Thermotoga Maritima

Thermotoga maritima is a hyperthermophilic, anaerobic bacterium that thrives in high-temperature marine environments and serves as a model for studying microbial life under extreme conditions. It grows near 80°C by fermenting organic compounds, using metabolic pathways that generate energy without oxygen, and is distinguished by a distinctive outer sheath called a toga. Its heat-stable enzymes support research in protein structure, molecular evolution, and industrial biocatalysis. The organism’s compact, extensively studied genome also provides insight into genome organization, horizontal gene transfer, and how microorganisms adapt to environments that resemble conditions on early Earth.

Thermotoga Maritima - Related Videos

Research

JoVE Journal - Biochemistry

Screening for Thermotoga maritima Membrane-Bound Pyrophosphatase Inhibitors

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Cited by 6 •

2019

Here we present a screening method for membrane-bound pyrophosphatase (from Thermotoga maritima) inhibitors based on the molybdenum blue reaction in a 96 well plate format.

X-Ray Crystallography to Study the Oligomeric State Transition of the Thermotoga maritima M42 Aminopeptidase TmPep1050

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Cited by 1 •

2020

This protocol has been developed to study the dimer-dodecamer transition of TmPep1050, an M42 aminopeptidase, at the structural level. It is a straightforward pipeline starting from protein purification to X-ray data processing. Crystallogenesis, data set indexation, and molecular replacement have been emphasized through a case of study, TmPep1050H60A H307A variant.

Screening Inhibitors of Bacterial Membrane-Bound Pyrophosphatase Using a Colorimetric Assay

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2025

Source: Vidilaseris, K., et al. Screening for Thermotoga maritima Membrane-Bound Pyrophosphatase Inhibitors. J. Vis. Exp. (2019)This video demonstrates a colorimetric assay to screen inhibitors of bacterial membrane-bound pyrophosphatase (mPPase) by quantifying orthophosphate release. The method enables identification of compounds that inhibit mPPase from Thermotoga maritima, a potential antimicrobial drug target.

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