Graduate School of Life and Environmental Sciences, Osaka Prefecture University, 1-1 Gakuen-cho, Sakai, Osaka, 599-8531, Japan.
Curr Genet. 2022 Feb;68(1):143-152. doi: 10.1007/s00294-021-01207-x. Epub 2021 Aug 28.
Aspergillus aculeatus produces cellulolytic enzymes in the presence of their substrates. We screened a library of 12,000 A. aculeatus T-DNA-inserted mutants to identify a regulatory factor involved in the expression of their enzyme genes in response to inducers. We found one mutant that reduced the expression of FIII-avicelase (chbI) in response to cellulose. T-DNA was inserted into a putative protein kinase gene similar to AN10082 in A. nidulans, serine-arginine protein kinase F, SrpkF. Fold increases in srpkF gene expression in response to various carbon sources were 2.3 (D-xylose), 44 (Avicel), 59 (Bacto Tryptone), and 98 (no carbon) compared with D-glucose. Deletion of srpkF in A. aculeatus resulted in a significant reduction in cellulose-responsive expression of chbI, hydrocellulase (cel7b), and FIb-xylanase (xynIb) genes at an early induction phase. Further, the srpkF-overexpressing strain showed upregulation of the srpkF gene from four- to nine-fold higher than in the control strain. srpkF overexpression upregulated cbhI and cel7b in response to cellobiose and the FI-carboxymethyl cellulase gene (cmc1) and xynIb in response to D-xylose. However, the srpkF deletion did not affect the expression of xynIb in response to D-xylose due to the less expression of srpkF under the D-xylose condition. Our data demonstrate that SrpkF is primarily involved in cellulose-responsive expression, though it has a potential to stimulate gene expression in response to both cellobiose and D-xylose in A. aculeatus.
棘孢木霉在其底物存在的情况下产生纤维素酶。我们筛选了一个包含 12000 个棘孢木霉 T-DNA 插入突变体的文库,以鉴定参与其酶基因表达的调节因子,这些基因的表达对诱导物有反应。我们发现一个突变体,它降低了纤维素响应的 FIII-纤维二糖酶(chbI)的表达。T-DNA 插入到一个与构巢曲霉中的 AN10082 相似的假定蛋白激酶基因中,丝氨酸-精氨酸蛋白激酶 F,SrpkF。与 D-葡萄糖相比,SrpkF 基因对各种碳源的表达倍数增加分别为 2.3(D-木糖)、44(Avicel)、59(Bacto Tryptone)和 98(无碳)。棘孢木霉中 srpkF 的缺失导致 chbI、纤维水解酶(cel7b)和 FIb-木聚糖酶(xynIb)基因在早期诱导阶段对纤维素的响应表达显著降低。此外,srpkF 过表达菌株的 srpkF 基因表达上调了四倍至九倍,高于对照菌株。srpkF 过表达上调了 cbhI 和 cel7b 对纤维二糖的反应,以及 FI-羧甲基纤维素酶基因(cmc1)和 xynIb 对 D-木糖的反应。然而,srpkF 缺失对 D-木糖响应的 xynIb 表达没有影响,因为在 D-木糖条件下 srpkF 的表达较少。我们的数据表明,SrpkF 主要参与纤维素响应的表达,尽管它有潜力刺激棘孢木霉中对纤维二糖和 D-木糖的基因表达。