Mhlongo Sizwe I, den Haan Riaan, Viljoen-Bloom Marinda, van Zyl Willem H
Department of Microbiology, University of Stellenbosch, Stellenbosch 7600, South Africa.
Department of Biotechnology, University of the Western Cape, Bellville, 7530, South Africa.
Enzyme Microb Technol. 2015 Dec;81:16-22. doi: 10.1016/j.enzmictec.2015.07.005. Epub 2015 Jul 29.
In this study, we monitored the inhibition and deactivation effects of various compounds associated with lignocellulosic hydrolysates on individual and combinations of cellulases. Tannic acid representing polymeric lignin residues strongly inhibited cellobiohydrolase 1 (CBH1) and β-glucosidase 1 (BGL1), but had a moderate inhibitory effect on endoglucanase 2 (EG2). Individual monomeric lignin residues had little or no inhibitory effect on hydrolytic enzymes. However, coniferyl aldehyde and syringaldehyde substantially decreased the activity of CBH1 and deactivated BGL1. Acetic and formic acids also showed strong inhibition of BGL1 but not CBH1 and EG2, whereas tannic, acetic and formic acid strongly inhibited a combination of CBH1 and EG2 during Avicel hydrolysis. Diminishing enzymatic hydrolysis is largely a function of inhibitor concentration and the enzyme-inhibitor relationship, rather than contact time during the hydrolysis process (i.e. deactivation). This suggests that decreased rates of hydrolysis during the enzymatic depolymerisation of lignocellulosic hydrolysates may be imparted by other factors related to substrate crystallinity and accessibility.
在本研究中,我们监测了与木质纤维素水解产物相关的各种化合物对纤维素酶个体及组合的抑制和失活作用。代表聚合木质素残基的单宁酸强烈抑制纤维二糖水解酶1(CBH1)和β-葡萄糖苷酶1(BGL1),但对内切葡聚糖酶2(EG2)具有中等抑制作用。单个单体木质素残基对水解酶的抑制作用很小或没有抑制作用。然而,松柏醛和丁香醛显著降低了CBH1的活性并使BGL1失活。乙酸和甲酸也对BGL1表现出强烈抑制作用,但对CBH1和EG2没有抑制作用,而单宁酸、乙酸和甲酸在微晶纤维素水解过程中强烈抑制CBH1和EG2的组合。酶促水解的减少很大程度上是抑制剂浓度和酶-抑制剂关系的函数,而不是水解过程中的接触时间(即失活)。这表明在木质纤维素水解产物的酶促解聚过程中水解速率的降低可能是由与底物结晶度和可及性相关的其他因素导致的。