Proton Pumps

Proton pumps are membrane proteins that transport hydrogen ions, or protons, across biological membranes to create electrochemical gradients essential for cellular function. Using energy from ATP hydrolysis or electron-transfer reactions, they move protons against their concentration gradient, establishing differences in pH and electrical charge that can drive ATP synthesis, nutrient transport, and other processes. In biology, proton pumps help acidify organelles such as lysosomes, regulate cellular and tissue pH, and support energy production in mitochondria and bacteria. Their activity also influences digestion, membrane transport, cellular signaling, and the action of drugs that target acid secretion.

Proton Pumps - Related Videos

Education

JoVE Core - Pharmacology

Acid Suppressive Drugs for Peptic Ulcer Disease: Proton Pump Inhibitors

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2024

Peptic ulcers, often induced by H. pylori infections or NSAID usage, arise from disruptions in the delicate balance of gastric acid production. Peptic ulcers stem from heightened gastric acid levels due to H. pylori infections or NSAID use. The protective mucus layer diminishes in the presence of these factors, allowing gastric acid to erode the stomach lining and form ulcers. Gastric acid, a potent cocktail of hydrogen and chloride ions, is produced in specialized parietal cells within the...

Research

JoVE Journal - Biochemistry

Single Liposome Measurements for the Study of Proton-Pumping Membrane Enzymes Using Electrochemistry and Fluorescent Microscopy

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Cited by 4 •

2019

Here, we present a protocol to study the molecular mechanism of proton translocation across lipid membranes of single liposomes, using cytochrome bo3 as an example. Combining electrochemistry and fluorescence microscopy, pH changes in the lumen of single vesicles, containing single or multiple enzyme, can be detected and analyzed individually.

Proton Exchange Membrane Fuel Cells

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2023

Source: Laboratories of Margaret Workman and Kimberly Frye - Depaul University The United States consumes a large amount of energy – the current rate is around 97.5 quadrillion BTUs annually. The vast majority (90%) of this energy comes from non-renewable fuel sources. This energy is used for electricity (39%), transportation (28%), industry (22%), and residential/commercial use (11%). As the world has a limited supply of these non-renewable sources, the United States (among others) is...

Research

JoVE Journal - Biology
Free Sample

In vitro Investigation of the MexAB Efflux Pump From Pseudomonas aeruginosa

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Cited by 11 •

2014

We present a protocol for the in vitro investigation of efflux pumps from Pseudomonas aeruginosa. This protocol allows for the generation of a robust, reversible, and tunable proton gradient within the liposome membrane and hence should be adaptable to any membrane protein energized by the protomotive force.

ATP Driven Pumps III: V-type Pumps

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2023

V-type pumps are ATP-driven pumps found in the vacuolar membranes of plants, yeast, endosomal and lysosomal membranes of animal cells, plasma membranes of a few specialized eukaryotic cells, and some prokaryotes. They are also known as the V1Vo-ATPase, that couple ATP hydrolysis to transport protons against a concentration gradient. The peripheral or cytosolic V1 domain with eight subunits is involved in ATP hydrolysis. The integral or transmembrane V0 domain containing at least five subunits...

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