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白色念珠菌中三叶草四脯氨酸家族保守成员对转录本丰度的转录后调控。

Post-transcriptional regulation of transcript abundance by a conserved member of the tristetraprolin family in Candida albicans.

作者信息

Wells Melissa L, Washington Onica L, Hicks Stephanie N, Nobile Clarissa J, Hartooni Nairi, Wilson Gerald M, Zucconi Beth E, Huang Weichun, Li Leping, Fargo David C, Blackshear Perry J

机构信息

Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, Research Triangle Park, NC, 27709, USA.

出版信息

Mol Microbiol. 2015 Mar;95(6):1036-53. doi: 10.1111/mmi.12913. Epub 2015 Jan 30.

Abstract

Members of the tristetraprolin (TTP) family of CCCH tandem zinc finger proteins bind to AU-rich regions in target mRNAs, leading to their deadenylation and decay. Family members in Saccharomyces cerevisiae influence iron metabolism, whereas the single protein expressed in Schizosaccharomyces pombe, Zfs1, regulates cell-cell interactions. In the human pathogen Candida albicans, deep sequencing of mutants lacking the orthologous protein, Zfs1, revealed significant increases (> 1.5-fold) in 156 transcripts. Of these, 113 (72%) contained at least one predicted TTP family member binding site in their 3'UTR, compared with only 3 of 56 (5%) down-regulated transcripts. The zfs1Δ/Δ mutant was resistant to 3-amino-1,2,4-triazole, perhaps because of increased expression of the potential target transcript encoded by HIS3. Sequences of the proteins encoded by the putative Zfs1 targets were highly conserved among other species within the fungal CTG clade, while the predicted Zfs1 binding sites in these mRNAs often 'disappeared' with increasing evolutionary distance from the parental species. C. albicans Zfs1 bound to the ideal mammalian TTP binding site with high affinity, and Zfs1 was associated with target transcripts after co-immunoprecipitation. Thus, the biochemical activities of these proteins in fungi are highly conserved, but Zfs1-like proteins may target different transcripts in each species.

摘要

CCCH串联锌指蛋白家族的三铁四脯氨酸蛋白(TTP)成员与靶标mRNA中的富含AU区域结合,导致其去腺苷酸化和降解。酿酒酵母中的家族成员影响铁代谢,而粟酒裂殖酵母中表达的单一蛋白Zfs1则调节细胞间相互作用。在人类病原体白色念珠菌中,对缺乏直系同源蛋白Zfs1的突变体进行深度测序发现,156个转录本有显著增加(>1.5倍)。其中,113个(72%)在其3'非翻译区含有至少一个预测的TTP家族成员结合位点,相比之下,56个下调转录本中只有3个(5%)含有该位点。zfs1Δ/Δ突变体对3-氨基-1,2,4-三唑具有抗性,这可能是由于HIS3编码的潜在靶标转录本表达增加所致。假定的Zfs1靶标所编码的蛋白质序列在真菌CTG进化枝中的其他物种间高度保守,而这些mRNA中预测的Zfs1结合位点通常会随着与亲本物种进化距离的增加而“消失”。白色念珠菌Zfs1以高亲和力结合理想的哺乳动物TTP结合位点,并且在免疫共沉淀后Zfs1与靶标转录本相关联。因此,这些蛋白在真菌中的生化活性高度保守,但类似Zfs1的蛋白可能在每个物种中靶向不同的转录本。

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