Publication: Impact of naturally occurring serine/cysteine variations on the structure and function of Pseudomonas metallothioneins
Impact of naturally occurring serine/cysteine variations on the structure and function of Pseudomonas metallothioneins
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Habjanič, J., Chesnov, S., Zerbe, O., & Freisinger, E. (2020). Impact of naturally occurring serine/cysteine variations on the structure and function of Pseudomonas metallothioneins. Metallomics, 12, 23–33. https://doi.org/10.1039/c9mt00213h
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Metallothioneins (MTs), small cysteine-rich metal-binding proteins, support the viability of organisms under normal physiological conditions and help them to respond to different environmental stressors. Upon metal coordination (e.g. ZnII, CdII, CuI) they form characteristic polynuclear metal–thiolate clusters that are known for their high thermodynamic stability and kinetic lability. However, despite numerous studies, it is still not understood how MTs modulate their metal-binding properties. Pseudomonas MTs are an emerging subclass
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Habjanič, J., Chesnov, S., Zerbe, O., & Freisinger, E. (2020). Impact of naturally occurring serine/cysteine variations on the structure and function of Pseudomonas metallothioneins. Metallomics, 12, 23–33. https://doi.org/10.1039/c9mt00213h