A high-affinity split-HaloTag for live-cell protein labeling
Abstract
Abstract We introduce a high-affinity split-HaloTag comprised of a short peptide tag (Hpep, 14 residues) and a large, inactive fragment (cpHaloΔ3). Hpep binds to cpHaloΔ3 spontaneously with nanomolar affinity, enabling subsequent labeling with fluorescent HaloTag ligands. The small size of Hpep facilitates cloning-free endogenous protein tagging using CRISPR/Cas9 and the complementation of Hpep-tagged proteins can be achieved in live cells through co-expression with cpHaloΔ3 and in fixed cells through incubation with cpHaloΔ3. The approach is compatible with advanced microscopy techniques such as expansion microscopy and live-cell STED imaging. Additionally, variants of Hpep that modulate the spectral properties of labeled fluorophores enable simultaneous imaging of two different Hpep-tagged proteins via fluorescence lifetime microscopy. In summary, our high-affinity split-HaloTag is a robust and versatile tool for live-cell imaging and diverse applications in chemical biology.
Article Details
Authors (14)
Yin-Hsi Lin
Julian Kompa
Department of Chemical Biology
De-en Sun
Runyu Mao
Department of Chemical Biology
Birgit Koch
Konstantin Hinnah
Jonas Wilhelm
Department of Chemical Biology
Natascha Franz
Stefanie Kühn
Tanja Menche
Abdinasir Adow
Paula Breuer
Julien Hiblot
Department of Chemical Biology
Kai Johnsson
Department of Chemical Biology