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Abstract
Atomically precise, ligand-protected gold nanoclusters (AuNCs) attract considerable attention as contrast agents in the biosensing field. However, the control of their optical properties and functionalization of surface ligands remain challenging. Here we report a strategy to tailor AuNCs for the precise detection of protein carbonylation—a causal biomarker of ageing. We produce Au15SG13 (SG for glutathione) with atomic precision and functionalize it with a thiolated aminooxy moiety to impart protein carbonyl-binding properties. Mass spectrometry and molecular modelling reveal the key structural features of Au15SG12-Aminooxy and its reactivity towards carbonyls. Finally, we demonstrate that Au15SG12-Aminooxy detects protein carbonylation in gel-based 1D electrophoresis by one- and two-photon excited fluorescence. Importantly, to our knowledge, this is the first application of an AuNC that detects a post-translational modification as a nonlinear optical probe. The significance of post-translational modifications in life sciences may open avenues for the use of Au15SG13 and other nanoclusters as contrast agents with tailored surface functionalization and optical properties.
Atomically precise gold nanoclusters hold promise as non-linear optical probes for biological imaging. Here functionalized luminescent gold nanoclusters bind free carbonyls via oxime bond formation, allowing detection of carbonylated proteins via gel electrophoresis and fluorescence imaging.
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1 Center of Excellence for Science and Technology-Integration of Mediterranean Region (STIM), Faculty of Science, University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675); Mediterranean Institute for Life Sciences (MedILS), Split, Croatia (GRID:grid.482535.d) (ISNI:0000 0004 4663 8413)
2 Center of Excellence for Science and Technology-Integration of Mediterranean Region (STIM), Faculty of Science, University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675); Univ Lyon, Univ Claude Bernard Lyon 1, CNRS, Institut Lumière Matière, Villeurbanne F-69622, France (GRID:grid.436142.6) (ISNI:0000 0004 0384 4911)
3 Univ Lyon, Univ Claude Bernard Lyon 1, CNRS, Institut Lumière Matière, Villeurbanne F-69622, France (GRID:grid.436142.6) (ISNI:0000 0004 0384 4911)
4 Univ Lyon, CNRS, Université Claude Bernard Lyon 1, Institut des Sciences Analytiques, UMR 5280, 5 rue de la Doua, Villeurbanne F-69100, France (GRID:grid.493282.6) (ISNI:0000 0004 0374 2720)
5 Mediterranean Institute for Life Sciences (MedILS), Split, Croatia (GRID:grid.482535.d) (ISNI:0000 0004 4663 8413)
6 Center of Excellence for Science and Technology-Integration of Mediterranean Region (STIM), Faculty of Science, University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675)
7 Faculty of Science, University of Split, Split, Republic of Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675)
8 University Medical Center Goettingen, Department of Experimental Neurodegeneration, Göttingen, Germany (GRID:grid.411984.1) (ISNI:0000 0001 0482 5331)
9 Center of Excellence for Science and Technology-Integration of Mediterranean Region (STIM), Faculty of Science, University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675); Mediterranean Institute for Life Sciences (MedILS), Split, Croatia (GRID:grid.482535.d) (ISNI:0000 0004 4663 8413); Université R. Descartes-Paris 5, Faculté de Médecine, site Cochin, Paris, France (GRID:grid.508487.6) (ISNI:0000 0004 7885 7602)
10 Center of Excellence for Science and Technology-Integration of Mediterranean Region (STIM), Faculty of Science, University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675); Interdisciplinary Center for Advanced Science and Technology (ICAST) at University of Split, Split, Croatia (GRID:grid.38603.3e) (ISNI:0000 0004 0644 1675); Humboldt University of Berlin, Chemistry Department, Berlin, Germany (GRID:grid.7468.d) (ISNI:0000 0001 2248 7639)