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Ampyrone is a direct agonist of human tyrosinase and a potential therapeutic for hypopigmentation disorders
Monika B. Dolinska, Yuhong Wang, Nathan P. Coussens, Vijay K. Kalaskar, Zuhal Eraslan, Samuel J. Grondin, Joseph Bonica, Sarah Toay, Matthew D. Hall, Min Shen, Matthew Boxer, Qiuying Chen, Steven S. Gross, Nabeel Attarwala, Yingyos Jittayasothorn, Ramakrishna P. Alur, Dhyanam Shukla, Robin Kee, Charles DeYoung, Cuilee Sha, David R. Adams, Stacie K. Loftus, Tiziana Cogliati, Yuri V. Sergeev, Jonathan H. Zippin, Brian P. Brooks
Monika B. Dolinska, Yuhong Wang, Nathan P. Coussens, Vijay K. Kalaskar, Zuhal Eraslan, Samuel J. Grondin, Joseph Bonica, Sarah Toay, Matthew D. Hall, Min Shen, Matthew Boxer, Qiuying Chen, Steven S. Gross, Nabeel Attarwala, Yingyos Jittayasothorn, Ramakrishna P. Alur, Dhyanam Shukla, Robin Kee, Charles DeYoung, Cuilee Sha, David R. Adams, Stacie K. Loftus, Tiziana Cogliati, Yuri V. Sergeev, Jonathan H. Zippin, Brian P. Brooks
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Research Article Dermatology Ophthalmology

Ampyrone is a direct agonist of human tyrosinase and a potential therapeutic for hypopigmentation disorders

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Abstract

Significant loss of pigmentation can increase visual disability, skin cancer risk, and psychosocial stress. Tyrosinase (TYR) catalyzes the first and rate-limiting step of melanin synthesis. Inhibitors of TYR are well established and are currently used in clinical settings; however, there is a dearth of direct activators of TYR. Here, using a human TYR construct, we developed high-throughput screening methods, in cell confirmatory assays employing 13C-tyrosine tracing, and computational analysis techniques, and identified ampyrone (4-aminoantipyrine) as a TYR activator. Ampyrone increased the in vitro catalytic activity of the human recombinant intramelanosomal domain of TYR (hTYR) and its hypomorphic variant, Pro406Leu (P406L), a cause of oculocutaneous albinism type 1B (OCA1B). Moreover, ampyrone induced melanin synthesis in both WT and OCA1B human melanocytes, mouse OCA2 melanocytes, as well as 3-dimensional (3D) human skin cultures. Computational studies provided additional insight into the effects of direct TYR agonists on enzyme activity. Our results identify ampyrone as a lead candidate for TYR activation, potentially supporting the development of therapies for patients with genetic and acquired diseases of hypopigmentation.

Authors

Monika B. Dolinska, Yuhong Wang, Nathan P. Coussens, Vijay K. Kalaskar, Zuhal Eraslan, Samuel J. Grondin, Joseph Bonica, Sarah Toay, Matthew D. Hall, Min Shen, Matthew Boxer, Qiuying Chen, Steven S. Gross, Nabeel Attarwala, Yingyos Jittayasothorn, Ramakrishna P. Alur, Dhyanam Shukla, Robin Kee, Charles DeYoung, Cuilee Sha, David R. Adams, Stacie K. Loftus, Tiziana Cogliati, Yuri V. Sergeev, Jonathan H. Zippin, Brian P. Brooks

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Figure 4

Computational modeling of ampyrone effects in hTYRWT and hTYRP406L.

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Computational modeling of ampyrone effects in hTYRWT and hTYRP406L.
(A a...
(A and B) The active site in the absence (Protein/Black, Substrate/Light purple, Cu/Red, O2/Red) and presence (Protein/Blue, Substrate/Dark purple, Cu/Orange, O2/Red) of ampyrone shows movements in the 6 catalytic histidine residues for both hTYRWT (A) and hTYRP406L (B) when binding L-tyrosine. Coppers A and B (CuA and CuB) can be read left to right in all panels. (C and D) Porcupine plots display the movements of the α carbon atoms of select active site residues in the absence and presence of ampyrone for hTYRWT (C) and hTYRP406L (D). (E–H) Free energy landscapes mapping the distance V377-CB-CZ-F347 and V377-CB-NZ-K334 in angstroms (Å) for hTYRWT-unbound (E), hTYRWT-bound (F), hTYRP406L-unbound (G), hTYRP406L-bound (H).

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