scholarly journals MOLECULAR AND CELLULAR BIOLOGY OF β-LACTAM ANTIBIOTIC TRANSPORT VIA PEPTIDE TRANSPORTER

1995 ◽  
Vol 10 (supplement) ◽  
pp. 80-83
Author(s):  
Hideyuki SAITO ◽  
Tomohiro TERADA ◽  
Mayumi MUKAI ◽  
Masahiro OKUDA ◽  
Ken-ichi INUI
1998 ◽  
Vol 275 (6) ◽  
pp. C1573-C1579 ◽  
Author(s):  
Uwe Wenzel ◽  
Daniela Diehl ◽  
Martina Herget ◽  
Hannelore Daniel

The reabsorption of filtered di- and tripeptides as well as certain peptide mimetics from the tubular lumen into renal epithelial cells is mediated by an H+-coupled high-affinity transport process. Here we demonstrate for the first time H+-coupled uptake of dipeptides into the renal proximal tubule cell line LLC-PK1. Transport was assessed 1) by uptake studies using the radiolabeled dipeptided-[3H]Phe-l-Ala, 2) by cellular accumulation of the fluorescent dipeptided-Ala-Lys-AMCA, and 3) by measurement of intracellular pH (pHi) changes as a consequence of H+-coupled dipeptide transport. Uptake ofd-Phe-l-Ala increased linearly over 11 days postconfluency and showed all the characteristics of the kidney cortex high-affinity peptide transporter, e.g., a pH optimum for transport ofd-Phe-l-Ala of 6.0, an apparent K m value for influx of 25.8 ± 3.6 μM, and affinities of differently charged dipeptides or the β-lactam antibiotic cefadroxil to the binding site in the range of 20–80 μM. pHi measurements established the peptide transporter to induce pronounced intracellular acidification in LLC-PK1 cells and confirm its postulated role as a cellular acid loader.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Mirko Stauffer ◽  
Zöhre Ucurum ◽  
Daniel Harder ◽  
Dimitrios Fotiadis

AbstractNovel approaches in synthetic biology focus on the bottom-up modular assembly of natural, modified natural or artificial components into molecular systems with functionalities not found in nature. A possible application for such techniques is the bioremediation of natural water sources contaminated with small organic molecules (e.g., drugs and pesticides). A simple molecular system to actively accumulate and degrade pollutants could be a bionanoreactor composed of a liposome or polymersome scaffold combined with energizing- (e.g., light-driven proton pump), transporting- (e.g., proton-driven transporter) and degrading modules (e.g., enzyme). This work focuses on the engineering of a transport module specific for β-lactam antibiotics. We previously solved the crystal structure of a bacterial peptide transporter, which allowed us to improve the affinity for certain β-lactam antibiotics using structure-based mutagenesis combined with a bacterial uptake assay. We were able to identify specific mutations, which enhanced the affinity of the transporter for antibiotics containing certain structural features. Screening of potential compounds allowed for the identification of a β-lactam antibiotic ligand with relatively high affinity. Transport of antibiotics was evaluated using a solid-supported membrane electrophysiology assay. In summary, we have engineered a proton-driven β-lactam antibiotic translocation module, contributing to the growing toolset for bionanotechnological applications.


Author(s):  
R. H. Liss

Piperacillip (PIP) is b-[D(-)-α-(4-ethy1-2,3-dioxo-l-piperzinylcar-bonylamino)-α-phenylacetamido]-penicillanate. The broad spectrum semisynthetic β-lactam antibiotic is believed to effect bactericidal activity through its affinity for penicillin-binding proteins (PBPs), enzymes on the bacterial cytoplasmic membrane that control elongation and septation during cell growth and division. The purpose of this study was to correlate penetration and binding of 14C-PIP in bacterial cells with drug-induced lethal changes assessed by microscopic, microbiologic and biochemical methods.The bacteria used were clinical isolates of Escherichia coli and Pseudomonas aeruginosa (Figure 1). Sensitivity to the drug was determined by serial tube dilution in Trypticase Soy Broth (BBL) at an inoculum of 104 organisms/ml; the minimum inhibitory concentration of piperacillin for both bacteria was 1 μg/ml. To assess drug binding to PBPs, the bacteria were incubated with 14C-PIP (5 μg/0.09 μCi/ml); controls, in drug-free medium.


PEDIATRICS ◽  
2020 ◽  
Vol 146 (Supplement 4) ◽  
pp. S335.2-S336
Author(s):  
Alex Qian ◽  
Susan Laubach

2018 ◽  
Vol 69 (10) ◽  
pp. 2948-2939 ◽  
Author(s):  
Carmen Moldovan ◽  
Lidia Dobrescu ◽  
Violeta Ristoiu ◽  
Bogdan Firtat ◽  
Silviu Dinulescu ◽  
...  

This article presents experimental measurements performed in order to connect a neuronal cell culture to an exoprosthesis. The experiments focused on the biosignals� acquisition from the cell culture. A special gold-plated glass plate device was realized and several constructive variants were analyzed. A Olympus microscope with fluorescence and photo system was used. The acquisition of bio signals from the neuron culture is realized and described in the paper. The measurements were made in the sterile environment within the laboratory of Institute of Cellular Biology and Pathology. The measurements have been made for the pair of electrodes 1-1 at the edge of the glass plate.


Author(s):  
Silke Gastine ◽  
Yingfen Hsia ◽  
Michelle Clements ◽  
Charlotte IS Barker ◽  
Julia Bielicki ◽  
...  

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