posted on 2015-12-17, 03:47authored byThomas Gaj, Jia Liu, Kimberly E. Anderson, Shannon
J. Sirk, Carlos F. Barbas
The
development of new methods for delivering proteins into cells
is a central challenge for advancing both basic research and therapeutic
applications. We previously reported that zinc-finger nuclease proteins
are intrinsically cell-permeable due to the cell-penetrating activity
of the Cys2–His2 zinc-finger domain.
Here, we demonstrate that genetically fused zinc-finger motifs can
transport proteins and enzymes into a wide range of primary and transformed
mammalian cell types. We show that zinc-finger domains mediate protein
uptake at efficiencies that exceed conventional protein transduction
systems and do so without compromising enzyme activity. In addition,
we demonstrate that zinc-finger proteins enter cells primarily through
macropinocytosis and facilitate high levels of cytosolic delivery.
These findings establish zinc-finger proteins as not only useful tools
for targeted genome engineering but also effective reagents for protein
delivery.