Biochemical characterization of the major N-acetylmuramidase from Lactobacillus buchneri

Author:

Anzengruber Julia1,Courtin Pascal23,Claes Ingmar J. J.4,Debreczeny Monika5,Hofbauer Stefan6,Obinger Christian6,Chapot-Chartier Marie-Pierre23,Vanderleyden Jos4,Messner Paul1,Schäffer Christina1

Affiliation:

1. Department of NanoBiotechnology, NanoGlycobiology unit, Universität für Bodenkultur Wien, Muthgasse 11, 1190 Vienna, Austria

2. AgroParisTech, UMR Micalis, Jouy-en-Josas, France

3. INRA and AgroParisTech, UMR1319 Micalis, 78350 Jouy-en-Josas, France

4. Center of Microbial and Plant Genetics, K.U. Leuven, 3001 Leuven, Belgium

5. VIBT Imaging Centre, Universität für Bodenkultur Wien, Muthgasse 11, 1190 Vienna, Austria

6. Department of Chemistry, Universität für Bodenkultur Wien, Muthgasse 18, 1190 Vienna, Austria

Abstract

Bacterial cell wall hydrolases are essential for peptidoglycan remodelling in regard to bacterial cell growth and division. In this study, peptidoglycan hydrolases (PGHs) of different Lactobacillus buchneri strains were investigated. First, the genome sequence of L. buchneri CD034 and L. buchneri NRRL B-30929 was analysed in silico for the presence of PGHs. Of 23 putative PGHs with different predicted hydrolytic specificities, the glycosyl hydrolase family 25 domain-containing homologues LbGH25B and LbGH25N from L. buchneri CD034 and NRRL B-30929, respectively, were selected and characterized in detail. Zymogram analysis confirmed hydrolysing activity on bacterial cell walls for both enzymes. Subsequent reversed-phase HPLC and MALDI-TOF MS analysis of the peptidoglycan breakdown products from L. buchneri strains CD034 and NRRL B-30929, and from Lactobacillus rhamnosus GG, which served as a reference, revealed that LbGH25B and LbGH25N have N-acetylmuramidase activity. Both enzymes were identified as cell wall-associated proteins by means of immunofluorescence microscopy and cellular fractionation, as well as by the ability of purified recombinant LbGH25B and LbGH25N to bind to L. buchneri cell walls in vitro. Moreover, similar secondary structures mainly composed of β-sheets and nearly identical thermal stabilities with T m values around 49 °C were found for the two N-acetylmuramidases by far-UV circular dichroism spectroscopy. The functional and structural data obtained are discussed and compared to related PGHs. In this study, a major N-acetylmuramidase from L. buchneri was characterized in detail for the first time.

Funder

Région Ile de France

INRA

Hochschuljubiläumsstiftung der Stadt Wien

Austrian Science Fund

Publisher

Microbiology Society

Subject

Microbiology

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