Isolation of PCSK9-specific nanobodies from synthetic libraries using a combined protein selection strategy

A Apisitt Thaiprayoon Y Yodpong Chantarasorn W Worrapoj Oonanant A Anongnard Kasorn P Phoomintara Longsompurana S Satita Tapaneeyakorn P Pinpunya Riangrungroj F Fabien Loison A Andrew C. Kruse M Matthew P. DeLisa (Robert F. Smith School of Chemical and Biomolecular Engineering, Cornell University) D Dujduan Waraho-Zhmayev

Abstract

Abstract Nanobodies (Nbs) hold great potential to replace conventional antibodies in various biomedical applications. However, conventional methods for their discovery can be time-consuming and expensive. We have developed a reliable protein selection strategy that combines magnetic activated cell sorting (MACS)-based screening of yeast surface display (YSD) libraries and functional ligand-binding identification by Tat-based recognition of associating proteins (FLI-TRAP) to isolate antigen-specific Nbs from synthetic libraries. This combined process enabled isolation of three unique Nb clones (NbT15, NbT21, and NbT22) that all bound specifically to a target antigen, namely proprotein convertase subtilisin/kexin type 9 (PCSK9) as well as a gain-of-function PCSK9 mutant (D374Y). All three clones bound to PCSK9 and blocked the interaction between the low-density lipoprotein receptor (LDLR) and either wild-type PCSK9 or the D374Y mutant. Overall, our combined protein selection method enables rapid and straightforward identification of potent antigen-specific Nbs in a manner that can be executed in a basic laboratory setting without the need for specialized equipment. We anticipate that our strategy will be a valuable addition to the protein engineering toolkit, allowing development of Nbs or virtually any other synthetic binding protein for a wide range of applications.

Article Details

Volume / Issue Vol. 15, Issue 1
Published January 28, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (11)

A

Apisitt Thaiprayoon

Y

Yodpong Chantarasorn

W

Worrapoj Oonanant

A

Anongnard Kasorn

P

Phoomintara Longsompurana

S

Satita Tapaneeyakorn

P

Pinpunya Riangrungroj

F

Fabien Loison

A

Andrew C. Kruse

M

Matthew P. DeLisa

Robert F. Smith School of Chemical and Biomolecular Engineering, Cornell University

D

Dujduan Waraho-Zhmayev