Jakopitsch Christa, Kolarich Daniel, Petutschnig Gabriele, Furtmüller Paul Georg, Obinger Christian
Institute of Chemistry, University of Natural Resources and Applied Life Sciences, Muthgasse 18, A-1190 Vienna, Austria.
FEBS Lett. 2003 Sep 25;552(2-3):135-40. doi: 10.1016/s0014-5793(03)00901-3.
Distal side tryptophan and tyrosine have been shown to be essential in the catalase but not the peroxidase activity of bifunctional catalase-peroxidases (KatGs). Recently published crystal structures suggest that both residues could be part of a novel adduct including in addition a conserved methionine. A mass spectrometric analysis of the tryptic peptides from recombinant wild-type Synechocystis KatG and the variants Trp122Phe, Tyr249Phe and Met275Ile confirms that this novel adduct really exists in solution and thus may be common to all KatGs. Exchange of either Trp122 or Tyr249 prevents cross-linking, whereas exchange of Met275 still allowed bond formation between Trp122 and Tyr249. It is proposed that the covalent bond between Trp and Tyr may form before that between Tyr and Met. The findings are discussed with respect to the mechanism of cross-linking and its role in KatG catalysis.
已证明,在双功能过氧化氢酶-过氧化物酶(KatGs)的过氧化氢酶活性中,远端的色氨酸和酪氨酸至关重要,但在过氧化物酶活性中并非如此。最近发表的晶体结构表明,这两个残基可能是一种新型加合物的一部分,该加合物还包括一个保守的甲硫氨酸。对重组野生型集胞藻KatG以及Trp122Phe、Tyr249Phe和Met275Ile变体的胰蛋白酶肽段进行质谱分析,证实这种新型加合物确实存在于溶液中,因此可能是所有KatGs所共有的。Trp122或Tyr249的交换会阻止交联,而Met275的交换仍允许Trp122和Tyr249之间形成键。有人提出,色氨酸和酪氨酸之间的共价键可能在酪氨酸和甲硫氨酸之间的共价键形成之前形成。针对交联机制及其在KatG催化中的作用对这些发现进行了讨论。