Schiff William H, Oprian Daniel D
Department of Biochemistry, Brandeis University, Waltham, Massachusetts 02454, United States.
Biochemistry. 2023 Aug 15;62(16):2472-2479. doi: 10.1021/acs.biochem.3c00217. Epub 2023 Aug 2.
The monoterpene limonene is produced by the enzyme limonene synthase in one of the simplest terpene cyclization reactions. The enzyme can use linalyl diphosphate (LPP) and neryl diphosphate (NPP) as substrates in addition to the naturally occurring substrate geranyl diphosphate (GPP), but the relationship among the three alternative substrates is not well understood. We explored the (+)-limonene synthase ((+)-LS) reaction using site-directed mutagenesis with the three different substrates (GPP, NPP, and LPP) to tease out details of the mechanism. In total, 23 amino acid positions in the active site of (+)-LS were targeted for mutation. In all cases, substitution with Ala resulted in a significant loss of enzyme activity using GPP or NPP as the substrate, but the mutations fell into two groups depending on the effect of using LPP as a substrate: group 1 mutations resulted in the loss of activity with all three substrates (GPP, NPP, and LPP); group 2 mutations resulted in loss of activity with GPP and NPP, but retained near-WT activity with LPP as a substrate. Importantly, mutations resulting in loss of activity with LPP but retention of activity with GPP and NPP were never observed. These data, in combination with the substrate order of reactivity for the WT enzyme (LPP > NPP > GPP), are consistent with a role for LPP as an intermediate in the (+)-LS reaction using either GPP or NPP as a substrate.
单萜柠檬烯是由柠檬烯合酶在最简单的萜烯环化反应之一中产生的。除了天然存在的底物香叶基二磷酸(GPP)外,该酶还可以使用芳樟基二磷酸(LPP)和橙花基二磷酸(NPP)作为底物,但这三种替代底物之间的关系尚未完全了解。我们使用定点诱变技术,以三种不同的底物(GPP、NPP和LPP)来探究(+)-柠檬烯合酶((+)-LS)的反应,以梳理出反应机制的细节。总共对(+)-LS活性位点中的23个氨基酸位置进行了突变。在所有情况下,用丙氨酸替代都会导致以GPP或NPP作为底物时酶活性显著丧失,但根据使用LPP作为底物的效果,这些突变可分为两组:第1组突变导致对所有三种底物(GPP、NPP和LPP)的活性丧失;第2组突变导致对GPP和NPP的活性丧失,但以LPP作为底物时保留了接近野生型的活性。重要的是,从未观察到导致对LPP活性丧失但对GPP和NPP活性保留的突变。这些数据,结合野生型酶的底物反应顺序(LPP > NPP > GPP),与LPP作为以GPP或NPP作为底物的(+)-LS反应中的中间体的作用一致。