Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemical strategies, but the molecular mechanisms responsible for the resistance to the harmful effects of the metalloid have only partially been examined. In this study, we investigated the mechanisms of arsenic resistance in the thermophilic bacterium Thermus thermophilus HB27. This strain, originally isolated from a Japanese hot spring, exhibited tolerance to concentrations of arsenate and arsenite up to 20mM and 15mM, respectively; it owns in its genome a putative chromosomal arsenate reductase (TtarsC) gene encoding a protein homologous to the one well characterized from the plasmid pI258 of the Gram+bacterium Staphylococcus aureus. Different...
Arsenic is a natural trace element found in the environment in different oxidation states. Exposure ...
Arsenic (As) is one of the most toxic metalloids, as it is harmful to all organisms. The two most im...
Arsenate reductases (ArsCs) evolved independently as a defence mechanism against toxic arsenate. In ...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Introduction Microorganisms living in arsenic-rich geothermal environments act on arsenic using di...
Arsenic is an ubiquitous toxic metalloid naturally present in the soil, water and air that adversely...
Arsenic is a natural trace element found in the environment in different oxidation states. Exposure ...
Arsenic is a natural trace element found in the environment in different oxidation states. Exposure ...
Arsenic (As) is one of the most toxic metalloids, as it is harmful to all organisms. The two most im...
Arsenate reductases (ArsCs) evolved independently as a defence mechanism against toxic arsenate. In ...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Microorganisms living in arsenic-rich geothermal environments act on arsenic with different biochemi...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Arsenic detoxification systems can be found in a wide range of organisms, from bacteria to humans. I...
Introduction Microorganisms living in arsenic-rich geothermal environments act on arsenic using di...
Arsenic is an ubiquitous toxic metalloid naturally present in the soil, water and air that adversely...
Arsenic is a natural trace element found in the environment in different oxidation states. Exposure ...
Arsenic is a natural trace element found in the environment in different oxidation states. Exposure ...
Arsenic (As) is one of the most toxic metalloids, as it is harmful to all organisms. The two most im...
Arsenate reductases (ArsCs) evolved independently as a defence mechanism against toxic arsenate. In ...