Shin Inchul, Davis Ian, Nieves-Merced Karinel, Wang Yifan, McHardy Stanton, Liu Aimin
Department of Chemistry, The University of Texas at San Antonio One UTSA Circle Texas 78249 USA
Center for Innovative Drug Discovery, The University of Texas at San Antonio One UTSA Circle Texas 78249 USA.
Chem Sci. 2021 Jan 22;12(11):3984-3998. doi: 10.1039/d0sc06369j.
SfmD is a heme-dependent enzyme in the biosynthetic pathway of saframycin A. Here, we present a 1.78 Å resolution crystal structure of SfmD, which unveils a novel heme cofactor attached to the protein with an unusual x xxx motif ( ∼ 38). This heme cofactor is unique in two respects. It contains a single thioether bond in a cysteine-vinyl link with Cys317, and the ferric heme has two axial protein ligands, , His274 and His313. We demonstrated that SfmD heme is catalytically active and can utilize dioxygen and ascorbate for a single-oxygen insertion into 3-methyl-l-tyrosine. Catalytic assays using ascorbate derivatives revealed the functional groups of ascorbate essential to its function as a cosubstrate. Abolishing the thioether linkage through mutation of Cys317 resulted in catalytically inactive SfmD variants. EPR and optical data revealed that the heme center undergoes a substantial conformational change with one axial histidine ligand dissociating from the iron ion in response to substrate 3-methyl-l-tyrosine binding or chemical reduction by a reducing agent, such as the cosubstrate ascorbate. The labile axial ligand was identified as His274 through redox-linked structural determinations. Together, identifying an unusual heme cofactor with a previously unknown heme-binding motif for a monooxygenase activity and the structural similarity of SfmD to the members of the heme-based tryptophan dioxygenase superfamily will broaden understanding of heme chemistry.
SfmD是沙福霉素A生物合成途径中一种依赖血红素的酶。在此,我们展示了SfmD的1.78 Å分辨率晶体结构,该结构揭示了一种与蛋白质相连的新型血红素辅因子,其具有不寻常的xxx基序(约38)。这种血红素辅因子在两个方面是独特的。它在与Cys317的半胱氨酸 - 乙烯基连接中含有一个硫醚键,并且高铁血红素具有两个轴向蛋白质配体,即His274和His313。我们证明SfmD血红素具有催化活性,并且可以利用氧气和抗坏血酸将单氧插入3 - 甲基 - L - 酪氨酸中。使用抗坏血酸衍生物的催化测定揭示了抗坏血酸作为共底物发挥功能所必需的官能团。通过Cys317突变消除硫醚键会导致催化无活性的SfmD变体。电子顺磁共振(EPR)和光学数据表明,响应底物3 - 甲基 - L - 酪氨酸的结合或还原剂(如共底物抗坏血酸)的化学还原,血红素中心会发生显著的构象变化,其中一个轴向组氨酸配体从铁离子上解离。通过氧化还原相关的结构测定确定不稳定的轴向配体为His274。总之,鉴定出一种具有用于单加氧酶活性的先前未知血红素结合基序的不寻常血红素辅因子以及SfmD与基于血红素的色氨酸双加氧酶超家族成员的结构相似性,将拓宽对血红素化学的理解。