Cu(I) and Cu(II) binding by hyperactive variants of the human CTR1 N-terminus: Insights from cellular and model peptide studies

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10.1016/j.jinorgbio.2026.113339

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Ruth, Kaylee, Emily Post, Xiaobin Wu, Heejeong Kim, M Jake Pushie, Maria Escobedo, Kristin Kuter, Jaekwon Lee, et al. (2026). Cu(I) and Cu(II) binding by hyperactive variants of the human CTR1 N-terminus: Insights from cellular and model peptide studies. Journal of Inorganic Biochemistry, 282. pp. 113339–113339. 10.1016/j.jinorgbio.2026.113339 Retrieved from https://hdl.handle.net/10161/34617.

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Haas

Kathryn Haas

Associate Professor of the Practice of Chemistry

Biological molecules can unlock and harness the special chemical power of metal ions, while also maintaining control of metal homeostasis. The Haas Lab investigates the interactions between metal ions and polypeptides, with a focus on the proteins that harness copper redox chemistry in human extracellular fluids and at membrane interfaces.


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