Suzuki Harumasa, Suzuki Ken-ichi, Inoue Akira, Ojima Takao
Laboratory of Marine Biotechnology and Microbiology, Graduate School of Fisheries Sciences, Hokkaido University, Hakodate, Japan.
Carbohydr Res. 2006 Aug 14;341(11):1809-19. doi: 10.1016/j.carres.2006.04.032. Epub 2006 May 15.
We previously reported the isolation and cDNA cloning of an endolytic alginate lyase, HdAly, from abalone Haliotis discus hannai [Carbohydr. Res.2003, 338, 2841-2852]. Although HdAly preferentially degraded mannuronate-rich substrates, it was incapable of degrading unsaturated oligomannuronates smaller than tetrasaccharide. In the present study, we used conventional chromatographic techniques to isolate a novel unsaturated-trisaccharide-degrading enzyme, named HdAlex, from the digestive fluid of the abalone. The HdAlex showed a molecular weight of 32,000 on SDS-PAGE and could degrade not only unsaturated trisaccharide but also alginate and mannuronate-rich polymers at an optimal pH and temperature of 7.1 and 42 degrees C, respectively. Upon digestion of alginate polymer, HdAlex decreased the viscosity of the alginate at a slower rate than did HdAly, producing only unsaturated disaccharide without any intermediate oligosaccharides. These results indicate that HdAlex degrades the alginate polymer in an exolytic manner. Because HdAlex split saturated trisaccharide producing unsaturated disaccharide, we considered that this enzyme cleaved the alginate at the second glycoside linkage from the reducing terminus. The primary structure of HdAlex was deduced with cDNAs amplified from an abalone hepatopancreas cDNA library by the polymerase chain reaction. The translational region of 822 bp in the total 887-bp sequence of HdAlex cDNA encoded an amino-acid sequence of 273 residues. The N-terminal sequence of 16 residues, excluding the initiation methionine, was regarded as the signal peptide of this enzyme. The amino-acid sequence of the remaining 256 residues shared 62-67% identities with those of the polysaccharide lyase family-14 (PL14) enzymes such as HdAly and turban-shell alginate lyase SP2. To our knowledge, HdAlex is the first exolytic oligoalginate lyase belonging to PL14.
我们之前报道过从皱纹盘鲍(Haliotis discus hannai)中分离出一种内切型海藻酸裂解酶HdAly并进行了其cDNA克隆[《碳水化合物研究》,2003年,第338卷,第2841 - 2852页]。尽管HdAly优先降解富含甘露糖醛酸的底物,但它无法降解小于四糖的不饱和低聚甘露糖醛酸。在本研究中,我们使用传统色谱技术从鲍鱼的消化液中分离出一种新型的不饱和三糖降解酶,命名为HdAlex。HdAlex在SDS - PAGE上显示分子量为32,000,并且不仅能降解不饱和三糖,还能在最佳pH值7.1和温度42℃下分别降解海藻酸盐和富含甘露糖醛酸的聚合物。在消化海藻酸盐聚合物时,HdAlex使海藻酸盐粘度降低的速度比HdAly慢,仅产生不饱和二糖,没有任何中间寡糖。这些结果表明HdAlex以外切方式降解海藻酸盐聚合物。由于HdAlex裂解饱和三糖产生不饱和二糖,我们认为该酶从还原端起在第二个糖苷键处切割海藻酸盐。通过聚合酶链反应从鲍鱼肝胰腺cDNA文库中扩增出cDNA,推导了HdAlex的一级结构。HdAlex cDNA全长887 bp序列中的822 bp翻译区域编码一个273个残基的氨基酸序列。除起始甲硫氨酸外,16个残基的N端序列被视为该酶的信号肽。其余256个残基的氨基酸序列与多糖裂解酶家族14(PL14)的酶如HdAly和头巾螺海藻酸裂解酶SP2的氨基酸序列具有62 - 67%的同源性。据我们所知,HdAlex是第一个属于PL14的外切型低聚海藻酸裂解酶。