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酒精暴露的星形胶质细胞中 Rho/ROCK 通路的抑制促进了发育和迁移相关基因的表达。

Inhibition of the Rho/ROCK pathway promotes the expression of developmental and migration-related genes in astrocytes exposed to alcohol.

机构信息

Department of Neurology, The First Affiliated Hospital of Jiamusi University, Jiamusi, People's Republic of China.

Jiamusi University, Jiamusi, People's Republic of China.

出版信息

Alcohol. 2024 Mar;115:5-12. doi: 10.1016/j.alcohol.2023.06.003. Epub 2023 Jul 20.

DOI:10.1016/j.alcohol.2023.06.003
PMID:37481044
Abstract

Astrocytes are an important regulator of alcohol dependence. Furthermore, the downregulation of Rho-associated coiled coil-containing protein kinase 2 (ROCK2) attenuates alcohol-induced inflammation and oxidative stress in astrocytes. On the basis of these findings, we examined the effects of alcohol and a Rho/RACK kinases inhibitor on astrocyte function and investigated their effects on mRNA expression to further explore the protective mechanisms of a Rho/RACK kinases inhibitor in astrocytes after alcohol exposure. CTX TNA2 astrocytes were cultured with alcohol and Rho/RACK kinases inhibitor intervention before undergoing transcriptome sequencing, quantitative reverse transcription polymerase chain reaction (qRT-PCR), and wound healing assays. Alcohol exposure modulated cell morphology and inhibited astrocyte migration, whereas Fasudil improved cell morphology and promoted astrocyte migration after alcohol exposure. Transcriptome sequencing results indicated that alcohol exposure modulates the expression of genes involved in astrocyte development. Fasudil reversed the effects of alcohol exposure on the astrocyte developmental process. Four genes related to the developmental process and migration - Ccl2, Postn, Itga8, and Serpine1 - with the highest protein-protein interaction correlations (node degree >7) were selected for verification by qRT-PCR, and the results were consistent with those of the sequencing and wound healing assays. Our results suggest that the Rho/ROCK pathway is essential for alcohol to be able to interfere with astrocyte development and migration gene expression. The Rho/ROCK pathway inhibitor Fasudil reversed the adverse effects of alcohol exposure on astrocytes and may have clinical applications.

摘要

星形胶质细胞是酒精依赖的重要调节者。此外,Rho 相关卷曲螺旋蛋白激酶 2(ROCK2)的下调可减轻星形胶质细胞中酒精引起的炎症和氧化应激。基于这些发现,我们研究了酒精和 Rho/RACK 激酶抑制剂对星形胶质细胞功能的影响,并研究了它们对 mRNA 表达的影响,以进一步探讨 Rho/RACK 激酶抑制剂在酒精暴露后对星形胶质细胞的保护机制。CTX TNA2 星形胶质细胞在接受酒精和 Rho/RACK 激酶抑制剂干预后进行转录组测序、定量逆转录聚合酶链反应(qRT-PCR)和划痕愈合实验。酒精暴露会改变细胞形态并抑制星形胶质细胞迁移,而法舒地尔可改善酒精暴露后的细胞形态并促进星形胶质细胞迁移。转录组测序结果表明,酒精暴露会调节与星形胶质细胞发育相关的基因表达。法舒地尔逆转了酒精暴露对星形胶质细胞发育过程的影响。选择与发育过程和迁移相关的四个基因(Ccl2、Postn、Itga8 和 Serpine1)进行 qRT-PCR 验证,结果与测序和划痕愈合实验一致。我们的结果表明,Rho/ROCK 通路对于酒精能够干扰星形胶质细胞发育和迁移基因表达是必不可少的。Rho/ROCK 通路抑制剂法舒地尔逆转了酒精暴露对星形胶质细胞的不良影响,可能具有临床应用价值。

相似文献

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Inhibition of the Rho/ROCK pathway promotes the expression of developmental and migration-related genes in astrocytes exposed to alcohol.酒精暴露的星形胶质细胞中 Rho/ROCK 通路的抑制促进了发育和迁移相关基因的表达。
Alcohol. 2024 Mar;115:5-12. doi: 10.1016/j.alcohol.2023.06.003. Epub 2023 Jul 20.
2
Rho kinase inhibitor Fasudil induces neuroprotection and neurogenesis partially through astrocyte-derived G-CSF.Rho激酶抑制剂法舒地尔部分通过星形胶质细胞衍生的G-CSF诱导神经保护和神经发生。
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Rho-kinase inhibitor, fasudil, suppresses glioblastoma cell line progression in vitro and in vivo.Rho 激酶抑制剂法舒地尔在体外和体内抑制神经胶质细胞瘤细胞系的进展。
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Nrf2 pathway activation promotes the expression of genes related to glutathione metabolism in alcohol-exposed astrocytes.Nrf2 通路激活促进酒精暴露的星形胶质细胞中与谷胱甘肽代谢相关基因的表达。
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Fasudil, a Rho kinase inhibitor, drives mobilization of adult neural stem cells after hypoxia/reoxygenation injury in mice.法舒地尔,一种 Rho 激酶抑制剂,可促进缺氧/复氧损伤后小鼠成年神经干细胞的动员。
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Transcriptomic profiling of astrocytes treated with the Rho kinase inhibitor fasudil reveals cytoskeletal and pro-survival responses.用 Rho 激酶抑制剂法舒地尔处理的星形胶质细胞的转录组分析揭示了细胞骨架和促生存反应。
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The inhibition of Rho kinase blocks cell migration and accumulation possibly by challenging inflammatory cytokines and chemokines on astrocytes.Rho激酶的抑制可能通过挑战星形胶质细胞上的炎性细胞因子和趋化因子来阻断细胞迁移和聚集。
J Neurol Sci. 2014 Aug 15;343(1-2):69-75. doi: 10.1016/j.jns.2014.05.034. Epub 2014 May 27.

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