2,911
Views
25
CrossRef citations to date
0
Altmetric
Research Paper

Histidine residues at the copper-binding site in human tyrosinase are essential for its catalytic activities

, , , , &
Pages 726-732 | Received 06 Oct 2019, Accepted 01 Mar 2020, Published online: 17 Mar 2020

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Panupong Mahalapbutr, Napat Nuramrum, Thanyada Rungrotmongkol, Napat Kongtaworn & Sahachai Sabuakham. (2023) Structural dynamics and susceptibility of isobutylamido thiazolyl resorcinol (ThiamidolTM) against human and mushroom tyrosinases. Journal of Biomolecular Structure and Dynamics 41:21, pages 11810-11817.
Read now
Rodrigo Mendez, Sumaiya Iqbal, Sebastián Vishnopolska, Cinthia Martinez, Glenda Dibner, Rocio Aliano, Jonathan Zaiat, Germán Biagioli, Cecilia Fernandez, Adrian Turjanski, Arthur J Campbell, Graciela Mercado & Marcelo A. Marti. (2021) Oculocutaneous albinism type 1B associated with a functionally significant tyrosinase gene polymorphism detected with Whole Exome Sequencing. Ophthalmic Genetics 42:3, pages 291-295.
Read now
Ying Liu, Yue Han, Tingting Zhu, Xianglei Wu, Wenxin Yu, Jiafang Zhu, Ying Shang, Xiaoxi Lin & Tianlan Zhao. (2021) Targeting delivery and minimizing epidermal diffusion of tranexamic acid by hyaluronic acid-coated liposome nanogels for topical hyperpigmentation treatment. Drug Delivery 28:1, pages 2100-2107.
Read now

Articles from other publishers (22)

Nuriye Korkmaz, Sandiego Himawan, Muhammed Usman, Seungyun Baik & Minyoung Kim. (2023) Bacteriophage Engineering for Improved Copper Ion Binding. Macromolecular Bioscience.
Crossref
Shuchang Luo, Ting Tu, Zhuo Chen, Yong Zhong, Jun Xu, Shaolei Lu & Xiaoyuan Sun. (2023) Magneto‐structural correlations of oximato‐bridged dinuclear copper( II ) complex: A theoretical perspective . International Journal of Quantum Chemistry 123:17.
Crossref
Meng Xiao Li, Kai Wen Kang, Min Huang, Ru Cheng, Wei Wang, Jie Gao & Jian Wang. (2023) Simple and rapid detection of tyrosinase activity with the adjustable light scattering properties of CoOOH nanoflakes. Analytical and Bioanalytical Chemistry 415:18, pages 4569-4578.
Crossref
Qasar Saleem, Sammia Shahid, Abdur Rahim, Majed A. Bajaber, Sana Mansoor, Mohsin Javed, Shahid Iqbal, Ali Bahadur, Samar O. Aljazzar, Rami Adel Pashameah, Samah A. AlSubhi, Eman Alzahrani & Abd-ElAziem Farouk. (2023) A highly explicit electrochemical biosensor for catechol detection in real samples based on copper-polypyrrole. RSC Advances 13:20, pages 13443-13455.
Crossref
Yuchu Zhao, Shiting Yu, Yue Wang, Yanyan Chen, Jingjing Chen, Jiawen Wang, Meichen Liu & Siming Wang. (2023) Pueraria protein extract inhibits melanogenesis and promotes melanoma cell apoptosis through the regulation of MITF and mitochondrial‑related pathways. Molecular Medicine Reports 27:3.
Crossref
Athapaththu Mudiyanselage Gihan Kavinda Athapaththu, Sobarathne Senel Sanjaya, Kyoung Tae Lee, Wisurumuni Arachchilage Hasitha Maduranga Karunarathne, Yung Hyun Choi, Sung-Pyo Hur & Gi-Young Kim. (2023) Pinostrobin Suppresses the α-Melanocyte-Stimulating Hormone-Induced Melanogenic Signaling Pathway. International Journal of Molecular Sciences 24:1, pages 821.
Crossref
Minhye Shin, Van-Long Truong, Minjee Lee, Donggyu Kim, Myun Soo Kim, Hana Cho, Young Hoon Jung, Jungwoo Yang, Woo Sik Jeong & Younghoon Kim. (2023) Investigation of phenyllactic acid as a potent tyrosinase inhibitor produced by probiotics. Current Research in Food Science 6, pages 100413.
Crossref
Qun Yu, Liuping Fan & Zhongyang Ding. (2022) The inhibition mechanisms between asparagus polyphenols after hydrothermal treatment and tyrosinase: A circular dichroism spectrum, fluorescence, and molecular docking study. Food Bioscience 48, pages 101790.
Crossref
Yahya S. Alqahtani, Bandar A. Alyami, Ali O. Alqarni, Mater H. Mahnashi, Anser Ali, Qamar Javed, Mubashir Hassan & Muhammad Ehsan. (2022) Cephalosporin as Potent Urease and Tyrosinase Inhibitor: Exploration through Enzyme Inhibition, Kinetic Mechanism, and Molecular Docking Studies. BioMed Research International 2022, pages 1-11.
Crossref
Xinwei Xiong, Yanfei Cao, Zhixin Li, Ronglian Huang, Yu Jiao, Liqiang Zhao, Xiaodong Du & Zhe Zheng. (2022) Insights from tyrosinase into the impacts of modified morphology of calcium carbonate on the nacre formation of pearl oysters. Frontiers in Marine Science 9.
Crossref
Zilin Zhong, Zheng Zhou, Jianjun Chen & Jun Zhang. (2022) Identification of 12 OCA Cases in Chinese Population and Two Novel Variants. Frontiers in Genetics 13.
Crossref
Agnieszka Krzemińska, Natalia Kwiatos, Franciela Arenhart Soares & Alexander Steinbüchel. (2022) Theoretical Studies of Cyanophycin Dipeptides as Inhibitors of Tyrosinases. International Journal of Molecular Sciences 23:6, pages 3335.
Crossref
Kyung Eun Lee, Shiv Bharadwaj, Amaresh Kumar Sahoo, Umesh Yadava & Sang Gu Kang. (2021) Determination of tyrosinase-cyanidin-3-O-glucoside and (−/+)-catechin binding modes reveal mechanistic differences in tyrosinase inhibition. Scientific Reports 11:1.
Crossref
Yameng Xu, Yaokang Wu, Xueqin Lv, Guoyun Sun, Hongzhi Zhang, Taichi Chen, Guocheng Du, Jianghua Li & Long Liu. (2021) Design and construction of novel biocatalyst for bioprocessing: Recent advances and future outlook. Bioresource Technology 332, pages 125071.
Crossref
Patrícia Correia, Hélder Oliveira, Paula Araújo, Natércia F. Brás, Ana Rita Pereira, Joana Moreira, Victor de Freitas, Nuno Mateus, Joana Oliveira & Iva Fernandes. (2021) The Role of Anthocyanins, Deoxyanthocyanins and Pyranoanthocyanins on the Modulation of Tyrosinase Activity: An In Vitro and In Silico Approach. International Journal of Molecular Sciences 22:12, pages 6192.
Crossref
Jiaman Liu, Yuqing Liu, Xiaofeng He, Bo Teng & Jacqui M. McRae. (2021) Valonea Tannin: Tyrosinase Inhibition Activity, Structural Elucidation and Insights into the Inhibition Mechanism. Molecules 26:9, pages 2747.
Crossref
Ioannis Kampatsikas & Annette Rompel. (2020) Similar but Still Different: Which Amino Acid Residues Are Responsible for Varying Activities in Type‐III Copper Enzymes?. ChemBioChem 22:7, pages 1161-1175.
Crossref
Lijun Li, Yuchen Cai, Xu Sun, Xiping Du, Zedong Jiang, Hui Ni, Yuanfan Yang & Feng Chen. (2020) Tyrosinase inhibition by p ‐coumaric acid ethyl ester identified from camellia pollen . Food Science & Nutrition 9:1, pages 389-400.
Crossref
Dharmender K. Gahlot, Nayyer Taheri, Dhani Ram Mahato & Matthew S. Francis. (2020) Bioengineering of non-pathogenic Escherichia coli to enrich for accumulation of environmental copper. Scientific Reports 10:1.
Crossref
Hua-jin Zeng, Dong-qin Sun, San-hui Chu, Jun-jun Zhang, Gui-zhou Hu & Ran Yang. (2020) Inhibitory effects of four anthraquinones on tyrosinase activity: Insight from spectroscopic analysis and molecular docking. International Journal of Biological Macromolecules 160, pages 153-163.
Crossref
Nobutaka Fujieda, Kyohei Umakoshi, Yuta Ochi, Yosuke Nishikawa, Sachiko Yanagisawa, Minoru Kubo, Genji Kurisu & Shinobu Itoh. (2020) Copper–Oxygen Dynamics in the Tyrosinase Mechanism. Angewandte Chemie International Edition 59:32, pages 13385-13390.
Crossref
Nobutaka Fujieda, Kyohei Umakoshi, Yuta Ochi, Yosuke Nishikawa, Sachiko Yanagisawa, Minoru Kubo, Genji Kurisu & Shinobu Itoh. (2020) Copper–Oxygen Dynamics in the Tyrosinase Mechanism. Angewandte Chemie 132:32, pages 13487-13492.
Crossref