Dynamic, variable oligomerization and the trafficking of variant surface glycoproteins of Trypanosoma brucei

التفاصيل البيبلوغرافية
العنوان: Dynamic, variable oligomerization and the trafficking of variant surface glycoproteins of Trypanosoma brucei
المؤلفون: Monique van Straaten, Karine Lapouge, Monica Chandra, Brandon Waxman, Johan Zeelen, C. Erec Stebbins, Khan Umaer, James D. Bangs, Francisco Aresta-Branco
المصدر: Traffic (Copenhagen, Denmark)REFERENCES. 22(8)
سنة النشر: 2021
مصطلحات موضوعية: Glycosylphosphatidylinositols, Size-exclusion chromatography, Cell, Trypanosoma brucei brucei, Biology, Trypanosoma brucei, Biochemistry, Oligomer, 03 medical and health sciences, chemistry.chemical_compound, 0302 clinical medicine, Antigen, Structural Biology, Genetics, medicine, Molecular Biology, Pathogen, Secretory pathway, 030304 developmental biology, 0303 health sciences, Membrane Glycoproteins, Cell Membrane, Cell Biology, biology.organism_classification, In vitro, Cell biology, medicine.anatomical_structure, chemistry, 030217 neurology & neurosurgery, Variant Surface Glycoproteins, Trypanosoma
الوصف: African trypanosomes cause disease in humans and livestock, avoiding host immunity by changing the expression of variant surface glycoproteins (VSGs); the major glycosylphosphatidylinositol (GPI) anchored antigens coating the surface of the bloodstream stage. Proper trafficking of VSGs is therefore critical to pathogen survival. The valence model argues that GPI anchors regulate progression and fate in the secretory pathway and that, specifically, a valence of two (VSGs are dimers) is critical for stable cell surface association. However, recent reports that the MITat1.3 (M1.3) VSG N-terminal domain (NTD) behaves as a monomer in solution and in a crystal structure challenge this model. We now show that the behavior of intact M1.3 VSG in standard in vivo trafficking assays is consistent with an oligomer. Nevertheless, Blue Native Gel electrophoresis and size exclusion chromatography-multiangle light scattering chromatography of purified full length M1.3 VSG indicates a monomer in vitro. However, studies with additional VSGs show that multiple oligomeric states are possible, and that for some VSGs oligomerization is concentration dependent. These data argue that individual VSG monomers possess different propensities to self-oligomerize, but that when constrained at high density to the cell surface, oligomeric species predominate. These results resolve the apparent conflict between the valence hypothesis and the M1.3 NTD VSG crystal structure.
تدمد: 1600-0854
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8bba81f68818a90b0ffc45877a76c8fa
https://pubmed.ncbi.nlm.nih.gov/34101314
حقوق: CLOSED
رقم الأكسشن: edsair.doi.dedup.....8bba81f68818a90b0ffc45877a76c8fa
قاعدة البيانات: OpenAIRE