| Title : Structural and mechanistic basis of capsule O-acetylation in Neisseria meningitidis serogroup A - Fiebig_2020_Nat.Commun_11_4723 | 
| Author(s) : Fiebig T , Cramer JT , Bethe A , Baruch P , Curth U , Fuhring JI , Buettner FFR , Vogel U , Schubert M , Fedorov R , Muhlenhoff M | 
| Ref : Nat Commun , 11 :4723 , 2020 | 
| 
            Abstract :  
                             O-Acetylation of the capsular polysaccharide (CPS) of Neisseria meningitidis serogroup A (NmA) is critical for the induction of functional immune responses, making this modification mandatory for CPS-based anti-NmA vaccines. Using comprehensive NMR studies, we demonstrate that O-acetylation stabilizes the labile anomeric phosphodiester-linkages of the NmA-CPS and occurs in position C3 and C4 of the N-acetylmannosamine units due to enzymatic transfer and non-enzymatic ester migration, respectively. To shed light on the enzymatic transfer mechanism, we solved the crystal structure of the capsule O-acetyltransferase CsaC in its apo and acceptor-bound form and of the CsaC-H228A mutant as trapped acetyl-enzyme adduct in complex with CoA. Together with the results of a comprehensive mutagenesis study, the reported structures explain the strict regioselectivity of CsaC and provide insight into the catalytic mechanism, which relies on an unexpected Gln-extension of a classical Ser-His-Asp triad, embedded in an alpha/beta-hydrolase fold.  | 
    
| PubMedSearch : Fiebig_2020_Nat.Commun_11_4723 | 
| PubMedID: 32948778 | 
| Gene_locus related to this paper: neime-r0tza2 | 
| Substrate | CPS-DP4 Acetyl-CoA | 
| Gene_locus | neime-r0tza2 | 
| Structure | 6YUO 6YUS 6YUV 6YUQ | 
    Fiebig T, Cramer JT, Bethe A, Baruch P, Curth U, Fuhring JI, Buettner FFR, Vogel U, Schubert M, Fedorov R, Muhlenhoff M (2020)
        Structural and mechanistic basis of capsule O-acetylation in Neisseria meningitidis serogroup A
        Nat Commun
        11        :4723
    Fiebig T, Cramer JT, Bethe A, Baruch P, Curth U, Fuhring JI, Buettner FFR, Vogel U, Schubert M, Fedorov R, Muhlenhoff M (2020)
        Nat Commun
        11        :4723