Li Yihai, Arakawa Gaku, Tokuda Gaku, Watanabe Hirofumi, Arioka Manabu
Department of Biotechnology, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
National Institute of Agrobiological Sciences, 1-2 Owashi, Tsukuba, Ibaraki 305-8634, Japan; Tropical Biosphere Research Center, COMB, University of the Ryukyus, Nishihara, Okinawa 903-0213, Japan.
Enzyme Microb Technol. 2017 Feb;97:104-113. doi: 10.1016/j.enzmictec.2016.11.004. Epub 2016 Nov 15.
A β-glucosidase (BG), PaBG1b, from the xylophagous cockroach Panesthia angustipennis spadica was heterologously expressed in the methylotrophic yeast Pichia pastoris, purified, and biochemically characterized. Post-translational modification and N-terminal sequencing analysis demonstrated that the expression product was comprised of two polypeptides with different N-terminal sequences, presumably due to the presence of lysine-arginine (KR) sequence in the putative mature region. Substrate specificity analysis showed that PaBG1b hydrolyzed a broad range of substrates including cellohexaose, with the preference for aryl β-d-fucosyl linkage and laminaribiose. Although the glucose tolerance of PaBG1b was moderate (K=200.3±1.1mM), PaBG1b demonstrated high specific activity and catalytic efficiency towards cellobiose with V and k/K values of 436.7±6.3U/mg and 109.8mMs, respectively. In addition, PaBG1b was not inhibited by cellobiose up to the highest concentration tested (100mM). Collectively, our work demonstrates that PaBG1b is a potentially valuable BG for commercial bioethanol production from cellulose.
从食木蟑螂窄脊光背蜚蠊(Panesthia angustipennis spadica)中提取的一种β-葡萄糖苷酶(BG),即PaBG1b,在甲基营养型酵母毕赤酵母中进行了异源表达、纯化及生化特性鉴定。翻译后修饰和N端测序分析表明,表达产物由两个具有不同N端序列的多肽组成,推测这是由于假定成熟区域中存在赖氨酸-精氨酸(KR)序列所致。底物特异性分析表明,PaBG1b能水解多种底物,包括纤维六糖,对芳基β-D-岩藻糖基键和昆布二糖具有偏好性。虽然PaBG1b的葡萄糖耐受性中等(K = 200.3±1.1mM),但它对纤维二糖表现出高比活性和催化效率,其V和k/K值分别为436.7±6.3U/mg和109.8mMs。此外,在测试的最高浓度(100mM)下,纤维二糖对PaBG1b没有抑制作用。总的来说,我们的工作表明,PaBG1b对于从纤维素商业化生产生物乙醇而言是一种潜在的有价值的BG。