首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Hyperosmotic Stress Induces Aquaporin-dependent Cell Shrinkage Polyphosphate Synthesis Amino Acid Accumulation and Global Gene Expression Changes in Trypanosoma cruzi
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Hyperosmotic Stress Induces Aquaporin-dependent Cell Shrinkage Polyphosphate Synthesis Amino Acid Accumulation and Global Gene Expression Changes in Trypanosoma cruzi

机译:高渗胁迫诱导克氏锥虫的水通道蛋白依赖性细胞收缩多磷酸盐合成氨基酸积累和全局基因表达变化

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摘要

The protist parasite Trypanosoma cruzi has evolved the ability to transit between completely different hosts and to replicate in adverse environments. In particular, the epimastigote form, the replicative stage inside the vector, is subjected to nutritional and osmotic stresses during its development. In this work, we describe the biochemical and global gene expression changes of epimastigotes under hyperosmotic conditions. Hyperosmotic stress resulted in cell shrinking within a few minutes. Depending on the medium osmolarity, this was followed by lack of volume recovery for at least 2 h or by slow recovery. Experiments with inhibitors, or with cells in which an aquaporin gene (TcAQP1) was knocked down or overexpressed, revealed its importance for the cellular response to hyperosmotic stress. Furthermore, the adaptation to this new environment was shown to involve the regulation of the polyphosphate polymerization state as well as changes in amino acid catabolism to generate compatible osmolytes. A genome-wide transcriptional analysis of stressed parasites revealed down-regulation of genes belonging to diverse functional categories and up-regulation of genes encoding trans-sialidase-like and ribosomal proteins. Several of these changes were confirmed by Northern blot analyses. Sequence analysis of the 3′UTRs of up- and down-regulated genes allowed the identification of conserved structural RNA motifs enriched in each group, suggesting that specific ribonucleoprotein complexes could be of great importance in the adaptation of this parasite to different environments through regulation of transcript abundance.
机译:原生寄生虫克氏锥虫已发展出在完全不同的宿主之间转运并在不利环境中复制的能力。特别地,载体内部的复制阶段的淫前鞭毛虫形式在其发育过程中遭受营养和渗透胁迫。在这项工作中,我们描述了高渗条件下附睾的生化和全球基因表达的变化。高渗胁迫导致细胞在几分钟内收缩。取决于中等渗透压,随后至少2小时缺乏体积恢复或缓慢恢复。用抑制剂或其中水通道蛋白基因(TcAQP1)被敲低或过表达的细胞进行的实验表明,它对于细胞对高渗应激的反应至关重要。此外,显示出对这种新环境的适应包括调节聚磷酸盐的聚合状态以及改变氨基酸分解代谢以产生相容的渗透压。在全基因组中对寄生虫进行的转录分析表明,属于多种功能类别的基因表达下调,而编码唾液酸酶样和核糖体蛋白的基因表达上调。通过Northern印迹分析证实了其中一些变化。上调和下调基因的3'UTR的序列分析可以鉴定每个组中富集的保守结构RNA基序,这表明特定的核糖核蛋白复合物可能通过调节其对这种寄生虫适应不同环境具有重要意义。笔录丰富。

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