Difference between revisions of "Part:BBa K4134001"
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<partinfo>BBa_K4134001 short</partinfo> | <partinfo>BBa_K4134001 short</partinfo> | ||
− | Homo sapiens antioxidant 1 copper chaperone (ATOX1), mRNA. This gene can be expressed in prokaryotic systems. As an Atx1-like copper chaperone, Atox1 is mainly responsible for delivering intracellular Cu(I) in eukaryotic cells, with very little perturbation by the Ag binding. Interestingly, Atox1 has been reported to combine silver ions in form of a tetrasilver cluster in its dimer. Atox1 captures silver ions and paves the way for a new approach to synthesizing silver nanoparticles. | + | ==Description== |
+ | <html><p> | ||
+ | Homo sapiens antioxidant 1 copper chaperone (ATOX1), mRNA. This gene can be expressed in prokaryotic systems. </p></html> | ||
+ | <p> | ||
+ | As an Atx1-like copper chaperone, Atox1 is mainly responsible for delivering intracellular Cu(I) in eukaryotic cells, with very little perturbation by the Ag binding. Interestingly, Atox1 has been reported to combine silver ions in form of a tetrasilver cluster in its dimer. | ||
+ | </p> | ||
+ | Atox1 captures silver ions and paves the way for a new approach to synthesizing silver nanoparticles. | ||
+ | |||
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Revision as of 15:21, 11 October 2022
Atox1
Description
Homo sapiens antioxidant 1 copper chaperone (ATOX1), mRNA. This gene can be expressed in prokaryotic systems.
As an Atx1-like copper chaperone, Atox1 is mainly responsible for delivering intracellular Cu(I) in eukaryotic cells, with very little perturbation by the Ag binding. Interestingly, Atox1 has been reported to combine silver ions in form of a tetrasilver cluster in its dimer.
Atox1 captures silver ions and paves the way for a new approach to synthesizing silver nanoparticles.
Sequence and Features
Assembly Compatibility:
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]