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细胞外pH值和转录调节因子PACI对里氏木霉转录组的影响。

The effects of extracellular pH and of the transcriptional regulator PACI on the transcriptome of Trichoderma reesei.

作者信息

Häkkinen Mari, Sivasiddarthan Dhinakaran, Aro Nina, Saloheimo Markku, Pakula Tiina M

机构信息

VTT Technical Research Centre of Finland, P.O. Box 1000, (Tietotie 2, Espoo), FI-02044 VTT, Finland.

出版信息

Microb Cell Fact. 2015 Apr 30;14:63. doi: 10.1186/s12934-015-0247-z.

Abstract

BACKGROUND

Extracellular pH is one of the several environmental factors affecting protein production by filamentous fungi. Regulatory mechanisms ensure that extracellular enzymes are produced under pH-conditions in which the enzymes are active. In filamentous fungi, the transcriptional regulation in different ambient pH has been studied especially in Aspergilli, whereas the effects of pH in the industrial producer of hydrolytic enzymes, Trichoderma reesei, have mainly been studied at the protein level. In this study, the pH-dependent expression of T. reesei genes was investigated by genome-wide transcriptional profiling and by analysing the effects of deletion of the gene encoding the transcriptional regulator pac1, the orthologue of Aspergillus nidulans pacC gene.

RESULTS

Transcriptional analysis revealed the pH-responsive genes of T. reesei, and functional classification of the genes identified the activities most affected by changing pH. A large number of genes encoding especially transporters, signalling-related proteins, extracellular enzymes and proteins involved in different metabolism-related functions were found to be pH-responsive. Several cellulase- and hemicellulase-encoding genes were found among the pH-responsive genes. Especially, genes encoding hemicellulases with the similar type of activity were shown to include both genes up-regulated at low pH and genes up-regulated at high pH. However, relatively few of the cellulase- and hemicellulase-encoding genes showed direct PACI-mediated regulation, indicating the importance of other regulatory mechanisms affecting expression in different pH conditions. New information was gained on the effects of pH on the genes involved in ambient pH-signalling and on the known and candidate regulatory genes involved in regulation of cellulase and hemicellulase encoding genes. In addition, co-regulated genomic clusters responding to change of ambient pH were identified.

CONCLUSIONS

Ambient pH was shown to be an important determinant of T. reesei gene expression. The pH-responsive genes, including those affected by the regulator of ambient pH sensing, were identified, and novel information on the activity of genes encoding carbohydrate active enzymes at different pH was gained.

摘要

背景

细胞外pH是影响丝状真菌蛋白质产生的多种环境因素之一。调节机制确保细胞外酶在酶具有活性的pH条件下产生。在丝状真菌中,尤其是在曲霉菌中研究了不同环境pH下的转录调控,而在水解酶工业生产菌里氏木霉中,pH的影响主要在蛋白质水平上进行了研究。在本研究中,通过全基因组转录谱分析以及分析编码转录调节因子pac1(构巢曲霉pacC基因的直系同源物)的基因缺失的影响,研究了里氏木霉基因的pH依赖性表达。

结果

转录分析揭示了里氏木霉的pH响应基因,对这些基因的功能分类确定了受pH变化影响最大的活性。发现大量编码转运蛋白、信号相关蛋白、细胞外酶以及参与不同代谢相关功能的蛋白质的基因具有pH响应性。在pH响应基因中发现了几个编码纤维素酶和半纤维素酶的基因。特别是,编码具有相似活性类型的半纤维素酶的基因显示既包括在低pH下上调的基因,也包括在高pH下上调的基因。然而,相对较少的编码纤维素酶和半纤维素酶的基因显示出直接的PACI介导的调控,这表明其他调节机制对不同pH条件下表达的影响很重要。获得了关于pH对参与环境pH信号传导的基因以及参与纤维素酶和半纤维素酶编码基因调控的已知和候选调节基因的影响的新信息。此外,还鉴定了对环境pH变化有响应的共调控基因组簇。

结论

环境pH被证明是里氏木霉基因表达的重要决定因素。鉴定了pH响应基因,包括那些受环境pH感知调节因子影响的基因,并获得了关于不同pH下编码碳水化合物活性酶的基因活性的新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e3d/4446002/50191f923b79/12934_2015_247_Fig1_HTML.jpg

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