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里氏木霉纤维素酶在使用条件下的稳定性

Stability of the cellulase of Trichoderma reesei under use conditions.

作者信息

Reese E T, Mandels M

出版信息

Biotechnol Bioeng. 1980 Feb;22(2):323-35. doi: 10.1002/bit.260220207.

Abstract

Enzyme stability studies have been reinvestigated under the conditions used for cellulose hydrolysis (pH 4.8, 50 degrees C, 24 hr). The cellobiohydrolase (CBH) component as measured on Avicel is less stable than other enzymes of the cellulase complex, and is 60% inactivated by merthiolate (and other Hg compounds) under the above conditions. Endo-beta-1,4-glucanase is much more stable, and more resistant to merthiolate and other compounds. Under unshaken conditions the Avicelase of the Rutgers strain C 30 shows greater stability to heat than that of other available strains. Biocides must be selected not only for their ability to prevent contamination, but also for their compatibility with cellulases. Tetracycline and chlortetracycline are inexpensive, effective in very low concentrations, have no harmful effect on the enzymes, and are compatible with the yeasts that subsequently grow on the sugar solutions to produce alcohol. Attempts have been made to stabilize the enzymes by chemical modification in such a way as to maintain their solubility. Glutaraldehyde treatment greatly increased the enzyme size, lowered the pI values, and gave a slight shift in the pH activity curve. There was, unfortunately, no increase in enzyme stability, and the activity of enzymes on solid celluloses was adversely affected. Shaking greatly reduced the hydrolysis of Avicel by Trichoderma reesei C 30 enzyme. The adverse effect was accompanied by a decrease in recoverable enzyme and protein.

摘要

已在纤维素水解所用条件(pH 4.8、50摄氏度、24小时)下重新研究了酶稳定性。以微晶纤维素测定的纤维二糖水解酶(CBH)组分比纤维素酶复合物的其他酶更不稳定,在上述条件下被硫柳汞(及其他汞化合物)灭活60%。内切-β-1,4-葡聚糖酶更稳定,对硫柳汞和其他化合物更具抗性。在未振荡条件下,罗格斯菌株C 30的微晶纤维素酶比其他可用菌株的该酶对热更稳定。选择杀生物剂不仅要考虑其防止污染的能力,还要考虑其与纤维素酶的相容性。四环素和金霉素价格低廉,在极低浓度下有效,对酶无有害影响,且与随后在糖溶液上生长以生产酒精的酵母相容。已尝试通过化学修饰使酶稳定,以保持其溶解性。戊二醛处理极大地增加了酶的大小,降低了pI值,并使pH活性曲线略有偏移。不幸的是,酶稳定性没有提高,且酶对固体纤维素的活性受到不利影响。振荡极大地降低了里氏木霉C 30酶对微晶纤维素的水解。这种不利影响伴随着可回收酶和蛋白质的减少。

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