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The biochemical principles of life are based on both organic and inorganic chemistry. My laboratory focuses on the inorganic biochemical aspects, namely how the nutritionally essential transition metal ions maintain human life and how they support growth and development. Manganese, iron, copper, and zinc ions are constituents of thousands of proteins and function in enzymatic catalysis and protein structure. Transition metal ions regulate protein functions and proteins regulate their availability. For these activities, proteins employ dynamic coordination environments that link metal ion binding and protein conformational changes.
Cellular metal ion homeostasis requires multiple proteins for transport, sensing, chaperoning, and other functions in a network of tightly controlled interactions and with full integration into metabolism and signaling. The metal-regulatory proteins employ specific molecular mechanisms. One mechanism is the sulfur-ligand centered reactivity in zinc/thiolate coordination environments.
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论文共 223 篇作者统计合作学者相似作者
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crossref(2024)
Drug Discovery Todayno. 2 (2024): 103861
JOURNAL OF INORGANIC BIOCHEMISTRY (2024): 112431-112431
Biochemical Society Transactionsno. 1 (2024): 269-278
Natural Product Communicationsno. 8 (2024)
Xiuchuan (Lucas) Hu,Wenfeng Xiao, Yuxian Lei,Adam Green, Xinyi Lee,Muralidhara Rao Maradana,Yajing Gao,Xueru Xie, Rui Wang,George Chennell,M. Albert Basson,Pete Kille,Wolfgang Maret,Gavin A. Bewick,Yufeng Zhou,Christer Hogstrand
Nature Communicationsno. 1 (2023)
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#Papers: 223
#Citation: 16383
H-Index: 67
G-Index: 126
Sociability: 6
Diversity: 0
Activity: 1
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