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S-nitrosoproteome of leaves obtained from two rice cultivars Dongjin (relatively resistant) and Nipponbare (susceptible) to Magnaporthe oryzae strain PO6-6 was investigated using a iodo-TMT six plex kit. MS/MS data was acquired using two MS intruments: QExactive™ Orbitrap High-Resolution Mass Spectr...
ORGANISM(S): Oryza sativa (Rice) 
2025-12-20 | PXD059677 | Pride
Redox proteomics identifies additional putative targets of Sod1 redox regulation. The high abundance and broad cellular distribution of Sod1 suggests that it may function as a redox regulator of a broad variety of substrates in addition to GAPDH. To test this, we conducted a high-powered quantitativ...
ORGANISM(S): Saccharomyces cerevisiae (Baker's yeast) 
2022-01-04 | PXD030372 | Pride
Pathogen attack can increase plant levels of reactive oxygen species (ROS), which then act as signaling molecules activating plant defense. Elucidating these processes is crucial to understanding the redox signaling pathways in plant defense responses. By an iodo TMT–based quantitative proteomic app...
ORGANISM(S): Oryza sativa (Rice) 
2023-06-06 | PXD034430 | Pride
In the present study, endogenous cysteine S-nitrosation site and S-nitrosated proteins were identified by iodo-TMT labeling during somatic embryogenesis in Brazilian pine, an endangered native conifer of South America.
ORGANISM(S): Araucaria angustifolia 
2022-08-12 | PXD033177 | Pride
During oxidative stress, reactive oxygen species (ROS) can modify and damage cellular proteins. In particular, the thiol groups of cysteine residues can undergo reversible or irreversible oxidative post-translation modifications (PTMs). Identifying the redox-sensitive cysteines on a proteome-wide sc...
ORGANISM(S): Drosophila melanogaster (Fruit fly) 
2023-04-27 | PXD036110 | Pride
Reactive oxygen species (ROS) serve as intracellular signaling molecules; however, in excess ROS molecules are damaging to biomacromolecules such as DNA, lipids, and proteins. The excess accumulation of ROS leads to oxidative stress, disrupting redox homeostasis in the cell and has been linked with ...
ORGANISM(S): Drosophila melanogaster (Fruit fly) 
2023-04-27 | PXD034050 | Pride
Cysteine (Cys) reversible post-translational modifications (PTMs) are emerging as important players in cellular signaling and redox homeostasis. Here we present Cys-BOOST a novel strategy for LC-MS/MS based quantitative analysis of reversibly modified Cys using switch technique, enrichment via bio-o...
ORGANISM(S): Homo sapiens (Human) 
2019-05-21 | PXD011131 | Pride
We explored colorectal cancer (CRC)-related protein biomarkers by proteome-wide differential expression analysis based on a case-control design. The blood samples form 150 colorectal cancer (CRC) cases and 50 controls were collected. The blood samples from 50 individuals with advanced adenoma were a...
ORGANISM(S): Homo Sapiens 
Tomato flowering and fruit set require an optimal temperature of 25/22 ± 2˚C (day/night). When the air temperature reaches to above the optimal range (higher than 30/26˚C; day/night), only a small number of flower buds would develop into mature flowers and produce a reduced number of pollen. This p...
ORGANISM(S): Solanum lycopersicum x Solanum tuberosum 
2022-03-03 | PXD012160 | Pride
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