paper-with-me

홈 › Papers

Quantitative and functional post-translational modification proteomics reveals that TREPH1 plays a role in plant thigmomorphogenesis

2018-08-13

Plants can sense both intracellular and extracellular mechanical forces and can respond through morphological changes. The signaling components responsible for mechanotransduction of the touch response are largely unknown. Here, we performed a high-throughput SILIA (stable isotope labeling in Arabidopsis)-based quantitative phosphoproteomics analysis to profile changes in protein phosphorylation resulting from 40 seconds of force stimulation in Arabidopsis thaliana. Of the 24 touch-responsive phosphopeptides identified, many were derived from kinases, phosphatases, cytoskeleton proteins, membrane proteins and ion transporters. TOUCH-REGULATED PHOSPHOPROTEIN1 (TREPH1) and MAP KINASE KINASE 2 (MKK2) and/or MKK1 became rapidly phosphorylated in touch-stimulated plants. Both TREPH1 and MKK2 are required for touch-induced delayed flowering, a major component of thigmomorphogenesis. The treph1-1 and mkk2 mutants also exhibited defects in touch-inducible gene expression. A non-phosphorylatable site-specific isoform of TREPH1 (S625A) failed to restore touch-induced flowering delay of treph1-1, indicating the necessity of S625 for TREPH1 function and providing evidence consistent with the possible functional relevance of the touch-regulated TREPH1 phosphorylation. Bioinformatic analysis and biochemical subcellular fractionation of TREPH1 protein indicate that it is a soluble protein. Altogether, these findings identify new protein players in Arabidopsis thigmomorphogenesis regulation, suggesting that protein phosphorylation may play a critical role in plant force responses.

📄 PDF Abstract BibTeX arXiv:1808.04113

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Cysteine post-translational modifications: ten years from chemical proteomics to bioinformatics

2021-05-28 · Yanzheng Meng, Lei LI

As the only thiol-bearing amino acid, cysteine (Cys) residues in proteins have the reactive thiol side chain, which is susceptible to a series of post-translational modifications (PTMs). These PTMs participate in a wide …

A graph-based approach for modification site assignment in proteomics

2025-05-23 · Dafni Skiadopoulou, Lukas Käll, Harald Barsnes, Veit Schwämmle 외

Background In proteomics, the most probable localizations of post-translational modifications are assessed by localization scores evaluating the likelihood of a given modification to occupy a site on a peptide sequence. …

Proteomics Standards Initiatives ProForma 2.0 Unifying the encoding of Proteoforms and Peptidoforms

2021-09-23 · Richard D. LeDuc, Eric W. Deutsch, Pierre-Alain Binz, Ryan T. Fellers 외

There is the need to represent in a standard manner all the possible variations of a protein or peptide primary sequence, including both artefactual and post-translational modifications of peptides and proteins. With tha…

Comprehensive Overview of Bottom-up Proteomics using Mass Spectrometry

2023-11-13 · Yuming Jiang, Devasahayam Arokia Balaya Rex, Dina Schuster, Benjamin A. Neely 외

Proteomics is the large scale study of protein structure and function from biological systems through protein identification and quantification. "Shotgun proteomics" or "bottom-up proteomics" is the prevailing strategy, …

MeToken: Uniform Micro-environment Token Boosts Post-Translational Modification Prediction

2024-11-04 · Cheng Tan, Zhenxiao Cao, Zhangyang Gao, Lirong Wu 외

Post-translational modifications (PTMs) profoundly expand the complexity and functionality of the proteome, regulating protein attributes and interactions that are crucial for biological processes. Accurately predicting …