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Mitochondrial fission induces immunoescape in solid tumors through decreasing MHC-I surface expression

delete2022-07-06
delete23
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OA
AI
X
Xinyuan Lei
H
Hsinyu Lin
J
Jieqi Wang
Z
Zhanpeng Ou
Y
Yi Ruan
A
Ananthan Sadagopan
W
Weixiong Chen
S
Shule Xie
B
Baisheng Chen
Q
Qunxing Li
J
Jue Wang
H
Huayue Lin
X
Xiao‐Feng Zhu
X
Xiaoqing Yuan
T
Tian Tian
X
Xiaobin Lv
S
Sha Fu
X
Xiaorui Zhu
J
Jian Zhou
G
Guokai Pan
X
Xin Xia
B
Bakhos A. Tannous
S
Soldano Ferrone *
S
Song Fan *
J
Jinsong Li *
DOI:10.1038/s41467-022-31417-xdelete
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Abstract

Abstract

En 中文
Cancer cells downregulate surface expression of major histocompatibility complex I (MHC-I) for immune evasion. Here, the authors show that rapid mitochondrial fission activates the ER-stress response leading to reduced MHC-I complex formation and cell surface expression in solid cancer cells; moreover inhibition of mitochondrial fission increases the immune-mediated anticancer response in murine models. Mitochondrial dynamics can regulate Major Histocompatibility Complex (MHC)-I antigen expression by cancer cells and their immunogenicity in mice and in patients with malignancies. A crucial role in the mitochondrial fragmentation connection with immunogenicity is played by the IRE1 alpha-XBP-1s axis. XBP-1s is a transcription factor for aminopeptidase TPP2, which inhibits MHC-I complex cell surface expression likely by degrading tumor antigen peptides. Mitochondrial fission inhibition with Mdivi-1 upregulates MHC-I expression on cancer cells and enhances the efficacy of adoptive T cell therapy in patient-derived tumor models. Therefore mitochondrial fission inhibition might provide an approach to enhance the efficacy of T cell-based immunotherapy.
Keywords:
UNFOLDED PROTEIN RESPONSE
TRIPEPTIDYL-PEPTIDASE-II
CELLS INDUCE
CANCER
DRP1
DYNAMICS
CHECKPOINT
INHIBITOR
IMMUNITY
TARGETS
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Nature Communications cover
Nature Communications
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Shenzhen Longgang District Central Hospital
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Nanchang University
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Massachusetts General Hospital
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stony brook university
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Sun Yat Sen University
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Nanjing Medical University
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Harvard Medical School
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