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Cellular responses to the expression of unstable secretory proteins in the filamentous fungus Aspergillus oryzae

机译:细胞反应对丝状真菌在丝状真菌菊属植物中的不稳定分泌蛋白表达

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Filamentous fungi are often used as cell factories for recombinant protein production because of their ability to secrete large quantities of hydrolytic enzymes. However, even using strong transcriptional promoters, yields of nonfungal proteins are generally much lower than those of fungal proteins. Recent analyses revealed that expression of certain nonfungal secretory proteins induced the unfolded protein response (UPR), suggesting that they are recognized as proteins with folding defects in filamentous fungi. More recently, however, even highly expressed endogenous secretory proteins were found to evoke the UPR. These findings raise the question of whether the unfolded or misfolded state of proteins is selectively recognized by quality control mechanisms in filamentous fungi. In this study, a fungal secretory protein (1,2-alpha-D-mannosidase; MsdS) with a mutation that decreases its thermostability was expressed at different levels in Aspergillus oryzae. We found that, at moderate expression levels, wild-type MsdS was secreted to the medium, while the mutant was not. In the strain with a deletion for the hrdA gene, which is involved in the endoplasmic reticulum-associated degradation pathway, mutant MsdS had specifically increased levels in the intracellular fraction but was not secreted. When overexpressed, the mutant protein was secreted to the medium to a similar extent as the wild-type protein; however, the mutant underwent hyperglycosylation and induced the UPR. Deletion of alpha-amylase (the most abundant secretory protein in A. oryzae) alleviated the UPR induction by mutant MsdS overexpression. These findings suggest that misfolded MsdS and unfolded species of alpha-amylase might act synergistically for UPR induction.
机译:丝状真菌通常被用作重组蛋白质产生的细胞工厂,因为它们分泌大量水解酶的能力。然而,即使使用强型转录启动子,非良性蛋白质的产率通常远低于真菌蛋白质的产率。最近的分析表明,某些非良性分泌蛋白的表达诱导展开的蛋白质反应(UPR),表明它们被认为是丝状真菌折叠缺陷的蛋白质。然而,最近,发现甚至表达高表达的内源性分泌蛋白唤起了UPR。这些发现提出了丝状真菌中的质量控制机制选择性地认识到展开或错误折叠状态是否选择性地识别出来的问题。在该研究中,具有降低其热稳定性的突变的真菌分泌蛋白(1,2-α-D-甘露糖苷酶; MSDS)在曲霉属植物的不同水平下表达。我们发现,在中等表达水平下,野生型MSDS被分泌到培养基中,而突变体不是。在缺失的菌株中,涉及内质网相关的降解途径,突变MSD在细胞内馏分中具有特异性增加,但未分泌。当过表达时,将突变蛋白分泌到培养基中以与野生型蛋白相似的程度;然而,突变体接受高糖基化并诱导UPR。缺失α-淀粉酶(A. Oryzae中最丰富的分泌蛋白)缓解了突变MSDS过表达的UPR诱导。这些发现表明,错误折叠的MSDS和展开的α-淀粉酶的物种可能协同促进UPR诱导。

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