OmicsDI
Toggle navigation
Browse
Submit Data
Databases
API
Help
Advanced
Search
2
Results
Show all
Save search
Copy query
Show results for
Proteomics
(2)
Organisms
Alphavirus
(2)
Anemia
(2)
Betaherpesvirinae
(2)
Brassica oleracea var. oleracea
(2)
Cowpox virus
(2)
Coxsackievirus
(2)
Cytomegalovirus
(2)
Dengue virus
(2)
EFO:0001352
(2)
Filoviridae
(2)
Hepatitis B virus
(2)
Human alphaherpesvirus 1
(2)
Human betaherpesvirus 5
(2)
Human immunodeficiency virus
(2)
Human immunodeficiency virus 1
(2)
Human immunodeficiency virus 2
(2)
Influenza A virus
(2)
Influenza C virus
(2)
Japanese encephalitis virus
(2)
Japanese encephalitis virus group
(2)
Lyssavirus rabies
(2)
Monkeypox virus
(2)
Orthopoxvirus
(2)
Orthopoxvirus vaccinia
(2)
Rattus
(2)
Ruditapes decussatus
(2)
Staphylococcus aureus
(2)
Tick-borne encephalitis virus
(2)
Viruses
(2)
West Nile virus
(2)
Repository
pride
(2)
Tissue
Cell culture
(2)
Permanent cell line cell
(2)
Disease
Disease free
(2)
Technology Type
Bottom-up proteomics
(2)
Data-dependent acquisition
(2)
Mass Spectrometry
(2)
Publication Date
2023
(2)
Lab affiliation
Shandong Normal University
(2)
Previous
page
1 / 1
You're on page
1
Next
page
Sort
by:
Relevance
Page size
10
Identification of sulfhydryl-containing proteins and further evaluation of the selenium-tagged redox homeostasis-regulating proteins:Identification of sulfhydryl-containing proteins and further evaluation of the selenium-tagged redox homeostasis-regulating proteins:Identification of sulfhydryl-containing proteins and further evaluation of the selenium-tagged redox homeostasis-regulating proteins:Mass Spectrometry (MS)-based quantitative profiling of Se-probes-reactive proteins
We performed MS-based quantitative profiling of Se-probes-reactive proteins by ABPP using stable isotope reductive dimethylation method.
ORGANISM(S):
Homo sapiens (Human)
2023-12-07
|
PXD046856
|
Pride
Abpp
npspyne
npssyne
dpdsyne
Cite
Identification of sulfhydryl-containing proteins and further evaluation of the selenium- tagged redox homeostasis-regulating proteins:Identification of cysteine sites using tandem orthogonal proteolysis strategy (TOP-ABPP).
We sought to identify exact modified cysteine sites by Se-probes using TOP-ABPP strategy and the acid cleavable azide-biotin tag was used to enrich and release the modified peptides for LC-MS/MS analys
ORGANISM(S):
Homo sapiens (Human)
2023-12-07
|
PXD046852
|
Pride
Top-abpp
npspyne
npssyne
dpdsyne
Cite
Previous
page
1 / 1
You're on page
1
Next
page
Sort
by:
Relevance
Page size
10
OmicsDI
is part of the ELIXIR infrastructure
OmicsDI is an Elixir interoperability service.
Learn more ›
Tweets