AI Article Synopsis

  • Tyrosinases are type-III copper enzymes involved in melanin production, with varying structures and regulation among different organisms.
  • The bacterial tyrosinase (Tyr) is unique as it operates without a caddie protein for copper, making it more similar to eukaryotic tyrosinases.
  • X-ray crystallography revealed that Tyr shares structural similarities with plant and fungal tyrosinases, suggesting interesting insights into its evolutionary background.

Article Abstract

Tyrosinases belong to the type-III copper enzyme family, which is involved in melanin production in a wide range of organisms. Despite similar overall characteristics and functions, their structures, activities, substrate specificities and regulation vary. The tyrosinase from the bacterium (Tyr) is produced as a pre-pro-enzyme in which a C-terminal extension serves as an inactivation domain. It does not require a caddie protein for copper ion incorporation, which makes it similar to eukaryotic tyrosinases. To gain an understanding of the catalytic machinery and regulation of Tyr activity, we determined the structure of the catalytically active "core domain" of Tyr by X-ray crystallography. The analysis showed that Tyr is an atypical bacterial tyrosinase not only because it is independent of a caddie protein but also because it shows the highest structural (and sequence) similarity to plant-derived members of the type-III copper enzyme family and is more closely related to fungal tyrosinases regarding active site features. By modelling the structure of the pre-pro-enzyme using AlphaFold, we observed that Phe453, located in the C-terminal extension, is appropriately positioned to function as a "gatekeeper" residue. Our findings raise questions concerning the evolutionary origin of Tyr.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10526336PMC
http://dx.doi.org/10.3390/biom13091360DOI Listing

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