Abstract

Nontypeable Haemophilus influenzae is an opportunistic human pathogen causing otitis media in children and chronic bronchitis and pneumonia in patients with chronic obstructive pulmonary disease. The outer membrane of nontypeable H. influenzae is dominated by lipooligosaccharides (LOS), many of which incorporate sialic acid as a terminal nonreducing sugar. Sialic acid has been demonstrated to be an important factor in the survival of the bacteria within the host environment. H. influenzae is incapable of synthesizing sialic acid and is dependent on scavenging free sialic acid from the host environment. To achieve this, H. influenzae utilizes a tripartite ATP-independent periplasmic transporter. In this study, we characterize the binding site of the extracytoplasmic solute receptor (SiaP) from nontypeable H. influenzae strain 2019. A crystal structure of N-acetyl-5-neuraminic acid (Neu5Ac)-bound SiaP was determined to 1.4A resolution. Thermodynamic characterization of Neu5Ac binding shows this interaction is enthalpically driven with a substantial unfavorable contribution from entropy. This is expected because the binding of SiaP to Neu5Ac is mediated by numerous hydrogen bonds and has several buried water molecules. Point mutations targeting specific amino acids were introduced in the putative binding site. Complementation with the mutated siaP constructs resulted either in full, partial, or no complementation, depending on the role of specific residues. Mass spectrometry analysis of the O-deacylated LOS of the R127K point mutation confirmed the observation of reduced incorporation of Neu5Ac into the LOS. The decreased ability of H. influenzae to import sialic acid had negative effects on resistance to complement-mediated killing and viability of biofilms in vitro, confirming the importance of sialic acid transport to the bacterium.

Highlights

  • LOS is sialylated prior to reaching the outer membrane by one of the following three sialyltransferases: SiaA, Lic3A, and LsgB [7, 10]

  • Aside from incorporation into LOS, sialic acid can be utilized as a carbon and nitrogen source by the bacteria, the first step of which is mediated by neuraminyl lyase (NanA) [13]

  • TA cloning vector, ampicillin, kanamycin Source of kanamycin resistance gene nptII, ampicillin, kanamycin pCR2.1-TOPO containing region around HI0146 in NTHi 2019 genome, ampicillin pCR146 with nptII inserted in the PacI site of HI0146, ampicillin, kanamycin pCR601.1 with the EcoRI/BsrG fragment from pCRSp2 in pCR601.1 digested with

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Summary

Relevant phenotype or genotype

FϪ ␾dlacZ⌬M15 ⌬(lacZYA-argF) U169 recA1 endA1 hFϪ sdmRc1r7A(r⌬KϪ(mmrKrϩ-h)spdhRoMA Ssu-mpEc4rB4␭C-)th␾i8-10lgaycrZA⌬9M6 r1e5lA⌬1lacX74 recA1 ara⌬139 ⌬(ara-leu)7697 galU galK rpsL (StrR) endA1 nupG. Clinical respiratory isolate siaT (HI0147) mutant, erythromycin resistant siaP (HI0146) mutant, kanamycin (ribostamycin) NTHi 2019siaP mutant with an intact copy of siaP within HI0601.1, kanamycin (ribostamycin), Spectinomycin siaPT double mutant, kanamycin (ribostamycin) and erythromycin-resistant

Description and selection marker
This study
EXPERIMENTAL PROCEDURES
Most favored
RESULTS
ELISA analysis of point mutations
Complete complementation
Sialylated glycoformsd
DISCUSSION
Putative solute
Full Text
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