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Heikema, A. P.

Publications and source records attributed to Heikema, A. P..

2 recordsLinked to original sources

Identification of allo- or orthosteric VHH/single-domain antibodies that enhance or block pathogen binding to Siglec-1 on dendritic cells

O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=87 SRC="FIGDIR/small/695420v1_ufig1.gif" ALT="Figure 1"> View larger version (20K): org.highwire.dtl.DTLVardef@e85819org.highwire.dtl.DTLVardef@1eff6b4org.highwire.dtl.DTLVardef@12daa92org.highwire.dtl.DTLVardef@11959e5_HPS_FORMAT_FIGEXP M_FIG C_FIG BackgroundSiglec-1 (Sialoadhesin/CD169) is expressed on myeloid cells and plays a key role in host defences by capturing incoming sialylated-pathogens such as Campylobacter jejuni. However, binding to Siglec-1 has also been exploited by pathogens such as SARS-CoV-2 for further dissemination. ResultsHere we identified high-affinity VHHs also known as single-domain antibodies or Nanobodies that bind to Siglec-1 and allo- or orthosterically modulate ligand binding. VHH 2C2 was shown to bind directly to the ligand binding site of Siglec-1 and blocked binding of ganglioside liposomes and Campylobacter jejuni to monocyte-derived dendritic cells (moDCs) and ex vivo Siglec-1+ DCs. VHH 2C2 also blocked SARS-CoV-2 binding of moDCs. In contrast, the VHHs 1B5 and 1C1 interacted with Siglec-1 outside the ligand binding site and acted as positive allosteric modulators of Siglec-1 ligand interactions, as was illustrated by increased ganglioside liposome and Campylobacter jejuni binding by moDCs. Our data suggests that mechanistically, the VHH 1B5 and 1C1 interfere with the cis-binding sialic acids present on the Siglec-1-expressing cell and thereby enhance trans-interactions with ligands. ConclusionIn conclusion, we have isolated VHH that enhance or block Siglec-1 ligand binding to a variety of sialylated-pathogens enabling further interrogation of Siglec-1 function. Moreover, unlike conventional blocking antibodies targeting specific pathogens, Siglec-1 binding VHH could potentially serve as broad-spectrum pathogen blocking agents.

immunology↗

Co-occurrence of VIM-positive non-aeruginosa Pseudomonas spp. and Pseudomonas aeruginosa in the hospital: A detailed molecular comparison of blaVIM-2-containing plasmids from environmental and clinical isolates

BackgroundPseudomonas aeruginosa is a bacterial pathogen responsible for severe hospital-acquired infections, and is capable of forming persistent reservoirs in hospital sink drains, creating a transmission risk. In our hospital, we have cultured not only carbapenemase-producing, Verona Integron-encoded Metallo-beta-lactamase (VIM)-positive P. aeruginosa, but also VIM-positive non-aeruginosa Pseudomonas spp., from sink drains. Previously, a blaVIM-2-containing, conjugative plasmid conferring carbapenem resistance was found in a clinical P. aeruginosa isolate in our hospital. ObjectiveTo investigate if other Pseudomonas spp. from our hospital also carried a blaVIM-2-containing plasmid, genetically characterize these plasmids, and compare these plasmids to publicly-available plasmid sequences to identify their source. MethodsWhole-genome sequencing was used to sequence chromosomes and possible plasmids from VIM-positive non-aeruginosa Pseudomonas spp. and VIM-positive P. aeruginosa strains. Hybrid assemblies were generated to reconstruct plasmid sequences. All isolates were obtained from environmental sampling or clinical cultures during a prolonged VIM-positive P. aeruginosa outbreak in our hospital. ResultsAn identical blaVIM-2-containing plasmid was found in six non-aeruginosa Pseudomonas (P. carnis, P. oleovorans, and a novel species) and in three P. aeruginosa isolates. The previously-reported blaVIM-2-containing plasmid was found in three additional P. aeruginosa isolates. All P. aeruginosa belonged to high-risk clones ST111 or ST446. The two plasmids were derived from both clinical isolates and isolates from sink cultures, and were unique to our hospital when compared to other publicly-available plasmid sequences. ConclusionsDuring a VIM-positive P. aeruginosa outbreak in our hospital, two closely-related, blaVIM-2-containing plasmids co-occurred in multiple non-aeruginosa Pseudomonas spp. and in high-risk P. aeruginosa clones ST111 and ST446. Non-aeruginosa Pseudomonas spp. cultured from either patient or sink samples may be important sources of carbapenem resistance genes, and should not be overlooked during outbreak investigations. Moreover, plasmid analysis is essential to fully understand transmission routes in hospitals.

microbiology↗