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首页> 外文期刊>Journal of cellular and molecular medicine. >STK33 alleviates gentamicin‐induced ototoxicity in cochlear hair cells and House Ear Institute‐Organ of Corti 1 cells
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STK33 alleviates gentamicin‐induced ototoxicity in cochlear hair cells and House Ear Institute‐Organ of Corti 1 cells

机译:STK33减轻了庆大霉素诱导的耳蜗毛细胞和House Ear Institute-Corti 1细胞器官的耳毒性

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Serine/threonine kinase 33 (STK33), a member of the calcium/calmodulin‐dependent kinase (CAMK), plays vital roles in a wide spectrum of cell processes. The present study was designed to investigate whether STK33 expressed in the mammalian cochlea and, if so, what effect STK33 exerted on aminoglycoside‐induced ototoxicity in House Ear Institute‐Organ of Corti 1 (HEI‐OC1) cells. Immunofluorescence staining and western blotting were performed to investigate STK33 expression in cochlear hair cells (HCs) and HEI‐OC1 cells with or without gentamicin treatment. CCK8, flow cytometry, immunofluorescence staining and western blotting were employed to detect the effects of STK33 knockdown, and/or U0126, and/or N‐acetyl‐L‐cysteine (NAC) on the sensitivity to gentamicin‐induced ototoxicity in HEI‐OC1 cells. We found that STK33 was expressed in both mice cochlear HCs and HEI‐OC1 cells, and the expression of STK33 was significantly decreased in cochlear HCs and HEI‐OC1 cells after gentamicin exposure. STK33 knockdown resulted in an increase in the cleaved caspase‐3 and Bax expressions as well as cell apoptosis after gentamicin damage in HEI‐OC1 cells. Mechanistic studies revealed that knockdown of STK33 led to activated mitochondrial apoptosis pathway as well as augmented reactive oxygen species (ROS) accumulation after gentamicin damage. Moreover, STK33 was involved in extracellular signal‐regulated kinase 1/2 pathway in primary culture of HCs and HEI‐OC1 cells in response to gentamicin insult. The findings from this work indicate that STK33 decreases the sensitivity to the apoptosis dependent on mitochondrial apoptotic pathway by regulating ROS generation after gentamicin treatment, which provides a new potential target for protection from the aminoglycoside‐induced ototoxicity.
机译:丝氨酸/苏氨酸激酶33(STK33)是钙/钙调蛋白依赖性激酶(CAMK)的成员,在广泛的细胞过程中起着至关重要的作用。本研究旨在调查STK33是否在哺乳动物的耳蜗中表达,如果是,那么STK33对房耳研究所的Corti 1器官(HEI-OC1)细胞中氨基糖苷诱导的耳毒性有何作用。进行了免疫荧光染色和蛋白质印迹分析,以研究经庆大霉素处理或未经庆大霉素处理的STK33在耳蜗毛细胞(HCs)和HEI-OC1细胞中的表达。使用CCK8,流式细胞仪,免疫荧光染色和蛋白质印迹法来检测STK33敲低和/或U0126和/或N-乙酰-L-半胱氨酸(NAC)对庆大霉素诱导的耳毒性在HEI-OC1中的敏感性的影响细胞。我们发现庆大霉素暴露后,小鼠耳蜗HCs和HEI-OC1细胞中均表达了STK33,而耳蜗HCs和HEI-OC1细胞中STK33的表达显着降低。 STK33敲低导致庆大霉素损伤HEI-OC1细胞后裂解的caspase-3和Bax表达增加以及细胞凋亡。机理研究表明,庆大霉素损害后,敲低STK33会导致激活的线粒体细胞凋亡途径以及增加的活性氧(ROS)积累。此外,STK33在庆大霉素侵害时,在HCs和HEI-OC1细胞的原代培养中参与了细胞外信号调节激酶1/2途径。这项工作的发现表明,STK33通过调节庆大霉素处理后的ROS产生,从而降低了对依赖于线粒体凋亡途径的凋亡的敏感性,这为保护氨基糖苷诱导的耳毒性提供了新的潜在靶点。

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