Pages that link to "Q56153034"
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The following pages link to Pauline Leverrier (Q56153034):
Displaying 18 items.
- Crystal Structure of the Outer Membrane Protein RcsF, a New Substrate for the Periplasmic Protein-disulfide Isomerase DsbC (Q27667359) (← links)
- Detecting envelope stress by monitoring β-barrel assembly. (Q30153263) (← links)
- Contribution of proteomics toward solving the fascinating mysteries of the biogenesis of the envelope of Escherichia coli (Q30157036) (← links)
- Characterization of the role of the Escherichia coli periplasmic chaperone SurA using differential proteomics (Q30157308) (← links)
- Insights into the function of YciM, a heat shock membrane protein required to maintain envelope integrity in Escherichia coli (Q30570527) (← links)
- Changes in protein synthesis and morphology during acid adaptation of Propionibacterium freudenreichii (Q33989441) (← links)
- The disulphide isomerase DsbC cooperates with the oxidase DsbA in a DsbD-independent manner (Q37038829) (← links)
- Susceptibility and adaptive response to bile salts in Propionibacterium freudenreichii: physiological and proteomic analysis (Q39788849) (← links)
- Repairing oxidized proteins in the bacterial envelope using respiratory chain electrons (Q42170670) (← links)
- Anti-stress activity of Propionibacterium freudenreichii : identification of a reactivative protein (Q44805830) (← links)
- Changes in protein synthesis during thermal adaptation of Propionibacterium freudenreichii subsp. shermanii (Q46940793) (← links)
- Protein disulfide bond formation in the periplasm: determination of the in vivo redox state of cysteine residues. (Q54319542) (← links)
- Dairy propionibacteria as probiotics (Q57910535) (← links)
- Metal binding to ligands: Cadmium complexes with glutathione revisited (Q57910537) (← links)
- Role of the yeast ABC transporter Yor1p in cadmium detoxification (Q57910539) (← links)
- In vitro tolerance to digestive stresses of propionibacteria: influence of food matrices (Q57910541) (← links)
- Mass spectrometry proteomic analysis of stress adaptation reveals both common and distinct response pathways in Propionibacterium freudenreichii (Q57910542) (← links)
- Article (Q57910544) (← links)