Department of Agricultural Biotechnology, Seoul National University, Seoul 08826, Republic of Korea.
Department of Agricultural Biotechnology, Seoul National University, Seoul 08826, Republic of Korea; Center for Food and Bioconvergence, Seoul National University, Seoul 08826, Republic of Korea; Center for Agricultural Microorganism and Enzyme, Seoul National University, Seoul 08826, Republic of Korea; Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul 08826, Republic of Korea.
Enzyme Microb Technol. 2023 Aug;168:110254. doi: 10.1016/j.enzmictec.2023.110254. Epub 2023 May 6.
Multiple sequence alignments of three lipase isoforms from the filamentous fungus, Cordyceps militaris, have revealed that the deduced protein from their common sequence belongs to the Candida rugosa lipase-like group. To express the protein in its active form, recombinant lipase from C. militaris (rCML) was extra cellularly expressed in Pichia pastoris X-33 after removing its signal peptide. Purified rCML was a stable monomeric protein with a molecular mass of 90 kDa, and was highly N-mannosylated compared to the native protein (69 kDa). The catalytic efficiency (k/K) of rCML was greater than the native protein (1244.35 ± 50.88 and 1067.17 ± 29.07 mM·min, respectively), yet they had similar optimal pH values and temperatures (40 °C and pH 7.0-7.5), and showed preferences for Tween esters and short-chain triacylglycerols. Despite its monomeric conformation, interfacial activation was not observed for rCML, unlike the classical lipases. From the structural model of rCML, the binding pocket of rCML was predicted as a funnel-like structure consisting of a hollow space and an intramolecular tunnel, which is typical of C. rugosa lipase-like lipases. However, a blockage shortened the tunnel to 12-15 Å, which endows strict short-chain selectivity towards triacylglycerols and a perfect match for tricaproin (C6:0). The limited depth of the tunnel may enable accommodation of triacylglycerols with medium-to-long-chain fatty acids, which differentiates rCML from other C. rugosa lipase-like lipases with broad substrate specificities.
三种来自蛹虫草丝状真菌的脂肪酶同工酶的多重序列比对表明,其共同序列推导的蛋白质属于假丝酵母脂肪酶样群。为了以其活性形式表达蛋白质,在去除信号肽后,重组蛹虫草脂肪酶(rCML)在毕赤酵母 X-33 中外源表达。纯化的 rCML 是一种稳定的单体蛋白,分子量为 90 kDa,与天然蛋白(69 kDa)相比高度 N-甘露糖化。rCML 的催化效率(k/K)大于天然蛋白(分别为 1244.35 ± 50.88 和 1067.17 ± 29.07 mM·min),但它们具有相似的最适 pH 值和温度(40°C 和 pH 7.0-7.5),并且对吐温酯和短链三酰基甘油具有偏好性。尽管 rCML 呈单体构象,但与经典脂肪酶不同,没有观察到界面激活。根据 rCML 的结构模型,rCML 的结合口袋预测为一个漏斗状结构,由一个空心空间和一个分子内隧道组成,这是假丝酵母脂肪酶样脂肪酶的典型特征。然而,一个阻塞物将隧道缩短至 12-15 Å,这赋予了 rCML 对三酰基甘油的严格的短链选择性和对三辛酸甘油酯的完美匹配(C6:0)。隧道的有限深度可能允许中长链脂肪酸的三酰基甘油容纳,这使 rCML 与具有广泛底物特异性的其他假丝酵母脂肪酶样脂肪酶区分开来。