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甲虫(云斑天牛)纤维素酶Ag-EGase II的N-糖基化对于酶活性是必需的。

N-linked glycosylation of a beetle (Apriona germari) cellulase Ag-EGase II is necessary for enzymatic activity.

作者信息

Wei Ya Dong, Lee Kwang Sik, Gui Zhong Zheng, Yoon Hyung Joo, Kim Iksoo, Je Yeon Ho, Lee Sang Mong, Zhang Guo Zheng, Guo Xijie, Sohn Hung Dae, Jin Byung Rae

机构信息

Department of Applied Biotechnology, College of Natural Resources and Life Science, Dong-A University, Busan 604-714, Republic of Korea.

出版信息

Insect Biochem Mol Biol. 2006 Jun;36(6):435-41. doi: 10.1016/j.ibmb.2006.03.007. Epub 2006 Mar 30.

Abstract

We previously reported that the beta-1,4-endoglucanase (EGase) belonging to glycoside hydrolase family (GHF) 45 of the mulberry longicorn beetle, Apriona germari (Ag-EGase II), has three potential N-linked glycosylation sites; these sites are located at amino acid residues 56-59 (NKSG), 99-102 (NSTF), and 237-239 (NYSstop). In the present study, we analyze the functional role of these potential N-linked glycosylation sites. Tunicamycin treatment completely abolished the enzymatic activity of Ag-EGase II. To further elucidate the functional role of the N-linked glycosylation sites in Ag-EGase II, we have assayed the cellulase enzyme activity in Ser58Gln, Thr101Gln, or Ser239Gln mutants. Lack of N-linked glycosylation site at residues 99-102 (NSTF), the site of which is conserved in known beetle GHF 45 cellulases, showed loss of enzyme activity and reduced the molecular mass of the enzyme. In contrast, mutations in Ser58Gln or Ser239Gln affected neither the activity nor the apparent molecular mass of the enzyme, indicating that these sites did not lead to N-linked glycosylation. The present study demonstrates that N-linked glycosylation at residues 99-102 (NSTF), while not essential for secretion, is required for Ag-EGase II enzyme activity.

摘要

我们之前报道过,桑天牛(Apriona germari)的β-1,4-内切葡聚糖酶(EGase)属于糖苷水解酶家族(GHF)45(Ag-EGase II),有三个潜在的N-糖基化位点;这些位点位于氨基酸残基56 - 59(NKSG)、99 - 102(NSTF)和237 - 239(NYSstop)处。在本研究中,我们分析了这些潜在的N-糖基化位点的功能作用。衣霉素处理完全消除了Ag-EGase II的酶活性。为了进一步阐明N-糖基化位点在Ag-EGase II中的功能作用,我们检测了Ser58Gln、Thr101Gln或Ser239Gln突变体中的纤维素酶活性。在残基99 - 102(NSTF)处缺乏N-糖基化位点(该位点在已知的甲虫GHF 45纤维素酶中是保守的),导致酶活性丧失并降低了酶的分子量。相比之下,Ser58Gln或Ser239Gln突变既不影响酶的活性也不影响其表观分子量,这表明这些位点不会导致N-糖基化。本研究表明,残基99 - 102(NSTF)处的N-糖基化虽然对于分泌不是必需的,但对于Ag-EGase II的酶活性是必需的。

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