Time-Resolved Proteomic Visualization of Dendrimer Cellular Entry and Trafficking

Our understanding of the complex cell entry pathways would greatly benefit from a comprehensive characterization of key proteins involved in this dynamic process. Here we devise a novel proteomic strategy named TITAN (Tracing Internalization and TrAfficking of Nanomaterials) to reveal real-time prot...

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Veröffentlicht in:Journal of the American Chemical Society 2015-10, Vol.137 (40), p.12772-12775
Hauptverfasser: Wang, Linna, Yang, Li, Pan, Li, Kadasala, Naveen Reddy, Xue, Liang, Schuster, Robert J, Parker, Laurie L, Wei, Alexander, Tao, W. Andy
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Sprache:eng
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Zusammenfassung:Our understanding of the complex cell entry pathways would greatly benefit from a comprehensive characterization of key proteins involved in this dynamic process. Here we devise a novel proteomic strategy named TITAN (Tracing Internalization and TrAfficking of Nanomaterials) to reveal real-time protein–dendrimer interactions using a systems biology approach. Dendrimers functionalized with photoreactive cross-linkers were internalized by HeLa cells and irradiated at set time intervals, then isolated and subjected to quantitative proteomics. In total, 809 interacting proteins cross-linked with dendrimers were determined by TITAN in a detailed temporal manner during dendrimer internalization, traceable to at least two major endocytic mechanisms, clathrin-mediated and caveolar/raft-mediated endocytosis. The direct involvement of the two pathways was further established by the inhibitory effect of dynasore on dendrimer uptake and changes in temporal profiles of key proteins.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.5b07875