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Hansenula polymorpha Hac1p Is Critical to Protein N-Glycosylation Activity Modulation as Revealed by Functional and Transcriptomic Analyses

机译:如功能和转录组分析所揭示多形汉逊酵母Hac1p对蛋白质N-糖基化活性调节至关重要。

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摘要

Aggregation of misfolded protein in the endoplasmic reticulum (ER) induces a cellular protective response to ER stress, the unfolded protein response (UPR), which is mediated by a basic leucine zipper (bZIP) transcription factor, Hac1p/Xbp1. In this study, we identified and studied the molecular functions of a HAC1 homolog from the thermotolerant yeast Hansenula polymorpha (HpHAC1). We found that the HpHAC1 mRNA contains a nonconventional intron of 177 bp whose interaction with the 5′ untranslated region is responsible for the translational inhibition of the HpHAC1 mRNA. The H. polymorpha hac1-null (Hphac1Δ) mutant strain grew slowly, even under normal growth conditions, and was less thermotolerant than the wild-type (WT) strain. The mutant strain was also more sensitive to cell wall-perturbing agents and to the UPR-inducing agents dithiothreitol (DTT) and tunicamycin (TM). Using comparative transcriptome analysis of the WT and Hphac1Δ strains treated with DTT and TM, we identified HpHAC1-dependent core UPR targets, which included genes involved in protein secretion and processing, particularly those required for N-linked protein glycosylation. Notably, different glycosylation and processing patterns of the vacuolar glycoprotein carboxypeptidase Y were observed in the WT and Hphac1Δ strains. Moreover, overexpression of active HpHac1p significantly increased the N-linked glycosylation efficiency and TM resistance. Collectively, our results suggest that the function of HpHac1p is important not only for UPR induction but also for efficient glycosylation in H. polymorpha.
机译:内质网(ER)中错误折叠的蛋白质的聚集诱导了对ER应激的细胞保护反应,即未折叠的蛋白质反应(UPR),该反应由碱性亮氨酸拉链(bZIP)转录因子Hac1p / Xbp1介导。在这项研究中,我们从耐热酵母多形汉逊酵母(HpHAC1)中鉴定并研究了HAC1同源物的分子功能。我们发现,HpHAC1 mRNA包含一个177 bp的非常规内含子,该内含子与5'非翻译区的相互作用负责HpHAC1 mRNA的翻译抑制。即使在正常生长条件下,多形汉逊酵母hac1-null(Hphac1Δ)突变株也生长缓慢,并且耐热性低于野生型(WT)株。突变株还对细胞壁扰动剂和UPR诱导剂二硫苏糖醇(DTT)和衣霉素(TM)更敏感。通过比较用DTT和TM处理的WT和Hphac1Δ菌株的转录组分析,我们确定了HpHAC1依赖性核心UPR靶标,其中包括参与蛋白质分泌和加工的基因,特别是N-连接蛋白糖基化所需的基因。值得注意的是,在WT和Hphac1Δ菌株中观察到液泡糖蛋白羧肽酶Y的不同糖基化和加工模式。此外,活性HpHac1p的过表达显着增加了N-联糖基化效率和TM抗性。总的来说,我们的结果表明,HpHac1p的功能不仅对于UPR诱导很重要,而且对多形汉逊酵母的有效糖基化也很重要。

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