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  3. Use of concatamers to study GABAA receptor architecture and function: application to delta-subunit-containing receptors and possible pitfalls
 

Use of concatamers to study GABAA receptor architecture and function: application to delta-subunit-containing receptors and possible pitfalls

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Publisher DOI
10.1042/BST0371338
PubMed ID
19909272
Description
Many membrane proteins, including the GABA(A) [GABA (gamma-aminobutyric acid) type A] receptors, are oligomers often built from different subunits. As an example, the major adult isoform of the GABA(A) receptor is a pentamer built from three different subunits. Theoretically, co-expression of three subunits may result in many different receptor pentamers. Subunit concatenation allows us to pre-define the relative arrangement of the subunits. This method may thus be used to study receptor architecture, but also the nature of binding sites. Indeed, it made possible the discovery of a novel benzodiazepine site. We use here subunit concatenation to study delta-subunit-containing GABA(A) receptors. We provide evidence for the formation of different functional subunit arrangements in recombinant alpha(1)beta(3)delta and alpha(6)beta(3)delta receptors. As with all valuable techniques, subunit concatenation has also some pitfalls. Most of these can be avoided by carefully titrating and minimizing the length of the linker sequences joining the two linked subunits and avoiding inclusion of the signal sequence of all but the N-terminal subunit of a multi-subunit construct. Maybe the most common error found in the literature is that low expression can be overcome by simply overloading the expression system with genetic information. As some concatenated constructs result by themselves in a low level of expression, this erroneous assembly leading to receptor function may be promoted by overloading the expression system and leads to wrong conclusions.
Date of Publication
2009
Publication Type
Article
Language(s)
en
Contributor(s)
Sigel, Erwin
Institut für Biochemie und Molekulare Medizin
Kaur, Kuldeep H
Lüscher, Benjamin
Institut für Biochemie und Molekulare Medizin
Baur, Roland
Institut für Biochemie und Molekulare Medizin
Additional Credits
Institut für Biochemie und Molekulare Medizin
Series
Biochemical Society transactions
Publisher
Portland Press
ISSN
0300-5127
Access(Rights)
metadata.only
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