| Literature DB >> 30953513 |
Yanan Xie1, Yingzhe Wang1, Hongyan Ding1, Min Guo1, Xun Wang1, Qiang Dong2,3,4, Mei Cui5.
Abstract
Entities:
Keywords: Blood-brain barrier; CD147; Diabetes; Glucagon-like peptide-1 receptor agonist; Glycosylation; Ischemic stroke
Mesh:
Substances:
Year: 2019 PMID: 30953513 PMCID: PMC6449915 DOI: 10.1186/s12974-019-1460-1
Source DB: PubMed Journal: J Neuroinflammation ISSN: 1742-2094 Impact factor: 8.322
Fig. 1Diabetes increases HT and BBB disruption after rt-PA treatment of cerebral ischemia. Diabetes was induced in rats with streptozotocin. Cerebral Ischemia was induced by middle cerebral artery occlusion and treated with rt-PA or saline as control. Analysis was performed 72 h after ischemic attack. a Representative TTC staining images of four groups. b Stroke volume evaluated by TTC staining (n = 6 in each group). c Cerebral hemorrhage evaluated by spectrophotometric hemoglobin assay (n = 6 in each group). d Representative immunoblots of tight junction proteins zonula occludens-1 (ZO-1) and occludin and collagen IV for each group. e BBB permeability assay with Evans blue dye (n = 10 in non-diabetic groups, n = 6 in diabetic groups). f–h Protein amounts were quantified from immunoblots and normalized to β-actin amount. Data expressed as mean ± SD and analyzed by two-way ANOVA. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. rt-PA recombinant tissue plasminogen activator, BBB blood-brain barrier, HT hemorrhagic transformation, TTC 2,3,5-triphenyltetrazolium chloride, ZO-1 zonula occludens-1
Fig. 2Diabetes promotes CD147 glycosylation and MMPs induction in astrocytes and endothelium. At 72 h after MCAO, brain tissues from ischemic hemispheres were resected and crushed into homogenate. a Immunoblot result of ischemic brain tissue homogenate. The protein amounts were densitometrically quantified and normalized to β-actin amount. The expression of both CD147, especially the highly glycosylated form (b), and caveolin-1 (c) were upregulated by rt-PA and diabetes. The homogenates were also analyzed for MMP-9/2 activities (d, e). Data expressed as mean ± SEM and analyzed by two-way ANOVA. Asterisk (*) denotes comparison with non-diabetes + saline-treated group, pound (#) with non-diabetes + rt-PA-treated group, and section sign symbol (§) with diabetes + saline-treated group. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. f Representative immunofluorescence imaging of location of CD147 and caveolin-1 (red color represents for target proteins CD147 or caveolin-1; green color represents for cell markers, GFAP for astrocyte, NeuN for neuron and CD31 for endothelial cell). Abbreviations: rt-PA for recombinant tissue plasminogen activator; MCAO for middle cerebral artery occlusion; MMP for matrix metalloproteinase
Fig. 3Highly glycosylated CD147 promotes secretion of MMPs and decreases tight junction protein amount in BMECs. a BMECs were cultured and stimulated with rt-PA (10 μg/mL) in the presence or absence of AGEs (200 μg/mL for 48 h) and the N-glycosylation inhibitor tunicamycin (TM, 15 μg/mL for 48 h, Calbiochem, San Diego, CA). The cell layers were then subjected to immunoblot assay for CD147 and caveolin-1. A representative blot result is shown. b Densitometric quantification results of caveolin-1. c, d MMPs activities in the conditioned media. e, f Representative immunoblot and densitometric quantification results of occludin and ZO-1. Data expressed as mean ± SEM and analyzed by one-way ANOVA test. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. rt-PA for recombinant tissue plasminogen activator; AGEs for glycation end products; MMP for matrix metalloproteinase; ZO-1 for zonula occludens-1
Fig. 4Overexpression of N-glycosylation defective CD147 mutant N152Q blocked MMPs production in BMECs. a Representative Western blots of CD147, caveolin-1, occludin, and ZO-1. b, c Densitometric quantification results of CD147 and caveolin-1 in control and empty vector- or N152Q mutant-transfected BMECs. d, e MMP-2/9 activity in the conditioned media. f, g Densitometric quantification results of occludin and ZO-1. Data expressed as mean ± SEM and analyzed by one-way ANOVA. Asterisk (*) denotes comparison with the control group and pound (#) with the empty vector group. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. EV empty vector, BMEC brain microvascular endothelial cell, MMP matrix metalloproteinase, ZO-1 zonula occludens-1
Fig. 5Highly glycosylated CD147 promotes MMPs activity in primary astrocytes. a Representative immunoblots of CD147 and caveolin-1 in AGEs and tunicamycin-treated primary astrocytes. b Densitometric quantification results of caveolin-1. c, d MMP-2/9 activity in the conditioned media. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. e Representative Western blots of CD147 and caveolin-1 in empty vector- or CD147 N152Q mutant-transfected astrocytes. f, g Densitometric quantification results of CD147 and caveolin-1. h, i MMP-2/9 activity in the conditioned media. Data expressed as mean ± SEM and analyzed by one-way ANOVA. Asterisk (*) denotes comparison with the control group and pound (#) with the empty vector group. rt-PA recombinant tissue plasminogen activator, AGEs glycation end products, TM tunicamycin, EV empty vector, Ctrl control, MMP matrix metalloproteinase, ZO-1 zonula occludens-1
Fig. 6Caveolin-1 binds to CD147 and upregulates its glycosylation. a CD147 and caveolin-1 co-localize in astrocytes and endothelium. b Caveolin-1 silencing by siRNA downregulates HG-CD147 in astrocytes and endothelial cells treated with AGEs and rt-PA. c, d Decrease of HG-CD147 reduces MMPs activities. Data expressed as mean ± SD and analyzed by one-way ANOVA test. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. e HEK293 cells were transfected with HA-caveolin-1 and FLAG-CD147 constructs. The whole cell lysates were subjected to immunoblot analysis (input). In addition, the whole cell lysates were first immunoprecipitated with anti-HA antibody and then detected with anti-CD147 antibody (IP:HA). ASTRO astrocyte, ENDO endothelial cell; HG highly glycosylated, LG lowly glycosylated, MMP matrix metalloproteinase, CO-IP co-immunoprecipitation
Fig. 7Ex-4 ameliorates rt-PA-induced hemorrhagic transformation by downregulating HG-CD147/MMPs pathway. Ex-4 is a GLP-1R agonist that promotes insulin secretion. a, b Ex-4 treatment reduces the stroke volume and HT in both saline and rt-PA groups. c Ex-4 shows a protecting effect on BBB integrity against rt-PA in Evans blue dye assay. Data expressed as mean ± SD. d Representative immunoblots and densitometric quantifications of CD147. Asterisk denotes comparison with control group without rt-PA treatment, number sign denotes comparison with control group with rt-PA treatment, and section sign denotes comparison with Ex-4-treated group without rt-PA treatment. e, f MMP-2/9 activity. Data expressed as mean ± SEM and analyzed by two-way ANOVA. One asterisk (*) represents P < 0.05, two (**) P < 0.01, and three (***) P < 0.001. rt-PA recombinant tissue plasminogen activator, Ex-4 Exendin-4, MMP matrix metalloproteinase, HG highly glycosylated, LG lowly glycosylated, GLP-1R glucagon-like peptide-1 receptor
Fig. 8Abridged general view. Diabetes upregulated the expression of caveolin-1 and the glycosylation of CD147 in both astrocytes and endothelium and further elevated the activities of MMPs, especially MMP-2/9. Higher MMP activity accelerates the degradation of BBB components and ultimately leads to erythrocyte leakage after rt-PA treatment of acute cerebral ischemia