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Tiered Regulation of Sulfur Deprivation Responses in Chlamydomonas reinhardtii and Identification of an Associated Regulatory Factor

机译:莱茵衣藻硫剥夺反应的分层调控及相关调控因子的鉴定

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摘要

During sulfur () deprivation, the unicellular alga Chlamydomonas reinhardtii exhibits increased expression of numerous genes. These genes encode proteins associated with sulfate () acquisition and assimilation, alterations in cellular metabolism, and internal recycling. Administration of the cytoplasmic translational inhibitor cycloheximide prevents deprivation-triggered accumulation of transcripts encoding arylsulfatases (), an extracellular polypeptide that may be important for cell wall biosynthesis (ECP76), a light-harvesting protein (LHCBM9), the selenium-binding protein, and the haloperoxidase (HAP2). In contrast, the rapid accumulation of transcripts encoding high-affinity transporters is not affected. These results suggest that there are two tiers of transcriptional regulation associated with deprivation responses: the first is protein synthesis independent, while the second requires de novo protein synthesis. A mutant designated ars73a exhibited low activity and failed to show increases in ECP76, LHCBM9, and HAP2 transcripts (among others) in response to deprivation; increases in transcripts encoding the transporters were not affected. These results suggest that the ARS73a protein, which has no known activity but might be a transcriptional regulator, is required for the expression of genes associated with the second tier of transcriptional regulation. Analysis of the ars73a strain has helped us generate a model that incorporates a number of complexities associated with deprivation responses in C. reinhardtii.
机译:在硫()剥夺期间,单细胞藻类莱茵衣藻展示了许多基因的增加表达。这些基因编码与硫酸盐的获取和吸收,细胞代谢改变和内部循环有关的蛋白质。胞浆翻译抑制剂环己酰亚胺的给药可防止剥夺触发的编码芳基硫酸酯酶()的转录本的积累,芳基硫酸酯酶可能对细胞壁生物合成(ECP76),光捕获蛋白(LHCBM9),硒结合蛋白和卤过氧化物酶(HAP2)。相反,编码高亲和力转运蛋白的转录本的快速积累不受影响。这些结果表明,与剥夺反应相关的转录调控有两层:第一层是蛋白质合成独立的,而第二层则需要从头进行蛋白质合成。命名为ars73a的突变体显示出低活性,并且未能显示出ECP76,LHCBM9和HAP2转录本(除其他外)响应于剥夺的增加;编码转运蛋白的转录本的增加没有受到影响。这些结果表明,具有未知活性但可能是转录调节子的ARS73a蛋白是表达与第二级转录调节相关的基因所必需的。对ars73a菌株的分析帮助我们生成了一个模型,该模型包含了与莱茵衣原体中的剥夺反应相关的许多复杂性。

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