DAPL1 restrains RPE PANoptosis in experimental AMD by inhibiting GRP75-mediated mitochondria-associated endoplasmic reticulum membranes

Y Yan Li M Meiyu Jing (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) W Wanxiao Wang (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) W Wanzhen Lin (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) Y Yingxin Zhang (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) T Tianyin Nie (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) P Pingping Liu (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) W Wan-ni Lu (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) Y Yu Chen J J. Fielding Hejtmancik (Ophthalmic Molecular Genetics Section, Ophthalmic Genetics and Visual Function Branch, National Eye Institute, NIH) Q Qinxiang Zheng (National Clinical Research Center for Ocular Diseases, Eye Hospital, Wenzhou Medical University) L Ling Hou (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University) X Xiaoyin Ma (Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University)

Abstract

Retinal pigment epithelium (RPE) cell damage is a critical factor of age-related macular degeneration (AMD), the leading cause of blindness among the aged population. This study focuses on the AMD susceptible gene, Death associated protein like 1 (DAPL1), and provides insights with significant therapeutic implications. DAPL1-deficient mice exhibit dry AMD-like pathological features, a phenomenon whose mechanisms have remained largely unknown. Here, we reveal that DAPL1 deficiency promotes the formation of mitochondria-associated endoplasmic reticulum membranes (MAMs) to cause mitochondrial Ca 2+ overload and dysfunction, which triggers the activation of inflammasomes, leading RPE cells to RIPK1-mediated PANoptosis, an inflammatory programmed cell death, in an experimental dry AMD (dAMD) mouse model. Knockdown of Ripk1 in the Dapl1−/− mice RPE inhibits RPE cell PANoptosis and ameliorates the severity of dAMD pathological features. Conversely, overexpression of DAPL1 inhibits MAM formation and protects RPE cells from PANoptosis in the model. Mechanistically, DAPL1 suppresses MAM formation by downregulating GRP75 expression. This disrupts the formation of the VDAC–GRP75–IP3R axis, which comprises critical tethering proteins responsible for endoplasmic reticulum to mitochondria coupling and Ca 2+ trafficking. Knockdown of Grp75 inhibits the formation of MAM and prevents mitochondrial Ca 2+ overload, improving mitochondrial quality and inhibiting PANoptosis in RPE cells, thereby interrupting the progression of experimental dAMD in Dapl1 -deficient mice. These results unveil the role of MAMs regulated by DAPL1 in RPE cell PANoptosis and AMD progression, highlighting targeting MAM formation as a potential therapeutic strategy for treating dAMD.

Article Details

Volume / Issue Vol. 123, Issue 8
Published February 24, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

Y

Yan Li

M

Meiyu Jing

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

W

Wanxiao Wang

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

W

Wanzhen Lin

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

Y

Yingxin Zhang

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

T

Tianyin Nie

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

P

Pingping Liu

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

W

Wan-ni Lu

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

Y

Yu Chen

J

J. Fielding Hejtmancik

Ophthalmic Molecular Genetics Section, Ophthalmic Genetics and Visual Function Branch, National Eye Institute, NIH

Q

Qinxiang Zheng

National Clinical Research Center for Ocular Diseases, Eye Hospital, Wenzhou Medical University

L

Ling Hou

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University

X

Xiaoyin Ma

Laboratory of Developmental Cell Biology and Disease, State Key Laboratory of Eye Health, Eye Hospital, Wenzhou Medical University