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Vanillin Inhibits Translation and Induces Messenger Ribonucleoprotein (mRNP) Granule Formation in Saccharomyces cerevisiae: Application and Validation of High-Content Image-Based Profiling

机译:香兰素抑制翻译并诱导啤酒酵母中信使核糖蛋白(mRNP)颗粒形成:高含量基于图像的分析的应用和验证。

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摘要

Vanillin, generated by acid hydrolysis of lignocellulose, acts as a potent inhibitor of the growth of the yeast Saccharomyces cerevisiae. Here, we investigated the cellular processes affected by vanillin using high-content, image-based profiling. Among 4,718 non-essential yeast deletion mutants, the morphology of those defective in the large ribosomal subunit showed significant similarity to that of vanillin-treated cells. The defects in these mutants were clustered in three domains of the ribosome: the mRNA tunnel entrance, exit and backbone required for small subunit attachment. To confirm that vanillin inhibited ribosomal function, we assessed polysome and messenger ribonucleoprotein granule formation after treatment with vanillin. Analysis of polysome profiles showed disassembly of the polysomes in the presence of vanillin. Processing bodies and stress granules, which are composed of non-translating mRNAs and various proteins, were formed after treatment with vanillin. These results suggest that vanillin represses translation in yeast cells.
机译:通过木质纤维素的酸水解产生的香兰素,可作为酿酒酵母生长的有效抑制剂。在这里,我们使用高含量的基于图像的剖析研究了香兰素影响的细胞过程。在4,718个非必需的酵母缺失突变体中,大核糖体亚基缺陷型的形态与香兰素处理过的细胞明显相似。这些突变体中的缺陷聚集在核糖体的三个域中:mRNA通道入口,出口和小亚基附着所需的骨架。为了确认香草醛抑制了核糖体功能,我们评估了香草醛治疗后多核糖体和信使核糖核蛋白颗粒的形成。对多核糖体特征的分析表明,在香草醛存在下多核糖体的分解。用香兰素处理后,形成了由非翻译mRNA和各种蛋白质组成的加工体和应力颗粒。这些结果表明香草醛抑制酵母细胞中的翻译。

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