Engineered calcium-regulated affinity protein for efficient internalization and lysosomal toxin delivery

M Malin Jönsson (Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology) M Marit Möller (Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology) L Leon Schierholz (Department of Molecular Biology, Umeå University) N Nicolai Dorka (Department of Bioengineering, Stanford University) H Hanna Tegel (Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology) E Emma Lundberg M Mathias Uhlén (Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology) M Magnus Wolf-Watz (Department of Chemistry, Umeå University) H Hjalmar Brismar (Department of Applied Physics, SciLifeLab, KTH-Royal Institute of Technology) S Sophia Hober (Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology)

Abstract

The emerging strategy of protein–drug conjugates (PDCs) for targeted cancer therapy holds great potential to improve treatment efficacy by specifically targeting cancer biomarkers and delivering toxic payloads directly to tumor cells, minimizing off-target toxicity. The success of this approach depends on the internalization and retention of the payload in target cells. This study introduces a method using a small protein domain engineered for conditional target affinity, enabling lysosomal trafficking independent of the biological fate of the receptor. Specifically, we describe the development of an EGF receptor binder, CaRA EGFR , with calcium-regulated affinity (CaRA), meaning the target binding strength is tailored by the available calcium concentration. This allows for endosomal dissociation, as calcium levels are lower in endosomes than in the bloodstream. Affinity measurements and structural modeling reveal the molecular basis of the calcium modulated affinity. Live cell imaging demonstrates efficient internalization and lysosomal trafficking of the calcium-dependent domain, while the EGF receptor is recycled to the membrane. When used as a drug carrier, CaRA EGFR effectively delivers the toxin to the lysosomes, resulting in potent cytotoxicity with an IC50 of 0.8 nM in EGFR-expressing cancer cells

Article Details

Volume / Issue Vol. 122, Issue 48
Published December 02, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (10)

M

Malin Jönsson

Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology

M

Marit Möller

Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology

L

Leon Schierholz

Department of Molecular Biology, Umeå University

N

Nicolai Dorka

Department of Bioengineering, Stanford University

H

Hanna Tegel

Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology

E

Emma Lundberg

M

Mathias Uhlén

Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology

M

Magnus Wolf-Watz

Department of Chemistry, Umeå University

H

Hjalmar Brismar

Department of Applied Physics, SciLifeLab, KTH-Royal Institute of Technology

S

Sophia Hober

Department of Protein Science, SciLifeLab, KTH-Royal Institute of Technology