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Blandenet, M.

Publications and source records attributed to Blandenet, M..

2 recordsLinked to original sources

Characterisation of the RNA-Binding Properties of the MRSA β-lactam resistance enzyme PBP2a

Analysis of RNA-binding proteome data from different bacterial species revealed many cell wall metabolic enzymes cross-linking to RNA in vivo, hinting that these proteins directly bind RNA. Surprisingly, penicillin-binding proteins (PBPs) were also abundantly identified as putative RNA-binding proteins. The cell surface localisation properties of many of these proteins therefore beg the question at what stage of their cellular life cycle these proteins interact with RNA and what the functional significance is. Here, we characterised the RNA-binding activity of PBP2a, the alternative transpeptidase that confers {beta}-lactam resistance in MRSA. Using in vivo RNA-binding assays, we show that PBP2a interacts with hundreds of transcripts without apparent sequence specificity. Computational analyses identified a possible RNA-binding cleft in PBP2a proximal to its active site. Mutation of only two predicted positively charged residues located in this cleft substantially reduced cross-linking in vivo, implying that RNA recognition is largely dictated by RNA backbone interactions. While PBP2a does not regulate RNA steady-state levels, RNA-binding appears important for proper protein function: an RNA-binding deficient mutant exhibits reduced oxacillin resistance. These findings establish PBP2a as an RNA-binding protein in vivo and provide a framework to investigate how this non-canonical interaction may relate to cell wall biogenesis and {beta}-lactam resistance.

biochemistry↗

DUAL SECRETORY VESICLES CLUSTERING AND DYNAMICS DURING POLAR CELL ELONGATION IN THE PHYTOPATHOGENIC FUNGUS BOTRYTIS CINEREA

Polarized elongation in filamentous fungi depends on secretory vesicles being supplied and fusing at the apex. In Ascomycota and Basidiomycota, these vesicles have mostly been reported to accumulate into a spheroidal structure known as the spitzenkorper. Using time-lapse microscopy, the spatial and temporal dynamics of fluorescently-labelled vesicles were investigated in 13 apices of the phytopathogenic fungus Botrytis cinerea. Over time, the fluorescent signal highlighted the spheroid spitzenkorper in half the sample and a crescent-shaped region of the apical dome in the other half. A linear relationship was found between the roundness of the fluorescent region and the hyphal elongation rate. Temporal Dynamics Clustering and Fourier transform showed periodic pulses of fluorescence intensity in the spitzenkorper that were absent in the crescent-shape region. These results reveal a dual mode of secretory vesicles accumulation at the apex of growing hyphae. Highlights- Secretory Vesicles accumulation at the apex form a spheroid spitzenkorper or a crescent - Vesicles accumulation of at the spitzenkorper is periodic - Roundness of SV accumulation regions correlates with elongation rates

microbiology↗