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Trichoderma reesei Histone Acetyltransferase Gcn5 Regulates Fungal Growth, Conidiation, and Cellulase Gene Expression

机译:里氏木霉组蛋白乙酰转移酶Gcn5调节真菌的生长,分生和纤维素酶基因表达。

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Gcn5 is a well-established histone acetyltransferase involved in chromatin modification by catalyzing the acetylation of specific lysine residues within the N-terminal tails of the core histones. To assess the role of chromatin remodeling in the transcriptional response of cellulolytic Trichoderma reesei to the changes of environmental conditions, we identified the T. reesei ortholog of Saccharomyces cerevisiae Gcn5 by sequence alignment and functional analysis. Heterologous expression of TrGcn5 in S. cerevisiae gcn5 Delta strain restored the growth defect under nutrient limitation as well as stresses. In contrast, mutant TrGcn5 with site-directed changes of residues critical for Gcn5 histone acetyltransferase activity could not complement the growth defect. The T. reesei gcn5 Delta mutant strain displayed a strongly decreased growth rate and dramatic morphological changes including misshapen hyphal cells and abolished conidiation. Moreover, the induced expression of cellulase genes was severely impaired in the gcn5 Delta T. reesei with acetylation of K9 and K14 of histone H3 in the cellulase gene promoter dramatically affected in the absence of TrGcn5. The results indicate that TrGcn5 plays a critical role in filamentous growth, morphogenesis, and transcriptional activation of specific genes including cellulase encoding genes.
机译:Gcn5是一种成熟的组蛋白乙酰转移酶,可通过催化核心组蛋白N末端尾巴中特定赖氨酸残基的乙酰化而参与染色质修饰。为了评估染色质重塑在纤维素分解里氏木霉对环境条件变化的转录反应中的作用,我们通过序列比对和功能分析鉴定了酿酒酵母Gcn5的里氏木霉直系同源物。 TrGcn5在酿酒酵母gcn5 Delta菌株中的异源表达恢复了在营养限制和胁迫下的生长缺陷。相反,突变的TrGcn5具有对Gcn5组蛋白乙酰转移酶活性至关重要的残基的定点变化,不能弥补生长缺陷。里氏木霉gcn5 Delta突变株显示出生长速率大大降低,形态学变化剧烈,包括变形的菌丝细胞和废除的分生孢子。此外,在缺少TrGcn5的情况下,纤维素酶基因启动子中的K9和组蛋白H3的K9和K14发生乙酰化,在gcn5里氏木霉中严重破坏了纤维素酶基因的诱导表达。结果表明,TrGcn5在丝状生长,形态发生和特定基因(包括纤维素酶编码基因)的转录激活中起关键作用。

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