Rotsaert Frederik A J, Hallberg B Martin, de Vries Simon, Moenne-Loccoz Pierre, Divne Christina, Renganathan V, Gold Michael H
Department of Biochemistry and Molecular Biology, OGI School of Science and Engineering at Oregon Health & Science University, Beaverton, Oregon 97006-8921, USA.
J Biol Chem. 2003 Aug 29;278(35):33224-31. doi: 10.1074/jbc.M302653200. Epub 2003 Jun 9.
The fungal extracellular flavocytochrome cellobiose dehydrogenase (CDH) participates in lignocellulose degradation. The enzyme has a cytochrome domain connected to a flavin-binding domain by a peptide linker. The cytochrome domain contains a 6-coordinate low spin b-type heme with unusual iron ligands and coordination geometry. Wild type CDH is only the second example of a b-type heme with Met-His ligation, and it is the first example of a Met-His ligation of heme b where the ligands are arranged in a nearly perpendicular orientation. To investigate the ligation further, Met65 was replaced with a histidine to create a bis-histidyl ligated iron typical of b-type cytochromes. The variant is expressed as a stable 90-kDa protein that retains the flavin domain catalytic reactivity. However, the ability of the mutant to reduce external one-electron acceptors such as cytochrome c is impaired. Electrochemical measurements demonstrate a decrease in the redox midpoint potential of the heme by 210 mV. In contrast to the wild type enzyme, the ferric state of the protoheme displays a mixed low spin/high spin state at room temperature and low spin character at 90 K, as determined by resonance Raman spectroscopy. The wild type cytochrome does not bind CO, but the ferrous state of the variant forms a CO complex, although the association rate is very low. The crystal structure of the M65H cytochrome domain has been determined at 1.9 A resolution. The variant structure confirms a bis-histidyl ligation but reveals unusual features. As for the wild type enzyme, the ligands have a nearly perpendicular arrangement. Furthermore, the iron is bound by imidazole N delta 1 and N epsilon 2 nitrogen atoms, rather than the typical N epsilon 2/N epsilon 2 coordination encountered in bis-histidyl ligated heme proteins. To our knowledge, this is the first example of a bis-histidyl N delta 1/N epsilon 2-coordinated protoporphyrin IX iron.
真菌胞外黄素细胞色素纤维二糖脱氢酶(CDH)参与木质纤维素的降解。该酶具有一个通过肽接头连接到黄素结合结构域的细胞色素结构域。细胞色素结构域包含一个具有不寻常铁配体和配位几何结构的六配位低自旋b型血红素。野生型CDH是第二个具有甲硫氨酸-组氨酸配位的b型血红素的例子,也是血红素b的甲硫氨酸-组氨酸配位中配体以近乎垂直方向排列的第一个例子。为了进一步研究配位情况,将甲硫氨酸65替换为组氨酸,以产生典型的b型细胞色素的双组氨酸配位铁。该变体表达为一种稳定的90 kDa蛋白,保留了黄素结构域的催化活性。然而,该突变体还原外部单电子受体如细胞色素c的能力受损。电化学测量表明血红素的氧化还原中点电位降低了210 mV。与野生型酶不同,原卟啉的铁离子状态在室温下呈现混合低自旋/高自旋状态,在90 K时呈现低自旋特征,这是通过共振拉曼光谱确定的。野生型细胞色素不结合CO,但变体的亚铁状态形成了CO复合物,尽管结合速率非常低。已确定M65H细胞色素结构域的晶体结构分辨率为1.9 Å。变体结构证实了双组氨酸配位,但揭示了不寻常的特征。与野生型酶一样,配体具有近乎垂直的排列。此外,铁由咪唑Nδ1和Nε2氮原子配位,而不是双组氨酸配位血红素蛋白中常见的典型Nε2/Nε2配位。据我们所知,这是双组氨酸Nδ1/Nε2配位原卟啉IX铁的第一个例子。