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A protocol for harvesting and extracting extracellular metabolites from an in vitro model of human renal cell lines was developed to profile the exometabolome by means of a discovery-based metabolomics approach using ultraperformance liquid chromatography coupled to quadrupole-time-of-flight mass sp...
2018-11-14 | MTBLS737 | MetaboLights
Mass spectrometry based footprinting can probe higher order structure of proteins. We bond photocatalytic nanoparticles to a lipid bilayer that, upon laser irradiation, produce high local concentrations of radicals that penetrate the lipid layer made permeable by a simultaneous laser-initiated PB re...
ORGANISM(S): Homo sapiens (Human) 
2021-09-26 | PXD027819 | Pride
Identification of the coding elements in the genome is a fundamental step to understanding the building blocks of living systems. Short peptides (< 100 aa) have emerged as important regulators of development and physiology, but their identification has been limited by their size. We have leveraged t...
ORGANISM(S): Danio rerio 
Recent studies highlight the importance of translational control in determining protein abundance, underscoring the value of measuring gene expression at the level of translation. We present a protocol for genome-wide, quantitative analysis of in vivo translation by deep sequencing. This ribosome pr...
ORGANISM(S): Homo sapiens 
So far, the annotation of translation initiation sites (TISs) has been based mostly upon bioinformatics rather than experimental evidence. We adapted ribosomal footprinting to puromycin-treated cells to generate a transcriptome-wide map of TISs in a human monocytic cell line. A neural network was tr...
ORGANISM(S): Homo sapiens 
Specific interactions between proteins and their binding partners are fundamental to life processes. Differential protein footprinting using a new and efficient, photo-activated aryltrifluromethylcarbene probe together with mass spectrometry has been employed to identify protein-ligand and protein-p...
ORGANISM(S): Homo sapiens (Human) Gallus gallus (Chicken) 
2016-12-19 | PXD004971 | Pride
Using carbene footprinting, we map the MOMP-QPLEX interaction and show by complementary in silico docking that QPLEX enters the porin channel through interactions at the extracellular face, translocates down the channel through a dipole transverse electric field towards the opposite end and is relea...
ORGANISM(S): Campylobacter jejuni subsp. jejuni NCTC 11168-PO 
2022-09-26 | PXD035978 | Pride
Mapping the interaction sites between membrane spanning proteins is a key challenge in structural biology. Here we develop and apply carbene footprinting technology to identify the interfacial sites of a trimeric membrane protein. We show how the footprinting probe is effectively incorporated into d...
ORGANISM(S): Escherichia coli 
2017-09-29 | PXD007207 | Pride
Massively multiplex single-molecule oligonucleosome footprinting
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