Glycoprotein-induced phase separation drives unconventional secretion of galectin-3
Abstract
Abstract The mechanism of unconventional protein secretion remains an unresolved issue. Here, we describe an unconventional protein secretion pathway for galectin-3 that is mediated by phase separation and condensation. Using four lysosomal damage models, we observed a rapid, pronounced release of galectin-3 in large, non-exosomal particles. This secretion is driven by glycoprotein-induced galectin-3 phase separation and is independent of pyroptosis and secretory autophagy. During phase separation, the S-face of galectin-3 carbohydrate recognition domain binds glycoproteins that triggers galectin-3 N-terminal tail release and condensation. These condensates then recruit ALG-2 via the exposed N-terminal tail. ALG-2 directs the condensates to the endoplasmic reticulum–late endosome interface. After translocation into late endosomes, galectin-3 condensates are secreted into the extracellular milieu by SNARE-dependent vesicular transport. This mechanism of exporting phase-separated protein condensates may serve as a clean-up response to membrane damage.
Article Details
Authors (17)
Zihan Zhao
Zhen He
Hongming Gu
Andong Zhou
Yibing Wang
Zhaoyi Liang
Jie Geng
Xuejiao Xu
Menghui Wang
Chunyao Li
Yuying Fan
Key Laboratory of Functional Inorganic Materials Chemistry, Ministry of Education of the People’s Republic of China
Hairong Cheng
Lin Sun
Kevin H. Mayo
Avraham Raz
Guihua Tai
Yifa Zhou