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Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation
Cerebral cavernous malformations (CCMs) are vascular malformations that affect the central nervous system and result in cerebral hemorrhage, seizure and stroke. CCM arises from loss-of-function mutations in one of three genes: CCM1, CCM2 and CCM3 (PDCD10). CCM3 mutations in human often result in a m...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014607/ https://www.ncbi.nlm.nih.gov/pubmed/27548575 http://dx.doi.org/10.1038/nm.4169 |
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author | Jenny Zhou, Huanjiao Qin, Lingfeng Zhang, Haifeng Tang, Wenwen Ji, Weidong He, Yun Liang, Xiaoling Wang, Zongren Yuan, Qianying Vortmeyer, Alexander Toomre, Derek Fuh, Germaine Yan, Minghong Kluger, Martin S. Wu, Dianqing Min, Wang |
author_facet | Jenny Zhou, Huanjiao Qin, Lingfeng Zhang, Haifeng Tang, Wenwen Ji, Weidong He, Yun Liang, Xiaoling Wang, Zongren Yuan, Qianying Vortmeyer, Alexander Toomre, Derek Fuh, Germaine Yan, Minghong Kluger, Martin S. Wu, Dianqing Min, Wang |
author_sort | Jenny Zhou, Huanjiao |
collection | PubMed |
description | Cerebral cavernous malformations (CCMs) are vascular malformations that affect the central nervous system and result in cerebral hemorrhage, seizure and stroke. CCM arises from loss-of-function mutations in one of three genes: CCM1, CCM2 and CCM3 (PDCD10). CCM3 mutations in human often result in a more severe form of the disease, and CCM3 knockout mice show severe phenotypes with yet-to-be defined mechanisms. We have recently reported that CCM3 regulates UNC13 family-mediated exocytosis. Here we investigate endothelial cells (EC) exocytosis in CCM disease progression. We find that CCM3 suppresses UNC13B/VAMP3-dependent exocytosis of angiopoietin-2 (ANGPT2) in brain endothelial cells. CCM3 ablation in EC augments exocytosis and secretion of ANGPT2, correlating with destabilized EC junctions, enlarged lumen formation, and endothelial cell-pericyte dissociations. UNC13B deficiency that blunts ANGPT2 secretion from EC or an ANGPT2 neutralization antibody normalizes the defects caused by CCM3 deficiency. More importantly, ANGPT2 neutralization antibody treatment or UNC13B deficiency blunts the CCM lesion phenotypes, including disruption of EC junctions, vessel dilation and pericyte dissociation, in the brains and retinas caused by endothelial cell-specific CCM3 inactivation. Our study reveals that enhanced secretion of ANGPT2 in endothelial cells contributes to the progression of the CCM disease, providing a novel therapeutic approach to treat this devastating pathology. |
format | Online Article Text |
id | pubmed-5014607 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
record_format | MEDLINE/PubMed |
spelling | pubmed-50146072017-02-22 Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation Jenny Zhou, Huanjiao Qin, Lingfeng Zhang, Haifeng Tang, Wenwen Ji, Weidong He, Yun Liang, Xiaoling Wang, Zongren Yuan, Qianying Vortmeyer, Alexander Toomre, Derek Fuh, Germaine Yan, Minghong Kluger, Martin S. Wu, Dianqing Min, Wang Nat Med Article Cerebral cavernous malformations (CCMs) are vascular malformations that affect the central nervous system and result in cerebral hemorrhage, seizure and stroke. CCM arises from loss-of-function mutations in one of three genes: CCM1, CCM2 and CCM3 (PDCD10). CCM3 mutations in human often result in a more severe form of the disease, and CCM3 knockout mice show severe phenotypes with yet-to-be defined mechanisms. We have recently reported that CCM3 regulates UNC13 family-mediated exocytosis. Here we investigate endothelial cells (EC) exocytosis in CCM disease progression. We find that CCM3 suppresses UNC13B/VAMP3-dependent exocytosis of angiopoietin-2 (ANGPT2) in brain endothelial cells. CCM3 ablation in EC augments exocytosis and secretion of ANGPT2, correlating with destabilized EC junctions, enlarged lumen formation, and endothelial cell-pericyte dissociations. UNC13B deficiency that blunts ANGPT2 secretion from EC or an ANGPT2 neutralization antibody normalizes the defects caused by CCM3 deficiency. More importantly, ANGPT2 neutralization antibody treatment or UNC13B deficiency blunts the CCM lesion phenotypes, including disruption of EC junctions, vessel dilation and pericyte dissociation, in the brains and retinas caused by endothelial cell-specific CCM3 inactivation. Our study reveals that enhanced secretion of ANGPT2 in endothelial cells contributes to the progression of the CCM disease, providing a novel therapeutic approach to treat this devastating pathology. 2016-08-22 2016-09 /pmc/articles/PMC5014607/ /pubmed/27548575 http://dx.doi.org/10.1038/nm.4169 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Jenny Zhou, Huanjiao Qin, Lingfeng Zhang, Haifeng Tang, Wenwen Ji, Weidong He, Yun Liang, Xiaoling Wang, Zongren Yuan, Qianying Vortmeyer, Alexander Toomre, Derek Fuh, Germaine Yan, Minghong Kluger, Martin S. Wu, Dianqing Min, Wang Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title | Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title_full | Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title_fullStr | Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title_full_unstemmed | Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title_short | Augmented endothelial exocytosis of angiopoietin-2 resulting from CCM3-deficiency contributes to the progression of cerebral cavernous malformation |
title_sort | augmented endothelial exocytosis of angiopoietin-2 resulting from ccm3-deficiency contributes to the progression of cerebral cavernous malformation |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014607/ https://www.ncbi.nlm.nih.gov/pubmed/27548575 http://dx.doi.org/10.1038/nm.4169 |
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