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Calreticulin Binds to Gentamicin and Reduces Drug-Induced Ototoxicity

机译:钙网蛋白与庆大霉素结合并减少药物诱导的耳毒性

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摘要

Aminoglycosides like gentamicin are among the most commonly used antibiotics in clinical practice and are essential for treating life-threatening tuberculosis and Gram-negative bacterial infections. However, aminoglycosides are also nephrotoxic and ototoxic. Although a number of mechanisms have been proposed, it is still unclear how aminoglycosides induce cell death in auditory sensory epithelia and subsequent deafness. Aminoglycosides bind to various intracellular molecules, such as RNA and phosphoinositides. We hypothesized that aminoglycosides, based on their tissue-specific susceptibility, also bind to intracellular proteins that play a role in drug-induced ototoxicity. By conjugating an aminoglycoside, gentamicin, to agarose beads and conducting a gentamicin-agarose pull-down assay, we have isolated gentamicin-binding proteins (GBPs) from immortalized cells of mouse organ of Corti, HEI-OC1. Mass spectrometry identified calreticulin (CRT) as a GBP. Immunofluorescence revealed that CRT expression is concentrated in strial marginal cells and hair cell stereocilia, primary locations of drug uptake and cytotoxicity in the cochlea. In HEI-OC1 cells treated with gentamicin, reduction of CRT expression using small interfering RNA (siRNA) reduced intracellular drug levels. CRT-deficient mouse embryonic fibroblast (MEF) cells as well as CRT siRNA-transfected wild-type MEFs also had reduced cell viability after gentamicin treatment. A pull-down assay using deletion mutants of CRT determined that the carboxyl C-domain of CRT binds to gentamicin. HeLa cells transfected with CRT C-domain deletion mutant construct were more susceptible to gentamicin-induced cytotoxicity compared with cells transfected with full-length CRT or other deletion mutants. Therefore, we conclude that CRT binding to gentamicin is protective against gentamicin-induced cytotoxicity.
机译:像庆大霉素这样的氨基糖苷类药物是临床实践中最常用的抗生素之一,对于治疗威胁生命的结核病和革兰氏阴性细菌感染至关重要。但是,氨基糖苷也具有肾毒性和耳毒性。尽管已经提出了许多机制,但是仍不清楚氨基糖苷如何诱导听觉感觉上皮细胞死亡和随后的耳聋。氨基糖苷结合各种细胞内分子,例如RNA和磷酸肌醇。我们假设氨基糖苷类基于其组织特异性敏感性,也与在药物诱导的耳毒性中起作用的细胞内蛋白结合。通过将氨基糖苷庆大霉素与琼脂糖珠缀合并进行庆大霉素-琼脂糖下拉测定,我们从Corti小鼠器官永生化细胞HEI-OC1中分离了庆大霉素结合蛋白(GBP)。质谱鉴定为钙网蛋白(CRT)为GBP。免疫荧光显示,CRT的表达主要集中在边缘边缘细胞和毛细胞立体纤毛中,是耳蜗中药物吸收和细胞毒性的主要部位。在庆大霉素处理的HEI-OC1细胞中,使用小分子干扰RNA(siRNA)降低CRT表达可降低细胞内药物水平。 CRT缺陷的小鼠胚胎成纤维细胞(MEF)以及CRT siRNA转染的野生型MEF在庆大霉素处理后的细胞活力也降低了。使用CRT缺失突变体的下拉测定法确定CRT的羧基C结构域与庆大霉素结合。与用全长CRT或其他缺失突变体转染的细胞相比,用CRT C结构域缺失突变体构建体转染的HeLa细胞更容易受到庆大霉素诱导的细胞毒性的影响。因此,我们得出结论,CRT与庆大霉素的结合对庆大霉素诱导的细胞毒性具有保护作用。

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