Synthetic protein-conductive membrane nanopores built with DNA

Author:

Diederichs TimORCID,Pugh GenevieveORCID,Dorey AdamORCID,Xing YongzhengORCID,Burns Jonathan R.ORCID,Hung Nguyen QuocORCID,Tornow MarcORCID,Tampé RobertORCID,Howorka StefanORCID

Abstract

AbstractNanopores are key in portable sequencing and research given their ability to transport elongated DNA or small bioactive molecules through narrow transmembrane channels. Transport of folded proteins could lead to similar scientific and technological benefits. Yet this has not been realised due to the shortage of wide and structurally defined natural pores. Here we report that a synthetic nanopore designed via DNA nanotechnology can accommodate folded proteins. Transport of fluorescent proteins through single pores is kinetically analysed using massively parallel optical readout with transparent silicon-on-insulator cavity chips vs. electrical recordings to reveal an at least 20-fold higher speed for the electrically driven movement. Pores nevertheless allow a high diffusive flux of more than 66 molecules per second that can also be directed beyond equillibria. The pores may be exploited to sense diagnostically relevant proteins with portable analysis technology, to create molecular gates for drug delivery, or to build synthetic cells.

Funder

German-Israeli Project Cooperation, DIP, TO 266/8-1

Deutsche Forschungsgemeinschaft

German-Israeli Project Cooperation

RCUK | Engineering and Physical Sciences Research Council

RCUK | Biotechnology and Biological Sciences Research Council

Leverhulme Trust

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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