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Pentalenolactone-insensitive glyceraldehyde-3-phosphate dehydrogenase fromStreptomyces arenae is closely related to GAPDH from thermostable eubacteria and plant chloroplasts
Authors:Kai-Uwe Fröhlich  Ralf Kannwischer  Manfred Rüdiger  Dieter Mecke
Affiliation:(1) Physiologisch-chemisches Institut, Universität Tübingen, Hoppe-Seyler-Strasse 4, D-72076 Tübingen, Germany;(2) Zoologisches Institut-Zellbiologie, TU Braunschweig, Spielmannstrasse 7, D-38092 Braunschweig, Germany
Abstract:Streptomyces arenae produces the antibiotic pentalenolactone, a highly specific inhibitor of glyceraldehyde-3-phosphate dehydrogenase (GAPDH). During the phase of pentalenolactone production,S. arenae expresses a pentalenolactone-insensitive GAPDH isoform; otherwise, a pentalenolactone-sensitive form is expressed. The gene of the pentalenolactone-insensitive GAPDH was cloned and sequenced. Regulatory elements typical for genes encoding antibiotic resistance and production are localized upstream and downstream of the open reading frame. No expression of pentalenolactone-insensitive GAPDH was detected inStreptomyces lividans transformed with the gene. InEscherichia coli, the gene was expressed from an inducedlac promoter. Amino-terminal sequencing of the heterologously expressed GAPDH proved its identity with pentalenolactone-insensitive GAPDH fromS. arenae. Sequence comparisons with GAPDH from other organisms showed a close relationship to GAPDH of plant chloroplasts, of other gram-positive bacteria, and of thermophilic gram-negative bacteria. Pentalenolactone-insensitive GAPDH differs from all closely related GAPDHs only in a few residues, none of which are directly involved in catalysis or substrate binding. The total amino acid composition is more similar to GAPDH of thermophilic species than to that of mesophilic species. The purified enzyme was moderately thermotolerant, which could be a side effect of the structural changes causing pentalenolactone-resistance.Abbreviations GAP Glyceraldehyde-3-phosphate - GAPDH Glyceraldehyde-3-phosphate dehydrogenase
Keywords:Glyceraldehyde-3-phosphate dehydrogenase  Streptomyces arenae  Antibiotic resistance  Sequence comparison  Evolution
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