Azospirillum irakense Produces a Novel Type of Pectate Lyase

Author:

Bekri My Ali1,Desair Jos1,Keijers Veerle1,Proost Paul2,Searle-van Leeuwen Marjo3,Vanderleyden Jos1,vande Broek Ann1

Affiliation:

1. F. A. Janssens Laboratory of Genetics, Catholic University of Leuven, 3001 Heverlee,1and

2. Rega Institute for Medical Research, Catholic University of Leuven, 3000 Leuven,2 Belgium, and

3. Department of Food Science, Wageningen Agricultural University, Wageningen, The Netherlands3

Abstract

ABSTRACT The pelA gene from the N 2 -fixing plant-associated bacterium Azospirillum irakense , encoding a pectate lyase, was isolated by heterologous expression in Escherichia coli . Nucleotide sequence analysis of the region containing pelA indicated an open reading frame of 1,296 bp, coding for a preprotein of 432 amino acids with a typical amino-terminal signal peptide of 24 amino acids. N-terminal amino acid sequencing confirmed the processing of the protein in E. coli at the signal peptidase cleavage site predicted by nucleotide sequence analysis. Analysis of the amino acid sequence of PelA revealed no homology to other known pectinases, indicating that PelA belongs to a new pectate lyase family. PelA macerates potato tuber tissue, has an alkaline pH optimum, and requires Ca 2+ for its activity. Of several divalent cations tested, none could substitute for Ca 2+ . Methyl-esterified pectin (with a degree of esterification up to 93%) and polygalacturonate can be used as substrates. Characterization of the degradation products formed upon incubation with polygalacturonate indicated that PelA is an endo-pectate lyase generating unsaturated digalacturonide as the major end product. Regulation of pelA expression was studied by means of a translational pelA-gusA fusion. Transcription of this fusion is low under all growth conditions tested and is dependent on the growth phase. In addition, pelA expression was found to be induced by pectin. An A. irakense pelA ::Tn 5 mutant still displayed pectate lyase activity, suggesting the presence of multiple pectate lyase genes in A. irakense .

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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