机构:[1]Departments of Radiology and Neurology, Neuroprotection Research Laboratories ,Massachusetts General Hospital, Harvard Medical School, Boston.[2]Cerebrovascular Research Institute, Xuanwu Hospital, Capital Medical University, Beijing, China首都医科大学宣武医院[3]Neurovascular Research Laboratory, Vall d'Hebron Institut de Recerca, Universitat Universitat Autónoma de Barcelona, Spain,[4]Department of Neurology, Sean M. Healey and AMG Center for ALS ,Massachusetts General Hospital, Harvard Medical School, Boston.[5]Department of Neurology, Clinical Proteomics Research Center ,Massachusetts General Hospital, Harvard Medical School, Boston.
Beyond neuronal injury, cell death pathways may also contribute to vascular injury after stroke. We examined protein networks linked to major cell death pathways and identified SLC22A17 (solute carrier family 22 member 17) as a novel mediator that regulates endothelial tight junctions after ischemia and inflammatory stress.Protein-protein interactions and brain enrichment analyses were performed using STRING, Cytoscape, and a human tissue-specific expression RNA-seq database. In vivo experiments were performed using mouse models of transient focal cerebral ischemia. Human stroke brain tissues were used to detect SLC22A17 by immunostaining. In vitro experiments were performed using human brain endothelial cultures subjected to inflammatory stress. Immunostaining and Western blot were used to assess responses in SLC22A17 and endothelial tight junctional proteins. Water content, dextran permeability, and electrical resistance assays were used to assess edema and blood-brain barrier (BBB) integrity. Gain and loss-of-function studies were performed using lentiviral overexpression of SLC22A17 or short interfering RNA against SLC22A17, respectively.Protein-protein interaction analysis showed that core proteins from apoptosis, necroptosis, ferroptosis, and autophagy cell death pathways were closely linked. Among the 20 proteins identified in the network, the iron-handling solute carrier SLC22A17 emerged as the mediator enriched in the brain. After cerebral ischemia in vivo, endothelial expression of SLC22A17 increases in both human and mouse brains along with BBB leakage. In human brain endothelial cultures, short interfering RNA against SLC22A17 prevents TNF-α (tumor necrosis factor alpha)-induced ferroptosis and downregulation in tight junction proteins and disruption in transcellular permeability. Notably, SLC22A17 could repress the transcription of tight junctional genes. Finally, short interfering RNA against SLC22A17 ameliorates BBB leakage in a mouse model of focal cerebral ischemia.Using a combination of cell culture, human stroke samples, and mouse models, our data suggest that SLC22A17 may play a role in the control of BBB function after cerebral ischemia. These findings may offer a novel mechanism and target for ameliorating BBB injury and edema after stroke.
基金:
Dr Ning was supported by the National Institutes of Health (grant R01NS067139).Dr Rosell received research support grants from the Instituto de Salud Carlos III(RD21/0006/0007 and PI19/00186) and the Agència de Gestió d’Ajuts Universitaris i de Recerca (2021SGR/00656). M. Garcia-Gabilondo was supportedby the Pla estratègic de recerca i innovació en salut research support fellowship(grant SLT017/20/000197)
第一作者机构:[1]Departments of Radiology and Neurology, Neuroprotection Research Laboratories ,Massachusetts General Hospital, Harvard Medical School, Boston.[*1]Departments of Radiology and Neurology, Neuroprotection Research Laboratories, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02129
共同第一作者:
通讯作者:
通讯机构:[1]Departments of Radiology and Neurology, Neuroprotection Research Laboratories ,Massachusetts General Hospital, Harvard Medical School, Boston.[*1]Departments of Radiology and Neurology, Neuroprotection Research Laboratories, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02129
推荐引用方式(GB/T 7714):
Li Wenlu,Shi Jingfei,Yu Zhanyang,et al.SLC22A17 as a Cell Death-Linked Regulator of Tight Junctions in Cerebral Ischemia[J].Stroke.2024,55(6):1650-1659.doi:10.1161/STROKEAHA.124.046736.
APA:
Li Wenlu,Shi Jingfei,Yu Zhanyang,Garcia-Gabilondo Miguel,Held Aaron...&Lo Eng H.(2024).SLC22A17 as a Cell Death-Linked Regulator of Tight Junctions in Cerebral Ischemia.Stroke,55,(6)
MLA:
Li Wenlu,et al."SLC22A17 as a Cell Death-Linked Regulator of Tight Junctions in Cerebral Ischemia".Stroke 55..6(2024):1650-1659