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磷酸二氢酶类似蛋白 PhLP1 影响里氏木霉糖苷水解酶的调控和光反应。

The phosducin-like protein PhLP1 impacts regulation of glycoside hydrolases and light response in Trichoderma reesei.

机构信息

Research Area of Gene Technology and Applied Biochemistry, Institute for Chemical Engineering, Vienna University of Technology, Gumpendorferstrasse 1a, A-1060 Wien, Austria.

出版信息

BMC Genomics. 2011 Dec 19;12:613. doi: 10.1186/1471-2164-12-613.

Abstract

BACKGROUND

In the biotechnological workhorse Trichoderma reesei (Hypocrea jecorina) transcription of cellulase genes as well as efficiency of the secreted cellulase mixture are modulated by light. Components of the heterotrimeric G-protein pathway interact with light-dependent signals, rendering this pathway a key regulator of cellulase gene expression.

RESULTS

As regulators of heterotrimeric G-protein signaling, class I phosducin-like proteins, are assumed to act as co-chaperones for G-protein beta-gamma folding and exert their function in response to light in higher eukaryotes. Our results revealed light responsive transcription of the T. reesei class I phosducin-like protein gene phlp1 and indicate a light dependent function of PhLP1 also in fungi. We showed the functions of PhLP1, GNB1 and GNG1 in the same pathway, with one major output being the regulation of transcription of glycoside hydrolase genes including cellulase genes in T. reesei. We found no direct correlation between the growth rate and global regulation of glycoside hydrolases, which suggests that regulation of growth does not occur only at the level of substrate degradation efficiency.Additionally, PhLP1, GNB1 and GNG1 are all important for proper regulation of light responsiveness during long term exposure. In their absence, the amount of light regulated genes increased from 2.7% in wild type to 14% in Δphlp1. Besides from the regulation of degradative enzymes, PhLP1 was also found to impact on the transcription of genes involved in sexual development, which was in accordance with decreased efficiency of fruiting body formation in Δphlp1. The lack of GNB1 drastically diminished ascospore discharge in T. reesei.

CONCLUSIONS

The heterotrimeric G-protein pathway is crucial for the interconnection of nutrient signaling and light response of T. reesei, with the class I phosducin-like protein PhLP1, GNB1 and GNG1 acting as important nodes, which influence light responsiveness, glycoside hydrolase gene transcription and sexual development.

摘要

背景

在生物技术的重要工具菌里氏木霉(Hypocrea jecorina)中,纤维素酶基因的转录以及分泌的纤维素酶混合物的效率受到光照的调节。异三聚体 G 蛋白途径的组成部分与光依赖性信号相互作用,使该途径成为纤维素酶基因表达的关键调节剂。

结果

作为异三聚体 G 蛋白信号的调节剂,I 类磷酸双联体样蛋白被认为是 G 蛋白 β-γ折叠的共伴侣,并在高等真核生物中对光起作用。我们的结果显示里氏木霉 I 类磷酸双联体样蛋白基因 phlp1 的光应答转录,并表明 PhLP1 在真菌中也具有光依赖性功能。我们证明了 PhLP1、GNB1 和 GNG1 在同一途径中的功能,主要输出之一是调节糖苷水解酶基因(包括里氏木霉中的纤维素酶基因)的转录。我们没有发现生长速率和糖苷水解酶的全局调节之间有直接的相关性,这表明调节生长不仅发生在底物降解效率的水平上。此外,PhLP1、GNB1 和 GNG1 对于长期暴露时的光应答调节都很重要。在它们缺失的情况下,受光调节的基因数量从野生型的 2.7%增加到Δphlp1 的 14%。除了对降解酶的调节外,PhLP1 还被发现影响参与有性发育的基因的转录,这与Δphlp1 中生殖体形成效率降低是一致的。GNB1 的缺失极大地减少了里氏木霉的孢子释放。

结论

异三聚体 G 蛋白途径对于里氏木霉的营养信号和光反应的相互连接至关重要,I 类磷酸双联体样蛋白 PhLP1、GNB1 和 GNG1 作为重要的节点,影响光应答、糖苷水解酶基因转录和有性发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6b4/3267782/865d0df8bf71/1471-2164-12-613-1.jpg

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