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Updated: Feb 8, 2026

Isolation and Profiling of Human Primary Mesenteric Arterial Endothelial Cells at the Transcriptome Level
Published on: March 14, 2022
Endorepellin remodels the endothelial transcriptome toward a pro-autophagic and pro-mitophagic gene signature
Thomas Neill1, Eva Andreuzzi2, Zi-Xuan Wang1
1Department of Pathology, Anatomy, and Cell Biology, and the Cancer Cell Biology and Signaling Program, Sidney Kimmel Medical College at Thomas Jefferson University, Philadelphia, Pennsylvania 19107.
Abstract:
Regulation of autophagy by proteolytically cleaved fragments of heparan sulfate proteoglycans is a novel and current research focus in tumor biology. Endorepellin is the C-terminal angiostatic fragment of the heparan sulfate proteoglycan perlecan and induces autophagy in endothelial cells. To further investigate this property, we used NanoString, a digital PCR platform for measuring pre-defined transcripts in biological samples to analyze a custom subset of 95 autophagy-related genes in human umbilical vein endothelial cells treated with ultrapure human recombinant endorepellin. We discovered an endorepellin-evoked pro-autophagic and pro-mitophagic gene expression signatures, which included two coordinately up-regulated mitochondrial-associated genes encoding the E3 ubiquitin protein ligase Parkin and the tumor suppressor mitostatin. Induction of both proteins required the tyrosine kinase activity of vascular endothelial growth factor receptor 2 (VEGFR2). Furthermore, we discovered that endorepellin evoked mitochondrial depolarization in endothelial cells via a specific interaction between its two proximal LG1/2 domains and VEGFR2. We also found that following loss of membrane potential, mitostatin and parkin interact and that mitostatin associates with the established Parkin receptor mitofusin-2. In conclusion, we have identified a critical role for endorepellin in remodeling the autophagic transcriptome and influencing mitochondrial homeostasis.
Insights
Endorepellin, a fragment of heparan sulfate proteoglycans, triggers autophagy and mitophagy in endothelial cells. This process involves Parkin and mitostatin, regulated by VEGFR2, impacting mitochondrial homeostasis.
Area of Science:
- Tumor biology
- Endothelial cell biology
- Molecular signaling
Background:
- Heparan sulfate proteoglycans fragments regulate autophagy.
- Endorepellin, a perlecan fragment, induces autophagy in endothelial cells.
Purpose of the Study:
- Investigate endorepellin's role in autophagy and mitophagy.
- Analyze gene expression changes in response to endorepellin.
- Elucidate the signaling pathways involved.
Main Methods:
- NanoString digital PCR to analyze 95 autophagy-related genes.
- Human umbilical vein endothelial cells treated with recombinant endorepellin.
- VEGFR2 kinase activity inhibition and domain interaction studies.
Main Results:
- Identified endorepellin-evoked pro-autophagic and pro-mitophagic gene signatures.
- Discovered induction of Parkin and mitostatin requires VEGFR2 tyrosine kinase activity.
- Demonstrated endorepellin-VEGFR2 interaction leading to mitochondrial depolarization.
- Showed mitostatin and Parkin interaction post-mitochondrial depolarization, with mitostatin binding mitofusin-2.
Conclusions:
- Endorepellin significantly remodels the autophagic transcriptome.
- Endorepellin influences mitochondrial homeostasis through Parkin and mitostatin.
- VEGFR2 signaling is critical for endorepellin-mediated autophagy and mitophagy.
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