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◆ Computational biology and chemistry2026-08-05

Integrative proteomics and bioinformatics pipelines for PTM profiling.

Abdullahi Ibrahim Uba, Betül Subaşı, Sani Sharif Usman

一句话结论

Focusing on O-phosphorylation and Lys-N(ε)-acetylation, two extensively crosstalking PTMs in plants, and integrating perspectives on proteomic and bioinformatics approaches. Outlining priority directions for future research including multi-omics integration, AI-based prediction, and applications in crop stress resilience and breeding.

原始摘要(原文)
Post-translational modifications (PTMs) regulate protein function across all life forms and allow plants to respond rapidly to biotic and abiotic stress. Over 450 PTM types have been described across organisms, of which 23-33 have been experimentally confirmed in plants, including phosphorylation, acetylation, methylation, glycosylation, ubiquitination, and sumoylation. These modifications are highly dynamic and often reversible, and frequently act in combination, or "crosstalk," to fine-tune cellular processes. Advances in high-resolution mass spectrometry and large-scale genome sequencing continue to expand the catalogue of known PTM sites, while machine learning and deep learning approaches increasingly support prediction of PTM site localization and function. Unlike broader surveys of plant PTMs, this review focuses specifically on O-phosphorylation and Lys-N(ε)-acetylation, the two best-characterized and most extensively crosstalking PTMs in plants, and integrates four perspectives: the historical development of proteomic and bioinformatics approaches to these modifications; current mass spectrometry-based workflows and enrichment strategies; the bioinformatics tools and databases available for their analysis; and the technical and species-related challenges, particularly in non-model plants, that currently limit their study. We close by outlining priority directions for future research, including multi-omics integration, AI-based prediction, and the translation of PTM knowledge into crop stress resilience and breeding applications.
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Integrative proteomics and bioinformatics pipelines for PTM profiling. — 科研速览 Science Skim