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4.
Med Teach ; 43(6): 718-720, 2021 06.
Article in English | MEDLINE | ID: mdl-32643504

ABSTRACT

This Personal View is about our experience with preclinical education as medical students. We discuss the problem with current medical education in light of an ever-growing body of medical knowledge and increasing student disengagement with preclinical lectures. We briefly review the concept of retrieval practice as an effective, evidence-based learning strategy that helped us retain knowledge for longer periods and propose that medical educators should adopt this strategy to best prepare medical students to navigate the vastly expanding scope of modern medicine.


Subject(s)
Education, Medical, Undergraduate , Education, Medical , Students, Medical , Clinical Competence , Curriculum , Humans , Learning
5.
J Biol Chem ; 290(20): 12908-18, 2015 May 15.
Article in English | MEDLINE | ID: mdl-25817994

ABSTRACT

Pyrroloquinoline quinone (PQQ) is a product of a ribosomally synthesized and post-translationally modified pathway consisting of five conserved genes, pqqA-E. PqqE is a radical S-adenosylmethionine (RS) protein with a C-terminal SPASM domain, and is proposed to catalyze the formation of a carbon-carbon bond between the glutamate and tyrosine side chains of the peptide substrate PqqA. PqqD is a 10-kDa protein with an unknown function, but is essential for PQQ production. Recently, in Klebsiella pneumoniae (Kp), PqqD and PqqE were shown to interact; however, the stoichiometry and KD were not obtained. Here, we show that the PqqE and PqqD interaction transcends species, also occurring in Methylobacterium extorquens AM1 (Me). The stoichiometry of the MePqqD and MePqqE interaction is 1:1 and the KD, determined by surface plasmon resonance spectroscopy (SPR), was found to be ∼12 µm. Moreover, using SPR and isothermal calorimetry techniques, we establish for the first time that MePqqD binds MePqqA tightly (KD ∼200 nm). The formation of a ternary MePqqA-D-E complex was captured by native mass spectrometry and the KD for the MePqqAD-MePqqE interaction was found to be ∼5 µm. Finally, using a bioinformatic analysis, we found that PqqD orthologues are associated with the RS-SPASM family of proteins (subtilosin, pyrroloquinoline quinone, anaerobic sulfatase maturating enzyme, and mycofactocin), all of which modify either peptides or proteins. In conclusion, we propose that PqqD is a novel peptide chaperone and that PqqD orthologues may play a similar role in peptide modification pathways that use an RS-SPASM protein.


Subject(s)
Bacterial Proteins/chemistry , Endopeptidases/chemistry , Methylobacterium extorquens/chemistry , Molecular Chaperones/chemistry , Multiprotein Complexes/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Endopeptidases/genetics , Endopeptidases/metabolism , Mass Spectrometry , Methylobacterium extorquens/genetics , Methylobacterium extorquens/metabolism , Molecular Chaperones/genetics , Molecular Chaperones/metabolism , Multiprotein Complexes/genetics , Multiprotein Complexes/metabolism , Surface Plasmon Resonance
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