N-linked glycosylation is an essential and highly conserved co- and post-translational protein modification in all domains of life. In humans, genetic defects in N-linked glycosylation pathways result in metabolic diseases collectively called Congenital Disorders of Glycosylation. In this modification reaction, a mannose rich oligosaccharide is transferred from a lipid-linked donor substrate to a specific asparagine side-chain within the -N-X-T/S- sequence (where Xâ??â?*â??Proline) of the nascent protein. Oligosaccharyltransferase (OST), a multi-subunit membrane embedded enzyme catalyzes this glycosylation reaction in eukaryotes. In yeast, Ost4 is the smallest of nine subunits and bridges the interaction of the catalytic subunit, Stt3, with Ost3 (or its homolog, Ost6). Mutations of any C-terminal hydrophobic residues in Ost4 to a charged residue destabilizes the enzyme and negatively impacts its function. Specifically, the V23D mutation results in a temperature-sensitive phenotype in yeast. Here, we report the reconstitution of both purified recombinant Ost4 and Ost4V23D each in a POPC/POPE lipid bilayer and their resonance assignments using heteronuclear 2D and 3D solid-state NMR with magic-angle spinning. The chemical shifts of Ost4 changed significantly upon the V23D mutation, suggesting a dramatic change in its chemical environment.
[NMR paper] NMR and MD Simulations Reveal the Impact of the V23D Mutation on the Function of Yeast Oligosaccharyltransferase Subunit Ost4.
NMR and MD Simulations Reveal the Impact of the V23D Mutation on the Function of Yeast Oligosaccharyltransferase Subunit Ost4.
Related Articles NMR and MD Simulations Reveal the Impact of the V23D Mutation on the Function of Yeast Oligosaccharyltransferase Subunit Ost4.
Glycobiology. 2021 Jan 12;:
Authors: Chaudhary BP, Zoetewey DL, McCullagh MJ, Mohanty S
Abstract
Asparagine-linked glycosylation, also known as N-linked glycosylation, is an essential and highly conserved co- and post-translational protein modification in...
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01-15-2021 04:25 PM
[NMR paper] Reconstitution and NMR Characterization of the Ion-Channel Accessory Subunit Barttin in Detergents and Lipid-Bilayer Nanodiscs.
Reconstitution and NMR Characterization of the Ion-Channel Accessory Subunit Barttin in Detergents and Lipid-Bilayer Nanodiscs.
Related Articles Reconstitution and NMR Characterization of the Ion-Channel Accessory Subunit Barttin in Detergents and Lipid-Bilayer Nanodiscs.
Front Mol Biosci. 2019;6:13
Authors: Viennet T, Bungert-Plümke S, Elter S, Viegas A, Fahlke C, Etzkorn M
Abstract
Barttin is an accessory subunit of ClC-K chloride channels expressed in the kidney and the inner ear. Main functions of ClC-K/barttin channels are...
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04-02-2019 02:58 PM
[NMR paper] Reconstitution of Isotopically Labeled Ribosomal Protein L29 in the 50S Large Ribosomal Subunit for Solution-State and Solid-State NMR.
Reconstitution of Isotopically Labeled Ribosomal Protein L29 in the 50S Large Ribosomal Subunit for Solution-State and Solid-State NMR.
Reconstitution of Isotopically Labeled Ribosomal Protein L29 in the 50S Large Ribosomal Subunit for Solution-State and Solid-State NMR.
Methods Mol Biol. 2018;1764:87-100
Authors: Barbet-Massin E, van der Sluis E, Musial J, Beckmann R, Reif B
Abstract
Solid-state nuclear magnetic resonance (NMR) has recently emerged as a method of choice to study structural and dynamic properties of large...
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04-02-2018 03:36 PM
[NMR paper] NMR resonance assignments for the N-terminal domain of the ? subunit of the E. coli ? clamp loader complex.
NMR resonance assignments for the N-terminal domain of the ? subunit of the E. coli ? clamp loader complex.
http://www.bionmr.com//www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--production.springer.de-OnlineResources-Logos-springerlink.gif Related Articles NMR resonance assignments for the N-terminal domain of the ? subunit of the E. coli ? clamp loader complex.
Biomol NMR Assign. 2017 Mar 06;:
Authors: Alyami EM, Rizzo AA, Beuning PJ, Korzhnev DM
Abstract
The ?-clamp protein and the ? clamp loader complex are essential...
[NMR paper] Detergent Optimized Membrane Protein Reconstitution in Liposomes for Solid State NMR.
Detergent Optimized Membrane Protein Reconstitution in Liposomes for Solid State NMR.
Related Articles Detergent Optimized Membrane Protein Reconstitution in Liposomes for Solid State NMR.
Biochemistry. 2014 Mar 25;
Authors: Murray DT, Griffin JM, Cross TA
Abstract
For small helical membrane proteins their structure is highly sensitive to their environment and solid state NMR is a structural technique that can characterize these membrane proteins in native like lipid bilayers and proteoliposomes. To date, a systematic method by which to...
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03-29-2014 01:00 PM
[NMR paper] Preparation of uniformly isotope labeled KcsA for solid state NMR: Expression, purification, reconstitution into liposomes and functional assay.
Preparation of uniformly isotope labeled KcsA for solid state NMR: Expression, purification, reconstitution into liposomes and functional assay.
Preparation of uniformly isotope labeled KcsA for solid state NMR: Expression, purification, reconstitution into liposomes and functional assay.
Protein Expr Purif. 2013 Aug 1;
Authors: Bhate MP, Wylie BJ, Thompson A, Tian L, Nimigean C, McDermott AE
Abstract
We report the expression, purification, liposome reconstitution and functional validation of uniformly (13)C and (15)N isotope labeled...
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08-07-2013 01:24 PM
[NMR paper] Subunit A of the E. coli ATP synthase: reconstitution and high resolution NMR with pr
Subunit A of the E. coli ATP synthase: reconstitution and high resolution NMR with protein purified in a mixed polarity solvent.
Related Articles Subunit A of the E. coli ATP synthase: reconstitution and high resolution NMR with protein purified in a mixed polarity solvent.
FEBS Lett. 2004 Jan 2;556(1-3):35-8
Authors: Dmitriev OY, Altendorf K, Fillingame RH
Subunit a of the Escherichia coli ATP synthase, a 30 kDa integral membrane protein, was purified to homogeneity by a novel procedure incorporating selective extraction into a monophasic...