State Key Laboratory of Microbial Technology, Shandong University, 27 Shandanan Rd, Jinan, 250100, People's Republic of China,
Appl Biochem Biotechnol. 2013 Oct;171(4):832-46. doi: 10.1007/s12010-013-0402-0. Epub 2013 Jul 31.
Aspergillus niger is an effective secretor of glycoside hydrolases that facilitate the saprophytic lifestyle of the fungus by degrading plant cell wall polysaccharides. In the present study, a series of dynamic zymography assays were applied to quantify the secreted glycoside hydrolases of A. niger cultured in media containing different carbon sources. Differences in the diversity and concentrations of polysaccharide hydrolysates dynamically regulated the secretion of glycoside hydrolases. The secretion of β-1,4-endoglucanase isozymes was observed to lag at least 24 h behind, rather than coincide with, the secretion of xylanase isozymes. Low concentrations of xylose could induce many endoxylanases (such as Xyn1/XynA, Xyn2, and Xyn3/XynB). High concentrations of xylose could sustain the induction of Xyn2 and Xyn3/XynB but repress Xyn1/XynA (GH10 endoxylanase), which has a broad substrate specificity, and also triggers the low-level secretion of Egl3/EglA, which also has a broad substrate specificity. Mixed polysaccharide hydrolysates sustained the induction of Egl1, whereas the other β-1,4-endoglucanases were sustainably induced by the specific polysaccharide hydrolysates released during the hydrolysis process (such as Egl2 and Egl4). These results indicate that the secretion of glycoside hydrolases may be specifically regulated by the production of polysaccharide hydrolysates released during the process of biomass degradation.
黑曲霉是糖苷水解酶的有效分泌者,通过降解植物细胞壁多糖来促进真菌的腐生生活方式。在本研究中,应用了一系列动态酶谱分析来定量测定在含有不同碳源的培养基中培养的黑曲霉分泌的糖苷水解酶。多糖水解产物的多样性和浓度的差异动态调节糖苷水解酶的分泌。观察到β-1,4-内切葡聚糖酶同工酶的分泌至少滞后 24 小时,而不是与木聚糖酶同工酶的分泌同时发生。低浓度的木糖可以诱导许多内切木聚糖酶(如 Xyn1/XynA、Xyn2 和 Xyn3/XynB)。高浓度的木糖可以维持 Xyn2 和 Xyn3/XynB 的诱导,但抑制 Xyn1/XynA(GH10 内切木聚糖酶),它具有广泛的底物特异性,并触发具有广泛底物特异性的 Egl3/EglA 的低水平分泌。混合多糖水解产物维持了 Egl1 的诱导,而其他β-1,4-内切葡聚糖酶则被水解过程中释放的特定多糖水解产物(如 Egl2 和 Egl4)持续诱导。这些结果表明,糖苷水解酶的分泌可能受到生物量降解过程中释放的多糖水解产物的特异性调节。