Mohamed Rauda A, Salleh Abu Bakar, Leow Thean Chor, Yahaya Normi M, Abdul Rahman Mohd Basyaruddin
Laboratory of Enzyme Technology, Institute of Bioscience, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.
Department of Biochemistry, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.
Protein Eng Des Sel. 2018 Jun 1;31(6):221-229. doi: 10.1093/protein/gzy023.
A broad substrate specificity enzyme that can act on a wide range of substrates would be an asset in industrial application. T1 lipase known to have broad substrate specificity in its native form apparently exhibits the same active sites as polyhydroxylalkanoate (PHA) depolymerase. PhaZ6Pl is one of the PHA depolymerases that can degrade semicrystalline P(3HB). The objective of this study is to enable T1 lipase to degrade semicrystalline P(3HB) similar to PhaZ6Pl while maintaining its native function. A structural study on PhaZ6Pl contains no lid in its structure and therefore T1 lipase was designed with removal of its lid region. BSLA lipase was chosen as the reference protein for T1 lipase modification since it contains no lid. Initially, structures of both enzymes were compared via protein-protein superimposition in 3D-space and the location of the lid region of T1 lipase was highlighted. A total of three variants of T1 lipase without lid were successfully designed by referring to BSLA lipase (a lipase without lid). The ability of T1 lipase without lid variants in degrading P(3HB) was investigated quantitatively. All the variants showed activity towards the substrate which confirmed that T1 lipase without lid is indeed able to degrade P(3HB). In addition, D2 was recorded to have the highest activity amongst other variants. Results obtained in this study highlighted the fact that native T1 lipase is a versatile hydrolase enzyme which does not only record triglyceride degradation but also P(3HB) by simply removing the lid region.
一种能够作用于多种底物的具有广泛底物特异性的酶在工业应用中将是一项资产。已知天然形式的T1脂肪酶具有广泛的底物特异性,显然与聚羟基链烷酸酯(PHA)解聚酶具有相同的活性位点。PhaZ6Pl是一种能够降解半结晶P(3HB)的PHA解聚酶。本研究的目的是使T1脂肪酶能够像PhaZ6Pl一样降解半结晶P(3HB),同时保持其天然功能。对PhaZ6Pl的结构研究表明其结构中没有盖子,因此设计去除T1脂肪酶的盖子区域。选择BSLA脂肪酶作为T1脂肪酶修饰的参考蛋白,因为它没有盖子。最初,通过三维空间中的蛋白质-蛋白质叠加比较了两种酶的结构,并突出显示了T1脂肪酶盖子区域的位置。参照BSLA脂肪酶(一种没有盖子的脂肪酶)成功设计了总共三种没有盖子的T1脂肪酶变体。定量研究了没有盖子的T1脂肪酶变体降解P(3HB)的能力。所有变体都对底物表现出活性,这证实了没有盖子的T1脂肪酶确实能够降解P(3HB)。此外,记录到D2在其他变体中具有最高活性。本研究获得的结果突出了这样一个事实,即天然T1脂肪酶是一种多功能水解酶,它不仅能够降解甘油三酯,而且通过简单地去除盖子区域还能够降解P(3HB)。