Department of Chemistry, Wesleyan University, Middletown, CT 06459, USA.
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894, USA.
Arch Biochem Biophys. 2015 Feb 1;567:35-45. doi: 10.1016/j.abb.2014.12.019. Epub 2015 Jan 3.
The protocatechuate 4,5-dioxygenase (LigAB) from Sphingobium sp. strain SYK-6 is the defining member of the Type II extradiol dioxygenase superfamily (a.k.a. PCA Dioxygenase Superfamily or PCADSF) and plays a key aromatic ring-opening role in the metabolism of several lignin derived aromatic compounds. In our search for alternate substrates and inhibitors of LigAB, we discovered allosteric rate enhancement in the presence of non-substrate protocatechuate-like aldehydes such as vanillin. LigAB has the broadest substrate utilization profile of all protocatechuate (PCA) 4,5-dioxygenase described in the literature, however, the rate enhancement is only observed with PCA, with vanillin increasing kcat for LigAB by 36%. Computational docking has identified a potential site of allosteric binding near the entrance to the active site. Examination of a multiple sequence alignment reveals that many of the residues contributing to this newly identified allosteric pocket are highly conserved within the LigB family of the PCADSF. Point mutants of Phe103α and Ala18β, two residues located in the putative allosteric pocket, display altered rate enhancement as compared to LigAB-WT, providing support for the computationally identified allosteric binding site. Further investigation of this binding site may provide insight into the mechanism of this never before observed allosteric activation in extradiol dioxygenases.
来自鞘氨醇单胞菌菌株 SYK-6 的原儿茶酸 4,5-双加氧酶(LigAB)是 II 型外二醇加氧酶超家族(也称为 PCA 加氧酶超家族或 PCADSF)的定义成员,在几种木质素衍生的芳香族化合物的代谢中发挥关键的芳香环开裂作用。在寻找 LigAB 的替代底物和抑制剂的过程中,我们发现非底物原儿茶酸样醛(如香草醛)的存在会增强变构的反应速率。LigAB 具有文献中描述的所有原儿茶酸(PCA)4,5-加氧酶中最广泛的底物利用谱,然而,仅在 PCA 存在的情况下才观察到速率增强,香草醛使 LigAB 的 kcat 增加了 36%。计算对接确定了活性位点入口附近潜在的变构结合位点。对多序列比对的检查表明,在 PCADSF 的 LigB 家族中,许多有助于这个新发现的变构口袋的残基高度保守。位于假定变构口袋中的两个残基 Phe103α 和 Ala18β 的点突变体与 LigAB-WT 相比,表现出改变的变构增强,为计算确定的变构结合位点提供了支持。对该结合位点的进一步研究可能深入了解这种外二醇加氧酶中从未观察到的变构激活的机制。