Optimized protocol for expression and purification of membrane-bound PglB, a bacterial oligosaccharyl transferase

•A protocol for recombinant production of PglB, a bacterial oligosaccharyl transferase.•PglB was overexpressed in Escherichia coli using high-density autoinduction.•An average procedure gives 550-fold purification with 64% yield.•Pure enzyme retains full catalytic activity for over two months . Aspa...

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Veröffentlicht in:Protein expression and purification 2013-06, Vol.89 (2), p.241-250
Hauptverfasser: Jaffee, Marcie B., Imperiali, Barbara
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container_title Protein expression and purification
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creator Jaffee, Marcie B.
Imperiali, Barbara
description •A protocol for recombinant production of PglB, a bacterial oligosaccharyl transferase.•PglB was overexpressed in Escherichia coli using high-density autoinduction.•An average procedure gives 550-fold purification with 64% yield.•Pure enzyme retains full catalytic activity for over two months . Asparagine-linked glycosylation (NLG) plays a significant role in a diverse range of cellular processes, including protein signaling and trafficking, the immunologic response, and immune system evasion by pathogens. A major impediment to NLG-related research is an incomplete understanding of the central enzyme in the biosynthetic pathway, the oligosaccharyl transferase (OTase). Characterization of the OTase is critical for developing ways to inhibit, engineer, and otherwise manipulate the enzyme for research and therapeutic purposes. The minimal understanding of this enzyme can be attributed to its complex, transmembrane structure, and the resulting instability and resistance to overexpression and purification. The following article describes an optimized procedure for recombinant expression and purification of PglB, a bacterial OTase, in a stably active form. The conditions screened at each step, the order of screening, and the method of comparing conditions are described. Ultimately, the following approach increased expression levels from tens of micrograms to several milligrams of active protein per liter of Escherichia coli culture, and increased stability from several hours to greater than six months post-purification. This represents the first detailed procedure for attaining a pure, active, and stable OTase in milligram quantities. In addition to presenting an optimized protocol for expression and purification of PglB, these results present a general guide for the systematic optimization of the expression, purification, and stability of a large, transmembrane protein.
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Asparagine-linked glycosylation (NLG) plays a significant role in a diverse range of cellular processes, including protein signaling and trafficking, the immunologic response, and immune system evasion by pathogens. A major impediment to NLG-related research is an incomplete understanding of the central enzyme in the biosynthetic pathway, the oligosaccharyl transferase (OTase). Characterization of the OTase is critical for developing ways to inhibit, engineer, and otherwise manipulate the enzyme for research and therapeutic purposes. The minimal understanding of this enzyme can be attributed to its complex, transmembrane structure, and the resulting instability and resistance to overexpression and purification. The following article describes an optimized procedure for recombinant expression and purification of PglB, a bacterial OTase, in a stably active form. The conditions screened at each step, the order of screening, and the method of comparing conditions are described. Ultimately, the following approach increased expression levels from tens of micrograms to several milligrams of active protein per liter of Escherichia coli culture, and increased stability from several hours to greater than six months post-purification. This represents the first detailed procedure for attaining a pure, active, and stable OTase in milligram quantities. 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Ultimately, the following approach increased expression levels from tens of micrograms to several milligrams of active protein per liter of Escherichia coli culture, and increased stability from several hours to greater than six months post-purification. This represents the first detailed procedure for attaining a pure, active, and stable OTase in milligram quantities. 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purification</subject><subject>Membrane Proteins - metabolism</subject><subject>Models, Molecular</subject><subject>Oligosaccharyl transferase</subject><subject>PglB</subject><subject>Purification protocol</subject><subject>Recombinant expression</subject><subject>Recombinant Proteins - chemistry</subject><subject>Recombinant Proteins - genetics</subject><subject>Recombinant Proteins - isolation &amp; purification</subject><subject>Recombinant Proteins - metabolism</subject><subject>Solubility</subject><issn>1046-5928</issn><issn>1096-0279</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2013</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNqNkU1rFTEYhYMotlZ_gBvJ0oUz5nsmCEItfkGhLnQdMpk3t7lkJtNkpqi_3lxuLboRVwk5z3s4bw5CzylpKaHq9b5dYGkZobwloiWEPkCnlGjVENbph4e7UI3UrD9BT0rZV4AqIh-jE8ZlzzUXp-jmalnDFH7CiJec1uRSxD5lDN-XDKWENGM7V23LwQdn18ND8niCach2hmZIW5W_7OK7V9jiwboVcrARpxh2qVjnrm3-EfFa4eIh2wJP0SNvY4Fnd-cZ-vbh_deLT83l1cfPF-eXjZOkWxsGIKUGPWgFEryXVJOhU1yTvhdCUNWD5c4PbATduZ4CB2CyZ5oN3Grl-Rl6e_RdtmGC0cFcQ0Sz5DDVSCbZYP5W5nBtdunWcKWJkF01eHlnkNPNBmU1UygOYqx7p60YyrXWREkp_gOVpNeCc1JRekRdTqVk8PeJKDGHVs3e1FbNoVVDhKml1ZkXf65yP_G7xgq8OQJQP_Q2QDbFBZgdjCGDW82Ywj_sfwHt3rWI</recordid><startdate>20130601</startdate><enddate>20130601</enddate><creator>Jaffee, Marcie B.</creator><creator>Imperiali, Barbara</creator><general>Elsevier Inc</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><scope>7QL</scope><scope>7T7</scope><scope>8FD</scope><scope>C1K</scope><scope>FR3</scope><scope>P64</scope><scope>5PM</scope></search><sort><creationdate>20130601</creationdate><title>Optimized protocol for expression and purification of membrane-bound PglB, a bacterial oligosaccharyl transferase</title><author>Jaffee, Marcie B. ; 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subjects Asparagine-linked glycosylation
Campylobacter jejuni - enzymology
Campylobacter jejuni - genetics
Chromatography, Affinity
Cloning, Molecular
Enzyme Stability
Escherichia coli
Escherichia coli - genetics
Gene Expression
Glycosylation
Hexosyltransferases - chemistry
Hexosyltransferases - genetics
Hexosyltransferases - isolation & purification
Hexosyltransferases - metabolism
Membrane protein
Membrane Proteins - chemistry
Membrane Proteins - genetics
Membrane Proteins - isolation & purification
Membrane Proteins - metabolism
Models, Molecular
Oligosaccharyl transferase
PglB
Purification protocol
Recombinant expression
Recombinant Proteins - chemistry
Recombinant Proteins - genetics
Recombinant Proteins - isolation & purification
Recombinant Proteins - metabolism
Solubility
title Optimized protocol for expression and purification of membrane-bound PglB, a bacterial oligosaccharyl transferase
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