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Membrane proteins are crucial targets for cancer biomarker discovery and drug development. However, in addition to the inherent challenges of hydrophobicity and low abundance, complete membrane proteome coverage of clinical specimen is usually hindered by the requirement of large amount of starting ...
ORGANISM(S): Rattus rattus (Black rat) Homo sapiens (Human) 
2015-11-16 | PXD001548 | Pride
Several significant efforts have been made in the past decade to map all human proteome. However, more than 3000 proteins are grouped as missing having no evidence of translation. Membrane protein annotation of the current missing proteins list showed 34%to be missing membrane proteins, which are ch...
ORGANISM(S): Homo sapiens (Human) 
2015-07-27 | PXD002224 | Pride
To increase the coverage of membrane protein identification,we developed high-pH reverse phase (Hp-RP) combined with stop-and-go extraction tip (StageTip) technique, as a fast (∼15 min.). Almost 5000 proteins (∼60% membrane proteins) can be identified in only 10 μg of membrane protein digests, showi...
ORGANISM(S): Homo Sapiens (human) 

Fecal microbiota transplantation (FMT) represents a potential strategy to overcome resistance to immune checkpoint inhibitors in patients with refractory melanoma; however, the role of FMT in first-line treatment settings has not been evaluated. We conducted a multicenter phase I trial combining ...

2025-02-27 | MTBLS711 | MetaboLights
Proteomics research has increasingly focused on human cells, tissues, and fluids; however, comprehensive data regarding dental tissues remain limited. Dentin, a mineralized component of the tooth, contains structural proteins and bioactive molecules that, upon release, can modulate pulp cell acti...
ORGANISM(S): Homo sapiens (Human) 
2026-03-23 | PXD070849 | Pride
K562 cell lysates were prefractionated by protein reversed-phase chromatography (Prot-RP), SDS-PAGE, and high-pH peptide RP (Pept-RP) to compare their method characteristics. The starting material was prefractionated to 10 fractions for each method. Each prefractionation method was conducted in trip...
ORGANISM(S): Homo Sapiens (human) 
The global proteome analysis was limited by the identification of peptides with low abundance or specific physiochemical properties. Here, a one-dimensional online alkaline-pH reverse phase nanoelectrospray-tandem mass spectrometry (AlkalinepH-MS/MS) method was developed and optimized for global pro...
ORGANISM(S): Homo Sapiens 
2023-01-15 | PXD039453 |
In order to identify more MPs and get deeper proteomic data of testis. We applied high-pH reverse phase (RP) HPLC to fractionate complex samples.On the other hand, to enhance protein coverage, multi-protease strategies were used for 10% SDS-PAGE short separation samples.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2020-11-19 | MSV000086491 | MassIVE
To build a reference proteome, we established a BV-2 microglial proteome to a depth of 5494 unique protein groups using a novel strategy that combined FASP, StageTip-based high pH fractionation, and high-resolution mass spectrometry quickly and cost-efficiently. By bioinformatics analysis, the BV-2 ...
ORGANISM(S): Mus musculus (Mouse) 
2013-09-11 | PXD000168 | Pride
For in-depth profiling, ascites from patients with benign disease or gastric cancer were subjected to high-resolution mass spectromtery analysis. By high-pH peptide fractionation, 3481 protein groups were identified in 72 LC-MS/MS runs.
ORGANISM(S): Homo sapiens (Human) 
2018-04-16 | PXD003351 | Pride
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