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首页|Glycoproteomics of Haloferax volcanii reveals an extensive glycoproteome and concurrence of different N -glycosylation pathways

Glycoproteomics of Haloferax volcanii reveals an extensive glycoproteome and concurrence of different N -glycosylation pathways

Glycoproteomics of Haloferax volcanii reveals an extensive glycoproteome and concurrence of different N -glycosylation pathways

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Glycosylation is one of the most complex post-translational protein modifications. Its importance has been established not only for eukaryotes but also for a variety of prokaryotic cellular processes, such as biofilm formation, motility and mating. However, comprehensive glycoproteomic analyses are largely missing in prokaryotes. Here we extend the phenotypic characterisation of N-glycosylation pathway mutants in Haloferax volcanii and provide a detailed glycoproteome for this model archaeon through the mass spectrometric analysis of intact glycopeptides. Using in-depth glycoproteomic datasets generated for the wild-type and mutant strains as well as a reanalysis of datasets within the Archaeal Proteome Project, we identify the largest archaeal glycoproteome described so far. We further show that different N-glycosylation pathways can modify the same glycosites under the same culture conditions. The extent and complexity of the Hfx. volcanii N-glycoproteome revealed here provides new insights into the roles of N-glycosylation in archaeal cell biology.

Garcia Benjamin A.、Schulze Stefan、Pfeiffer Friedhelm、Pohlschroder Mechthild

Epigenetics Institute, Department of Biochemistry and Biophysics, Perelman School of Medicine, University of PennsylvaniaDepartment of Biology, University of PennsylvaniaComputational Biology Group, Max Planck Institute of BiochemistryDepartment of Biology, University of Pennsylvania

10.1101/2021.01.21.427637

生物科学研究方法、生物科学研究技术细胞生物学生物化学

Garcia Benjamin A.,Schulze Stefan,Pfeiffer Friedhelm,Pohlschroder Mechthild.Glycoproteomics of Haloferax volcanii reveals an extensive glycoproteome and concurrence of different N -glycosylation pathways[EB/OL].(2025-03-28)[2025-05-09].https://www.biorxiv.org/content/10.1101/2021.01.21.427637.点此复制

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