Klaas Martinus Pos (Goethe University Frankfurt; ORCID 0000-0001-9035-3827) has 126 works with ~7,827 citations and an h-index of 43 . His peak-cited contributions are the 2006 Science paper establishing the AcrB peristaltic pump mechanism (602 citations) , a 2012 PNAS switch-loop transport mechanism study (354 citations), and the 2017 Nature Microiology permeability perspective .
Three recent primary studies show sustained mechanistic depth with explicit controls. The A. baumannii conduit preprint (novelty 10/10) uses cryo-ET, STED-PAINT, DNase/purified-DNA controls, and long-read WGS of 22 double-resistant clones (14 recombinants; segments 200β1,100 kb) β though transfer was tested in only one strain pair and no conduit-biogenesis gene was identified . The mSystems efflux-pump study uses isogenic knockouts with WGS-confirmed genotypes, nβ₯3 replicates, and RT-qPCR validation, but only in strain ATCC19606 and without combinatorial mutants . The MlaC biophysics study (native MS, MS/MS, CIU-IMS; n=3 replicates) reports dimer lipid retention 2-fold above monomer at 50 V and 7.4Β±0.6% vs 2.4Β±0.8% lyso-PG, but lacks any functional experiments in C. jejuni itself .
Strengths: mechanistic depth, strong controls, open data deposits (BioProjects PRJNA1516054 etc.), multi-technique triangulation, and honest reporting of counterevidence (e.g., secA point-mutant clones not arising from conduits). Weaknesses: two of three recent papers are preprints (0 indexed citations); scope confined to single strains; functional validation gaps in the MlaC work; the 2017 perspective itself acknowledges limited in vivo validation of accumulation frameworks. No conflicts of interest were declared in any of the three recent works. Confidence: moderate β metrics are reliable (OpenAlex), but preprint status and zero citations for 2026 works mean impact remains untested; a cohort of 2026 works citing these studies would materially change the impact assessment.
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