HerTACs Enable Tumor‐Selective Lysosomal Degradation of Membrane and Extracellular Proteins via HER2 Trafficking

S Shipeng He (Institute of Translational Medicine Shanghai University 99 Shangda Road Shanghai 200444 P.R. China) W Wenjing Huang Y Yaojin Zhu (Institute of Translational Medicine Shanghai University 99 Shangda Road Shanghai 200444 P.R. China) F Fei Gao Y Yuxin Fang J Jiayi Zhu (Institute of Translational Medicine, Shanghai Engineering Research Center of Organ Repair, Shanghai University) Y Yuhan Bao G Guoqiang Dong (Department The Center for Basic Research and Innovation of Medicine and Pharmacy (MOE) School of Pharmacy Second Military Medical University (Naval Medical University) Address 2325 Guohe Road Shanghai 200433 P.R. China) C Chunquan Sheng

Abstract

AbstractTargeting extracellular and membrane proteins for degradation remains a frontier challenge in the field of targeted protein degradation (TPD), largely due to the intracellular confinement of existing proteolysis systems and reliance on bulky biologics. Here, we develop a novel TPD platform, human epidermal growth factor receptor 2 (HER2)‐targeted lysosome‐tethering chimeras (HerTACs), which co‐opts the tumor overexpressed, endocytic, and lysosomal trafficking capability of HER2. Starting from the HER2‐binding peptide LTVSPWY, we engineered the first‐generation HerTAC (LP), a conjugate of the HER2‐binding peptide and a PD‐L1 ligand, to degrade programmed death ligand 1 (PD‐L1) in HER2‐positive cells. Guided by AlphaFold modeling and alanine scanning, we developed a stapled peptide‐based HerTAC (L2,5P) with enhanced degradative efficacy (DC50 = 156 nM), stability, and pharmacokinetics. HerTAC L2,5P showed potent antitumor activity and low systemic toxicity in HER2+ breast cancer animal models. The HerTAC strategy was further extended to other clinically relevant inaccessible membrane and extracellular targets (i.e., V‐domain Ig suppressor of T cell activation [VISTA] and macrophage migration inhibitory factor [MIF]), highlighting its generality and broad applicability. This work establishes a tumor‐selective, lysosome‐directed TPD strategy that expands the druggable proteome and offers a clinically transformable approach for precision oncology.

Article Details

Volume / Issue Vol. 64, Issue 41
Published October 06, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

S

Shipeng He

Institute of Translational Medicine Shanghai University 99 Shangda Road Shanghai 200444 P.R. China

W

Wenjing Huang

Y

Yaojin Zhu

Institute of Translational Medicine Shanghai University 99 Shangda Road Shanghai 200444 P.R. China

F

Fei Gao

Y

Yuxin Fang

J

Jiayi Zhu

Institute of Translational Medicine, Shanghai Engineering Research Center of Organ Repair, Shanghai University

Y

Yuhan Bao

G

Guoqiang Dong

Department The Center for Basic Research and Innovation of Medicine and Pharmacy (MOE) School of Pharmacy Second Military Medical University (Naval Medical University) Address 2325 Guohe Road Shanghai 200433 P.R. China

C

Chunquan Sheng