Atp Biosensors

ATP biosensors are analytical tools that detect and quantify adenosine triphosphate, a central energy-carrying molecule whose concentration reflects cellular metabolism and physiological state. They typically couple ATP recognition to a measurable optical or electrochemical signal; for example, firefly luciferase uses ATP, luciferin, oxygen, and magnesium to produce light, while engineered fluorescent or bioluminescent reporters can translate ATP binding into changes in fluorescence or luminescence. In bioengineering, these sensors support real-time monitoring of energy dynamics in living cells, tissues, and engineered systems, helping researchers assess metabolism, stress responses, bioprocess performance, and the function of designed biological circuits.

Atp Biosensors - Related Videos

Research

JoVE Journal - Biology

Use of Enzymatic Biosensors to Quantify Endogenous ATP or H2O2 in the Kidney

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Cited by 12 •

2015

Enzymatic microelectrode biosensors enable real-time measurements of extracellular cell signaling in biologically-relevant concentrations. The following protocols extend the applications of biosensors to the ex vivo and in vivo detection of ATP and H2O2 in the kidney.

Ratiometric Biosensors that Measure Mitochondrial Redox State and ATP in Living Yeast Cells

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Cited by 46 •

2013

We describe the use of two ratiometric, genetically encoded biosensors, which are based on GFP, to monitor mitochondrial redox state and ATP levels at subcellular resolution in living yeast cells.

Education

JoVE Core - Biology

ATP Yield

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2019

Cellular respiration produces 30 - 32 ATP per glucose molecule. Although most of the ATP results from oxidative phosphorylation and the electron transport chain (ETC), 4 ATP are gained beforehand (2 from glycolysis and 2 from the citric acid cycle). The ETC is embedded in the inner mitochondrial membrane and is comprised of four main protein complexes and an ATP synthase. NADH and FADH2 pass electrons to these complexes, which pump protons into the intermembrane space. This distribution of...

The ATP Bioluminescence Assay

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2023

In fireflies, the luciferase enzyme converts a compound called luciferin into oxyluciferin, and produces light or “luminescence” as a result. This reaction requires energy derived from ATP in order to proceed, so researchers have exploited the luciferase-luciferin interaction to gauge ATP levels in cells. Given ATP’s role as the cell’s currency of energy, the ATP bioluminescence assay can provide insight into cellular metabolism and overall cell health.In this video, JoVE discusses cellular...

Hydrolysis of ATP

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2019

The bonds of adenosine triphosphate (ATP) can be broken through the addition of water, releasing one or two phosphate groups in an exergonic process called hydrolysis. This reaction liberates the energy in the bonds for use in the cell—for instance, to synthesize proteins from amino acids. If one phosphate group is removed, a molecule of ADP—adenosine diphosphate—remains, along with inorganic phosphate. ADP can be further hydrolyzed to AMP—adenosine monophosphate—by the removal of a second...

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