Proteomics

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Identification of proteins interacting with GPAT4 in HUVECs cell line.


ABSTRACT: The endocardium plays a pivotal role in governing myocardial development, and understanding the intrinsic regulatory insights will help apprehend pathological cardiomyopathy. Glycerol-3-phosphate acyltransferase 4 (GPAT4) is an endoplasmic reticulum (ER) membrane anchored protein. While the role of GPAT4 in glycerophospholipid biosynthesis is well established, its function in the ER is less explored. Here, we generate Gpat4 global and tissue-specific knockout mice and identify the essential role of GPAT4 in endocardial development. Deficiency of GPAT4 provokes endocardial ER stress response and enhances ER-mitochondrial (ER-mito) communications, leading to mitochondrial DNA (mtDNA) escape. As a result, the cGAS-STING pathway triggers to stimulate type-I-interferon response, which affects heart development. Finally, abolishment of the cGAS-STING-type-I-interferon pathway rescues the heart defects of Gpat4 deletion mice. These findings uncover the pivotal role of GPAT4 in the maintenance of ER homeostasis during endocardial and heart development. Meanwhile, this study highlights the importance of the cGAS-STING pathway in cardiac organogenesis.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Epithelial Cell, Cell Culture

SUBMITTER: chengzhi wang  

LAB HEAD: Lei Fang

PROVIDER: PXD061136 | Pride | 2025-05-07

REPOSITORIES: Pride

Dataset's files

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20240227_Z01.timeseries.data Other
20240227_Z01.wiff Wiff
20240227_Z01.wiff.scan Wiff
20240227_Z01.wiff2 Wiff
20240227_Z02.timeseries.data Other
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Publications

GPAT4 sustains endoplasmic reticulum homeostasis in endocardial cells and safeguards heart development.

Zhao Tianyang T   Jin Kuipei K   Wang Xiaodong X   Su Xiong X   Wang Youjun Y   Gao Mingming M   Luo Wen W   Yang Hongyuan H   Yang Zhongzhou Z  

Nature communications 20250408 1


The endocardium plays a pivotal role in governing myocardial development, and understanding the intrinsic regulatory insights will help apprehend pathological cardiomyopathy. Glycerol-3-phosphate acyltransferase 4 (GPAT4) is an endoplasmic reticulum (ER) membrane anchored protein. While the role of GPAT4 in glycerophospholipid biosynthesis is well established, its function in the ER is less explored. Here, we generate Gpat4 global and tissue-specific knockout mice and identify the essential role  ...[more]

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