Assembly and intracellular delivery of quantum dot-fluorescent protein bioconjugates
Paper Abstract
We have previously assembled semiconductor quantum dot (QD)-based fluorescence resonance energy
transfer (FRET) sensors that can specifically detect nutrients, explosives or enzymatic activity. These sensors
utilized the inherent benefits of QDs as FRET donors to optimize signal transduction. In this report we
functionalize QDs with the multi-subunit multi-chromophore b-phycoerythrin (b-PE) light harvesting
complex using biotin-Streptavidin binding. FRET and gel electrophoretic analyses were used to characterize
and confirm the QD-b-PE self-assembly. We found that immobilizing additional cell-penetrating peptides on
the nanocrystal surface along with the b-PE was the key factor allowing the mixed surface QD-cargos to
undergo endocytosis and intracellular delivery. Our findings on the intracellular uptake promoted by CPP
were compared to those collected using microinjection technique, where QD-assemblies were delivered
directly into the cytoplasm; this strategy allows bypassing of the endocytic uptake pathway. Intracellular
delivery of multifunctional QD-fluorescent protein assemblies has potential applications for use in protein
tracking, sensing and diagnostics.
This paper was published in SPIE Proceedings Vol. 6866