Department of Molecular Biology, Swedish University of Agricultural Sciences, Uppsala, Sweden.
FEBS J. 2013 Jan;280(1):184-98. doi: 10.1111/febs.12060. Epub 2012 Dec 7.
Methylumbelliferyl-β-cellobioside (MUF-G2) is a convenient fluorogenic substrate for certain β-glycoside hydrolases (GH). However, hydrolysis of the aglycone is poor with GH family 6 enzymes (GH6), despite strong binding. Prediction of the orientation of the aglycone of MUF-G2 in the +1 subsite of Hypocrea jecorina Cel6A by automated docking suggested umbelliferyl modifications at C4 and C6 for improved recognition. Four modified umbelliferyl-β-cellobiosides [6-chloro-4-methyl- (ClMUF); 6-chloro-4-trifluoromethyl- (ClF3MUF); 4-phenyl- (PhUF); 6-chloro-4-phenyl- (ClPhUF)] were synthesized and tested with GH6, GH7, GH9, GH5 and GH45 cellulases. Indeed the rate of aglycone release by H. jecorina Cel6A was 10-150 times higher than with MUF-G2, although it was still three orders of magnitude lower than with H. jecorina Cel7B. The 4-phenyl substitution drastically reduced the fluorescence intensity of the free aglycone, while ClMUF-G2 could be used for determination of k(cat) and K(M) for H. jecorina Cel6A and Thermobifida fusca Cel6A. Crystal structures of H. jecorina Cel6A D221A mutant soaked with the MUF-, ClMUF- and ClPhUF-β-cellobioside substrates show that the modifications turned the umbelliferyl group 'upside down', with the glycosidic bond better positioned for protonation than with MUF-G2.
甲基伞形酮基-β-纤维二糖苷(MUF-G2)是某些β-糖苷水解酶(GH)的一种方便的荧光底物。然而,尽管与 GH 家族 6 酶(GH6)具有很强的结合能力,但糖苷配基的水解能力很差。通过自动对接预测,Hypocrea jecorina Cel6A 的+1 亚位点中 MUF-G2 的糖苷配基的取向表明,对伞形酮进行 C4 和 C6 的修饰可提高识别能力。合成了四种修饰的伞形酮基-β-纤维二糖苷[6-氯-4-甲基-(ClMUF);6-氯-4-三氟甲基-(ClF3MUF);4-苯基-(PhUF);6-氯-4-苯基-(ClPhUF)],并与 GH6、GH7、GH9、GH5 和 GH45 纤维素酶进行了测试。实际上,H. jecorina Cel6A 释放糖苷配基的速率比 MUF-G2 高 10-150 倍,尽管仍比 H. jecorina Cel7B 低三个数量级。4-苯基取代大大降低了游离糖苷配基的荧光强度,而 ClMUF-G2 可用于测定 H. jecorina Cel6A 和 Thermobifida fusca Cel6A 的 k(cat)和 K(M)。H. jecorina Cel6A D221A 突变体与 MUF-、ClMUF-和 ClPhUF-β-纤维二糖苷底物的晶体结构表明,修饰将伞形酮基团“颠倒”,糖苷键更有利于质子化,而不是 MUF-G2。