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Puf4 Regulates both Splicing and Decay of HXL1 mRNA Encoding the Unfolded Protein Response Transcription Factor in Cryptococcus neoformans

机译:Puf4调节HXL1 mRNA的剪接和衰变编码新球菌中未折叠的蛋白质反应转录因子。

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The endoplasmic reticulum (ER) responds to errors in protein folding or processing by induction of the unfolded protein response (UPR). During conditions of ER stress, unconventional splicing of an mRNA encoding the UPR-responsive transcription factor occurs at the ER surface, resulting in activation of the UPR. UPR activation is necessary for adaptation to ER stress and for the pathogenic fungus Cryptococcus neoformans is an absolute requirement for temperature adaptation and virulence. In this study, we have determined that C. neoformans has co-opted a conserved PUF RNA binding protein to regulate the posttranscriptional processing of the HXL1 mRNA encoding the UPR transcription factor. PUF elements were identified in both the 5′ and 3′ untranslated regions of the HXL1 transcript, and both elements bound Puf4. Deletion of PUF4 resulted in delayed unconventional splicing of HXL1 mRNA and delayed induction of Hxl1 target genes. In addition, the HXL1 transcript was stabilized in the absence of Puf4. The puf4Δ mutant exhibited temperature sensitivity but was as virulent as the wild type, despite a reduction in fungal burden in the brains of infected mice. Our results reveal a novel regulatory role in which a PUF protein influences the unconventional splicing of the mRNA encoding the UPR-responsive transcription factor. These data suggest a unique role for a PUF protein in controlling UPR kinetics via the posttranscriptional regulation of the mRNA encoding the UPR transcription factor Hxl1.
机译:内质网(ER)通过诱导未折叠的蛋白质反应(UPR)来响应蛋白质折叠或加工中的错误。在内质网应激的条件下,编码内质网反应性转录因子的mRNA的非常规剪接发生在内质网表面,导致了内质网的活化。 UPR激活对于适应内质网应激和致病性真菌新生球隐球菌是温度适应和毒力的绝对要求。在这项研究中,我们已经确定新孢子虫已经选择了保守的PUF RNA结合蛋白来调节编码UPR转录因子的 HXL1 mRNA的转录后加工。在 HXL1 转录本的5'和3'非翻译区中都鉴定出PUF元件,并且两个元件都结合了Puf4。 PUF4 的缺失导致 HXL1 mRNA非常规剪接的延迟和Hxl1靶基因的诱导延迟。此外,在没有Puf4的情况下, HXL1 转录物也稳定了。尽管感染小鼠大脑中的真菌负担有所减轻,但 puf4 Δ突变体却表现出温度敏感性,但与野生型一样强。我们的结果揭示了一种新的调节作用,其中PUF蛋白影响编码UPR响应转录因子的mRNA的非常规剪接。这些数据表明,PUF蛋白通过转录后调控编码UPR转录因子Hxl1的mRNA,在控制UPR动力学方面具有独特作用。

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