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The files in this archive represent the supporting data for "Site-specific mapping and quantification of protein S-sulfenylation in cells," a paper to appear in Nature Communications (2014). The authors are Jing Yang, Vinayak Gupta, Kate S. Carroll, and Daniel C. Liebler, working at Vanderbilt Univ...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2014-07-10 | MSV000078777 | MassIVE
Data from CPTAC Portal. Experiment: Protein S-sulfenylation SulfenQ mzML_data A431, file: SulfenQ_A431_EGF_LH_B3.mgf. Published as part of Nat Commun. 2014 Sep 1;5:4776 . From the Abstract: {{i}} Cysteine S-sulphenylation provides redox regulation of protein functions, but the global cellular impac...
ORGANISM(S): Homo_sapiens_viruses, Human_female 
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
Drug resistance in Plasmodium falciparum remains a challenge for the malaria eradication programs around the world. With the emergence of artemisinin resistance, the efficacy of the partner drugs in the artemisinin combination therapies (ACT) that include quinoline based drugs is becoming critical. ...
ORGANISM(S): Plasmodium falciparum 
The goal of our study is to characterize the global transcriptional resposne of P.falciparum to DNA damageing agents. Alongside, we stidied the epigenetic regulation of DNA damage resposne in parasite. Further, we studied the mecanism which underlined the ARMD (mutator) phenotype of P. falciparum. ...
ORGANISM(S): Plasmodium falciparum 
This SuperSeries is composed of the SubSeries listed below. Refer to individual Series
ORGANISM(S): Plasmodium falciparum 
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