Monazza Shahab , Rita Rosati , Paul M. Stemmer , Alan Dombkowski , Samson Jamesdaniel
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The mass spectrometry analysis of cochlear synaptosomal proteins identified 102 proteins that decreased in abundance and 249 that increased in abundance after cisplatin treatment. Pathway analysis suggested that the dysregulated proteins were involved in calcium binding, calcium ion regulation, synapses, and endocytosis pathways. Inhibition of nitrative stress by co-treatment with MnTBAP, a peroxynitrite scavenger, attenuated cisplatin-induced changes in the abundance of 27 proteins. Furthermore, MnTBAP co-treatment prevented the cisplatin-induced decrease in the amplitude and increase in the latency of wave I. 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引用次数: 0
摘要
耳蜗中带状突触的破坏会影响从耳蜗感觉受体细胞到听觉皮层的听觉信号传输。尽管顺铂诱导的带状突触缺失已得到充分证实,并且有研究报告称顺铂治疗后耳蜗蛋白会发生硝化,但耳蜗突触病的基本机制尚未完全清楚。本研究验证了这样一个假设:顺铂治疗会改变耳蜗突触体蛋白的丰度,而选择性靶向硝化应激可防止相关的突触功能障碍。用顺铂治疗的小鼠的听觉脑干反应显示波I的振幅减小,潜伏期增加,这表明顺铂诱导的突触功能障碍。通过对耳蜗突触体蛋白进行质谱分析,发现在顺铂处理后,有102个蛋白的丰度降低,249个蛋白的丰度升高。通路分析表明,失调的蛋白质参与了钙结合、钙离子调节、突触和内吞途径。通过与过氧化亚硝酸盐清除剂 MnTBAP 联合处理来抑制硝化应激,可减轻顺铂诱导的 27 种蛋白质丰度的变化。此外,MnTBAP 还能防止顺铂诱导的 I 波振幅下降和潜伏期延长。这些发现共同表明,氧化/硝化应激在顺铂诱导的耳蜗突触功能障碍中可能扮演了重要角色。
Quantitative profiling of cochlear synaptosomal proteins in cisplatin-induced synaptic dysfunction
The disruption of ribbon synapses in the cochlea impairs the transmission of auditory signals from the cochlear sensory receptor cells to the auditory cortex. Although cisplatin-induced loss of ribbon synapses is well-documented, and studies have reported nitration of cochlear proteins after cisplatin treatment, yet the underlying mechanism of cochlear synaptopathy is not fully understood. This study tests the hypothesis that cisplatin treatment alters the abundance of cochlear synaptosomal proteins, and selective targeting of nitrative stress prevents the associated synaptic dysfunction. Auditory brainstem responses of mice treated with cisplatin showed a reduction in amplitude and an increase in latency of wave I, indicating cisplatin-induced synaptic dysfunction. The mass spectrometry analysis of cochlear synaptosomal proteins identified 102 proteins that decreased in abundance and 249 that increased in abundance after cisplatin treatment. Pathway analysis suggested that the dysregulated proteins were involved in calcium binding, calcium ion regulation, synapses, and endocytosis pathways. Inhibition of nitrative stress by co-treatment with MnTBAP, a peroxynitrite scavenger, attenuated cisplatin-induced changes in the abundance of 27 proteins. Furthermore, MnTBAP co-treatment prevented the cisplatin-induced decrease in the amplitude and increase in the latency of wave I. Together, these findings suggest a potential role of oxidative/nitrative stress in cisplatin-induced cochlear synaptic dysfunction.
期刊介绍:
The aim of the journal is to provide a forum for papers concerned with basic peripheral and central auditory mechanisms. Emphasis is on experimental and clinical studies, but theoretical and methodological papers will also be considered. The journal publishes original research papers, review and mini- review articles, rapid communications, method/protocol and perspective articles.
Papers submitted should deal with auditory anatomy, physiology, psychophysics, imaging, modeling and behavioural studies in animals and humans, as well as hearing aids and cochlear implants. Papers dealing with the vestibular system are also considered for publication. Papers on comparative aspects of hearing and on effects of drugs and environmental contaminants on hearing function will also be considered. Clinical papers will be accepted when they contribute to the understanding of normal and pathological hearing functions.