Glycoprotein-induced phase separation drives unconventional secretion of galectin-3

Z Zihan Zhao Z Zhen He H Hongming Gu A Andong Zhou Y Yibing Wang Z Zhaoyi Liang J Jie Geng X Xuejiao Xu M Menghui Wang C Chunyao Li Y Yuying Fan (Key Laboratory of Functional Inorganic Materials Chemistry, Ministry of Education of the People’s Republic of China) H Hairong Cheng L Lin Sun K Kevin H. Mayo A Avraham Raz G Guihua Tai Y Yifa Zhou

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

Volume / Issue Vol. 1, Issue 1
Published August 06, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

Z

Zihan Zhao

Z

Zhen He

H

Hongming Gu

A

Andong Zhou

Y

Yibing Wang

Z

Zhaoyi Liang

J

Jie Geng

X

Xuejiao Xu

M

Menghui Wang

C

Chunyao Li

Y

Yuying Fan

Key Laboratory of Functional Inorganic Materials Chemistry, Ministry of Education of the People’s Republic of China

H

Hairong Cheng

L

Lin Sun

K

Kevin H. Mayo

A

Avraham Raz

G

Guihua Tai

Y

Yifa Zhou