Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
2029729 | Structure | 2014 | 12 Pages |
Abstract
The cell-envelope of Mycobacterium tuberculosis plays a key role in bacterial virulence and antibiotic resistance. Little is known about the molecular mechanisms of regulation of cell-envelope formation. Here, we elucidate functional and structural properties of RNase AS, which modulates M. tuberculosis cell-envelope properties and strongly impacts bacterial virulence in vivo. The structure of RNase AS reveals a resemblance to RNase T from Escherichia coli, an RNase of the DEDD family involved in RNA maturation. We show that RNase AS acts as a 3â²-5â²-exoribonuclease that specifically hydrolyzes adenylate-containing RNA sequences. Also, crystal structures of complexes with AMP and UMP reveal the structural basis for the observed enzyme specificity. Notably, RNase AS shows a mechanism of substrate recruitment, based on the recognition of the hydrogen bond donor NH2 group of adenine. Our work opens a field for the design of drugs able to reduce bacterial virulence in vivo.
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Authors
Maria Romano, Robert van de Weerd, Femke C.C. Brouwer, Giovanni N. Roviello, Ruben Lacroix, Marion Sparrius, Gunny van den Brink-van Stempvoort, Janneke J. Maaskant, Astrid M. van der Sar, Ben J. Appelmelk, Jeroen J. Geurtsen, Rita Berisio,