[敲除ACC1对胶质瘤U251细胞迁移的影响及其机制]。

Lin Zhang, He Qian, Bao-Sheng Zhao, Man-Qi Gao, Yu-Zhen Liu
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The cells then were treated with PAI-1 inhibitor PAI-039, and the cell migration was detected by Transwell migration assay and scratch assay. The protein levels of ACC1, PAI-1, Vimentin, Fibronectin, N-cadherin, E-cadherin and Slug were examined by WB. Experiment 3: the molecular mechanisms of knocking down ACC1 to increase PAI-1 were explored. The cells were treated with acetyltransferase inhibitor C646, and cell migration was examined by Transwell migration assay and scratch assay. WB was conducted to test the levels of ACC1, H3K9ac, PAI-1, Vimentin, Fibronectin, N-cadherin, E-cadherin and Slug proteins. Each experiment was repeated three times. <b>Results:</b> Experiment 1: lentivirus transfection was performed on glioma U251 cells. 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引用次数: 0

摘要

目的:探讨ACC1基因下调对人胶质瘤U251细胞迁移的影响及其分子机制。方法:采用人胶质瘤U251细胞系。实验分三步进行。实验1:通过转染shACC1慢病毒和阴性对照病毒,建立U251细胞中ACC1的敲低(shACC1)及其对照(NC) U251细胞。采用Transwell迁移试验和划痕试验检测细胞迁移。Western blot (WB)检测各组ACC1、Vimentin、Fibronectin、N-cadherin、E-cadherin和Slug蛋白的表达水平。实验2:通过RT-qPCR和WB验证RNA-seq结果,ACC1敲低对U251细胞PAI-1的上调作用。然后用PAI-1抑制剂PAI-039处理细胞,用Transwell迁移法和划痕法检测细胞迁移。WB检测各组ACC1、PAI-1、Vimentin、Fibronectin、N-cadherin、E-cadherin、Slug蛋白水平。实验3:探讨敲除ACC1增加PAI-1的分子机制。用乙酰转移酶抑制剂C646处理细胞,用Transwell迁移法和划痕法检测细胞迁移。WB检测各组ACC1、H3K9ac、PAI-1、Vimentin、Fibronectin、N-cadherin、E-cadherin、Slug蛋白水平。每个实验重复三次。结果:实验一:用慢病毒转染胶质瘤U251细胞。与NC组相比,shACC1组细胞中ACC1的表达量显著降低,表明慢病毒转染成功(P<0.01),且shACC1组细胞迁移数显著增加(P<0.01)。迁移相关蛋白Vimentin、Fibronectin、N-cadherin、Slug上调,E-cadherin下调(P<0.01)。实验2:与NC组比较,shACC1组PAI-1 mRNA水平上调。与对照组相比,shACC1+PAI-039组细胞迁移减少(P<0.01),迁移相关蛋白Vimentin、Fibronectin、N-cadherin、Slug表达上调。E-cadherin表达下调(P<0.01)。实验3:与NC组相比,shACC1组乙酰辅酶a浓度和H3K9ac表达水平显著升高(P<0.01);组蛋白乙酰转移酶抑制剂C646进一步治疗后,与对照组相比,shACC1+C646组PAI-1 mRNA水平降低,细胞迁移数量和H3K9ac表达水平降低(P<0.01)。迁移相关蛋白Vimentin、Fibronectin、N-cadherin、Slug上调,E-cadherin下调(P<0.01)。结论:敲低ACC1可通过增加组蛋白乙酰化,提高PAI-1水平,促进胶质瘤U251细胞的迁移。
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[Effects of knockdown ACC1 on glioma U251 cell migration and its mechanisms].

Objective: To investigate the effects of ACC1 knockdown on human glioma U251 cell migration and its molecular mechanisms. Methods: Human glioma U251 cell line was used. The experiment was carried out in three steps. Experiment 1: knockdown of ACC1 in U251 cells (shACC1) and its control (NC) U251 cells were established by transfection of shACC1 lentivirus and negative control virus. The cell migration was detected by Transwell migration assay and scratch test. Western blot (WB) was performed to detect the levels of ACC1, Vimentin, Fibronectin, N-cadherin, E-cadherin and Slug proteins. Experiment 2: RT-qPCR and WB were performed to verify the RNA-seq result, upregulation effect of ACC1 knockdown on PAI-1 in U251 cells. The cells then were treated with PAI-1 inhibitor PAI-039, and the cell migration was detected by Transwell migration assay and scratch assay. The protein levels of ACC1, PAI-1, Vimentin, Fibronectin, N-cadherin, E-cadherin and Slug were examined by WB. Experiment 3: the molecular mechanisms of knocking down ACC1 to increase PAI-1 were explored. The cells were treated with acetyltransferase inhibitor C646, and cell migration was examined by Transwell migration assay and scratch assay. WB was conducted to test the levels of ACC1, H3K9ac, PAI-1, Vimentin, Fibronectin, N-cadherin, E-cadherin and Slug proteins. Each experiment was repeated three times. Results: Experiment 1: lentivirus transfection was performed on glioma U251 cells. Compared with NC group, the expression level of ACC1 in shACC1 group was decreased significantly, indicating that lentivirus transfection was successful (P<0.01), and the number of migrated cells in shACC1 group was increased significantly (P<0.01). Migration-related proteins Vimentin, Fibronectin, N-cadherin and Slug were up-regulated, while E-cadherin was down-regulated (P<0.01). Experiment 2: Compared with NC group, PAI-1 mRNA level in shACC1 group was up-regulated. Compared with control group, cell migration in shACC1+PAI-039 group was decreased (P<0.01), and migration-related proteins Vimentin, Fibronectin, N-cadherin, and Slug were up-regulated. E-cadherin expression was down-regulated (P<0.01). Experiment 3: Compared with NC group, the concentration of acetyl-coA and the expression level of H3K9ac in shACC1 group were increased significantly (P<0.01); After further treatment with histone acetyl transferase inhibitor C646, PAI-1 mRNA level was decreased, cell migration number and H3K9ac expression level were decreased in shACC1+C646 group compared with control group (P<0.01). Migration-related proteins Vimentin, Fibronectin, N-cadherin and Slug were up-regulated, while E-cadherin was down-regulated (P<0.01). Conclusion: Knockdown of ACC1 promotes the migration of human glioma U251 cells by increasing histone acetylation which elevates the level of PAI-1.

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