy of transporter annotations. A number of hurdles stand in the way of comprehensive functional assignments for membrane transporters. These include general or non-specific substrate assignments, ambiguity in the localization, directionality and reversibility of a transporter, and the many-to-many mapping of substrates, transporters and genes. In this perspective, we summarize progress in both experimental and computational approaches used to determine the function of transporters and consider paths forward that integrate both. Investment in accurate, high-throughput functional characterization is needed to train the next-generation of predictive tools toward genome-scale metabolic network reconstructions that better predict phenotypes and interactions. More reliable predictions in this domain will benefit fields ranging from personalized medicine to metabolic engineering to microbial ecology.

摘要

基于机制和约束的微生物分离株或群落模型是代谢分析工具箱中的主要工具,但关于微生物-微生物和微生物-环境相互作用的预测,其准确性仅取决于转运蛋白注释的精度。膜转运蛋白的全面功能分配面临诸多障碍。这些障碍包括一般或非特异性底物分配、转运蛋白在定位、方向性和可逆性方面的模糊性,以及底物、转运蛋白和基因的多对多映射。从这个角度出发,我们总结了用于确定转运蛋白功能的实验方法和计算方法的进展,并考虑了将两者整合的前进方向。需要投入准确、高通量的功能表征研究,以训练下一代预测工具,用于基因组规模的代谢网络重建,从而更好地预测表型和相互作用。该领域更可靠的预测将惠及从个性化医疗到代谢工程再到微生物生态学等多个领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c64a/12342017/0462bc804434/fsysb-04-1394084-g001.jpg

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