The Lactococcal Phages Tuc2009 and TP901-1 Incorporate Two Alternate Forms of Their Tail Fiber into Their Virions for Infection Specialization [S]

Lactococcal phages Tuc2009 and TP901-1 possess a conserved tail fiber called a tail-associated lysin (referred to as Tal2009 for Tuc2009, and Tal901-1 for TP901-1), suspended from their tail tips that projects a peptidoglycan hydrolase domain toward a potential host bacterium. Tal2009 and Tal901-1 c...

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Veröffentlicht in:The Journal of biological chemistry 2013-02, Vol.288 (8), p.5581-5590
Hauptverfasser: Stockdale, Stephen R., Mahony, Jennifer, Courtin, Pascal, Chapot-Chartier, Marie-Pierre, van Pijkeren, Jan-Peter, Britton, Robert A., Neve, Horst, Heller, Knut J., Aideh, Bashir, Vogensen, Finn K., van Sinderen, Douwe
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Sprache:eng
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Zusammenfassung:Lactococcal phages Tuc2009 and TP901-1 possess a conserved tail fiber called a tail-associated lysin (referred to as Tal2009 for Tuc2009, and Tal901-1 for TP901-1), suspended from their tail tips that projects a peptidoglycan hydrolase domain toward a potential host bacterium. Tal2009 and Tal901-1 can undergo proteolytic processing mid-protein at the glycine-rich sequence GG(S/N)SGGG, removing their C-terminal structural lysin. In this study, we show that the peptidoglycan hydrolase of these Tal proteins is an M23 peptidase that exhibits d-Ala-d-Asp endopeptidase activity and that this activity is required for efficient infection of stationary phase cells. Interestingly, the observed proteolytic processing of Tal2009 and Tal901-1 facilitates increased host adsorption efficiencies of the resulting phages. This represents, to the best of our knowledge, the first example of tail fiber proteolytic processing that results in a heterogeneous population of two phage types. Phages that possess a full-length tail fiber, or a truncated derivative, are better adapted to efficiently infect cells with an extensively cross-linked cell wall or infect with increased host-adsorption efficiencies, respectively.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M112.444901