Biotechnology, Department of Chemistry, Lund University, 221 00 Lund, Sweden.
AAK AB, Skrivaregatan 9, 215 32 Malmö, Sweden.
Int J Mol Sci. 2022 Jun 25;23(13):7072. doi: 10.3390/ijms23137072.
One of the indispensable applications of lipases in modification of oils and fats is the possibility to tailor the fatty acid content of triacylglycerols (TAGs), to meet specific requirements from various applications in food, nutrition, and cosmetic industries. Oleic acid (C18:1) and stearic acid (C18:0) are two common long fatty acids in the side chain of triglycerides in plant fats and oils that have similar chemical composition and structures, except for an unsaturated bond between C9 and C10 in oleic acid. Two lipases from (RML) and (ROL) show activity in reactions involving oleate and stearate, and share high sequence and structural identity. In this research, the preference for one of these two similar fatty acid side chains was investigated for the two lipases and was related to the respective enzyme structure. From transesterification reactions with 1:1 (molar ratio) mixed ethyl stearate (ES) and ethyl oleate (EO), both RML and ROL showed a higher activity towards EO than ES, but RML showed around 10% higher preference for ES compared with ROL. In silico results showed that stearate has a less stable interaction with the substrate binding crevice in both RML and ROL and higher tendency to freely move out of the substrate binding region, compared with oleate whose structure is more rigid due to the existence of the double bond. However, Trp88 from RML which is an Ala at the identical position in ROL shows a significant stabilization effect in the substrate interaction in RML, especially with stearate as a ligand.
脂肪酶在油脂改性中的一个不可或缺的应用是能够调整三酰基甘油(TAG)中的脂肪酸含量,以满足食品、营养和化妆品行业中各种应用的特定要求。油酸(C18:1)和硬脂酸(C18:0)是植物脂肪和油中甘油三酯侧链中常见的两种长链脂肪酸,它们的化学组成和结构相似,只是油酸的 C9 和 C10 之间有一个不饱和键。(RML)和(ROL)中的两种脂肪酶在涉及油酸酯和硬脂酸酯的反应中具有活性,并且具有很高的序列和结构同一性。在这项研究中,研究了两种脂肪酶对这两种相似脂肪酸侧链的偏好性,并将其与各自的酶结构相关联。通过 1:1(摩尔比)混合乙酯硬脂酸(ES)和乙酯油酸(EO)的酯交换反应,RML 和 ROL 对 EO 的活性均高于 ES,但 RML 对 ES 的偏好度比 ROL 高约 10%。计算结果表明,与油酸酯相比,硬脂酸与 RML 和 ROL 中底物结合裂缝的相互作用不太稳定,并且更倾向于自由移出底物结合区域,因为双键的存在使油酸酯的结构更加刚性。然而,RML 中的色氨酸 88(在 ROL 中相同位置为丙氨酸)在 RML 中的底物相互作用中表现出显著的稳定作用,特别是硬脂酸作为配体时。