Wei Ya Dong, Lee Seong Jin, Lee Kwang Sik, Gui Zhong Zheng, Yoon Hyung Joo, Kim Iksoo, Je Yeon Ho, Guo Xijie, Sohn Hung Dae, Jin Byung Rae
Department of Applied Biotechnology, College of Natural Resources and Life Science, Dong-A University, Busan 604-714, Republic of Korea.
Biochem Biophys Res Commun. 2005 Apr 1;329(1):331-6. doi: 10.1016/j.bbrc.2005.01.131.
We previously reported that the beta-1,4-endoglucanase (EGase) belonging to glycoside hydrolase family 45 cloned from the mulberry longicorn beetle, Apriona germari (Ag-EGase I), is composed of 237 amino acid residues and has a potential N-glycosylation site at 97-100 amino acid residues (NSTF). We here describe the N-glycosylation and its role for enzymatic activity of the Ag-EGase I. The N-glycosylation of Ag-EGase I was revealed by the treatment of tunicamycin to the recombinant virus-infected insect Sf9 cells and by endoglycosidase F to the purified recombinant Ag-EGase I, demonstrating that the carbohydrate moieties are not necessary for secretion but essential for Ag-EGase I enzyme activity. To further elucidate the functional role of the N-glycosylation in Ag-EGase I, we have assayed the cellulase enzyme activity in Thr99Gln mutant. Lack of N-glycosylation in Ag-EGase I showed no substantial enzyme activity. This result demonstrates that N-glycosylation at site 97-100 amino acid residues (NSTF) is essential for enzyme activity.
我们之前报道过,从桑天牛(Apriona germari)克隆得到的属于糖苷水解酶家族45的β-1,4-内切葡聚糖酶(EGase)(Ag-EGase I)由237个氨基酸残基组成,并且在第97 - 100个氨基酸残基处(NSTF)有一个潜在的N-糖基化位点。我们在此描述Ag-EGase I的N-糖基化及其对酶活性的作用。通过用衣霉素处理重组病毒感染的昆虫Sf9细胞以及用内切糖苷酶F处理纯化的重组Ag-EGase I,揭示了Ag-EGase I的N-糖基化,这表明碳水化合物部分对于分泌不是必需的,但对于Ag-EGase I的酶活性是必不可少的。为了进一步阐明Ag-EGase I中N-糖基化的功能作用,我们测定了Thr99Gln突变体中的纤维素酶活性。Ag-EGase I中缺乏N-糖基化显示没有显著的酶活性。该结果表明在第97 - 100个氨基酸残基处(NSTF)的N-糖基化对于酶活性是必不可少的。