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Characterization of porphobilinogen deaminase mutants reveals that arginine-173 is crucial for polypyrrole elongation mechanism

机译:脱硝酶突变体突变体的表征表明精氨酸-173对聚吡咯伸长机构至关重要

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摘要

Porphobilinogen deaminase (PBGD), the third enzyme in the heme biosynthesis, catalyzes the sequential coupling of four porphobilinogen (PBG) molecules into a heme precursor. Mutations in PBGD are associated with acute intermittent porphyria (AIP), a rare metabolic disorder. We used Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) to demonstrate that wild-type PBGD and AIP-associated mutant R167W both existed as holoenzymes (Eholo) covalently attached to the dipyrromethane cofactor, and three intermediate complexes, ES, ES2, and ES3, where S represents PBG. In contrast, only ES2 was detected in AIP-associated mutant R173W, indicating that the formation of ES3 is inhibited. The R173W crystal structure in the ES2-state revealed major rearrangements of the loops around the active site, compared to wild-type PBGD in the Eholo-state. These results contribute to elucidating the structural pathogenesis of two common AIP-associated mutations and reveal the important structural role of Arg173 in the polypyrrole elongation mechanism.
机译:卟酚脱胺酶(PBGD),血红素生物合成中的第三酶,催化四个卟酚(PBG)分子到血红素前体中的顺序偶联。 PBGD中的突变与急性间歇性卟啉(AIP),罕见的代谢紊乱有关。我们使用傅立叶变换离子回旋共振质谱(FT-ICR MS),以证明野生型PBGD和AIP相关突变体R167W都存在为共价连接到双甲烷辅因子的全酶(EHOLO),以及三个中间复合物,ES,ES2和ES3,其中S代表PBG。相反,在AIP相关突变体R173w中仅检测ES2,表明抑制ES3的形成。与EHOLO状态下的野生型PBGD相比,ES2状态下的R173W晶体结构揭示了活性位点周围环绕的重排。这些结果有助于阐明两种常见的AIP相关突变的结构性发病机制,并揭示了Arg173在聚吡咯伸长机制中的重要结构作用。

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