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Lipid transfer proteins (LTPs) maintain the specialised lipid compositions of biological membranes, and many are associated with disease. In eukaryotes, they support organellar functions by transporting lipids between compartmentalised metabolic pathways. However, for the majority of the hundreds...

2025-11-14 | MTBLS9567 | MetaboLights
Lipid transfer proteins (LTPs) shuttle their cargo lipids between cellular membranes. LTPs facilitate the costly extraction of a lipid from a donor membrane, and its delivery into the acceptor membrane, but the mechanisms remain poorly understood. We combined extensive molecular dynamics simulations...
2026-10-06 | MTBLS15933 | MetaboLights

Gut-resident bacteria must withstand membrane-disrupting stresses such as bile acids to persist in the intestinal environment. The Bacteroidota are a dominant phylum of the human gut microbiota. However, the genes responsible for synthesis of membrane lipids in this phylum remain relatively uncha...

2026-10-06 | MTBLS11891 | MetaboLights
Motility in the Archaea domain is facilitated by a unique motility structure termed the archaellum. N-glycosylation of the major structural proteins (archaellins) is important for their subsequent incorporation into the archaellum filament. Here, we report the structure of the archaellin glycan from...
ORGANISM(S): Methanothermococcus thermolithotrophicus DSM 2095 
2020-10-14 | PXD019548 | Pride
Caulobacter crescentus is unique in that it has two homologous, seemingly redundant outer membrane proteins, RsaFa and RsaFb, that, together with other components, form a type I protein translocation pathway for S-layer export. RsaFa and RsaFb are required to prevent intracellular accumulation and a...
ORGANISM(S): Caulobacter vibrioides 
2016-09-26 | GSE83526 | GEO
the project aims to provide a glycomic and glycoproteomic approach to reveal S-layer glycosylation on lactobacillus kefiri aggregating and non-aggregating strains
ORGANISM(S): Lactobacillus kefiri 
2020-08-24 | PXD020358 | Pride
his project provides tandem mass spectrometry data of extracellular non-covalently bound cell surface proteins from samples of Bacillus cereus AH187 devoid of the S-layer 2 (SL2) and extractable antigen 1 (EA1) S-layer proteins. The double mutant strain was grown on liquid MOD medium supplemented wi...
ORGANISM(S): Bacillus cereus AH187 
2022-08-12 | PXD033494 | Pride
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