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Updated: Jul 17, 2026

Purification of H3 and H4 Histone Proteins and the Quantification of Acetylated Histone Marks in Cells and Brain Tissue
Published on: November 30, 2018
Target-Combined Enhanced Coordination and Steric Hindrance Enable One-Pot Visual Rapid Quantification of Histone
Yuhan He1, Pengjun Jiang1,2, Pan Feng1,2
1Department of Laboratory Medicine, Department of Nephrology, Kidney Research Institute, Med+X Center for Manufacturing, National Clinical Research Center for Geriatrics, State Key Laboratory of Respiratory Health and Multimorbidity, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.
None:
Histones are critical biomarkers associated with the severity and mortality of sepsis. In this study, a one-pot, highly sensitive dual-mode fluorescence assay for histone detection was developed by leveraging enhanced coordination and steric hindrance effects. Histones can specifically bind to double-stranded DNA (dsDNA), generating complexes with multiple metal ion coordination sites. Therefore, Cu2+ was introduced to react with the histone-dsDNA complexes, and the strong steric hindrance produced by the complexes could inhibit reactions between Cu2+ and other molecules. Moreover, quantum dots (QDs) selectively recognize dsDNA-Cu2+ and histone-dsDNA-Cu2+ complexes. Hence, histones were quantitatively analyzed by measuring the fluorescence recovery intensity of QDs. Under optimized conditions, the detection limits of histones were 2.3 fg/mL in the fluorescence mode and 3.8 fg/mL in the red, green, and blue (RGB) mode. A total of 56 clinical serum samples were analyzed; the areas under the curve for discriminating infectious diseases and sepsis were 0.978 and 0.934, respectively. This study developed a sensitive and accurate histone detection assay for patients with clinical infections, demonstrating promising potential for the stratification of infectious diseases and the early auxiliary diagnosis of sepsis.
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