Identification of a substrate-binding site in a peroxisomal β-oxidation enzyme by photoaffinity labeling with a novel palmitoyl derivative

Yoshinori Kashiwayama, Takenori Tomohiro, Kotomi Narita, Miyuki Suzumura, Tuomo Glumoff, J. Kalervo Hiltunen, Paul P. Van Veldhoven, Yasumaru Hatanaka*, Tsuneo Imanaka

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

11 被引用数 (Scopus)

抄録

Peroxisomes play an essential role in a number of important metabolic pathways including β-oxidation of fatty acids and their derivatives. Therefore, peroxisomes possess various β-oxidation enzymes and specialized fatty acid transport systems. However, the molecular mechanisms of these proteins, especially in terms of substrate binding, are still unknown. In this study, to identify the substrate-binding sites of these proteins, we synthesized a photoreactive palmitic acid analogue bearing a diazirine moiety as a photophore, and performed photoaffinity labeling of purified rat liver peroxisomes. As a result, an 80-kDa peroxisomal protein was specifically labeled by the photoaffinity ligand, and the labeling efficiency competitively decreased in the presence of palmitoyl-CoA. Mass spectrometric analysis identified the 80-kDa protein as peroxisomal multifunctional enzyme type 2 (MFE2), one of the peroxisomal β-oxidation enzymes. Recombinant rat MFE2 was also labeled by the photoaffinity ligand, and mass spectrometric analysis revealed that a fragment of rat MFE2 (residues Trp249 to Arg 251) was labeled by the ligand. MFE2 mutants bearing these residues, MFE2(W249A) and MFE2(R251A), exhibited decreased labeling efficiency. Furthermore, MFE2(W249G), which corresponds to one of the disease-causing mutations in human MFE2, also exhibited a decreased efficiency. Based on the crystal structure of rat MFE2, these residues are located on the top of a hydrophobic cavity leading to an active site of MFE2. These data suggest that MFE2 anchors its substrate around the region from Trp249 to Arg 251 and positions the substrate along the hydrophobic cavity in the proper direction toward the catalytic center.

本文言語英語
ページ(範囲)26315-26325
ページ数11
ジャーナルJournal of Biological Chemistry
285
34
DOI
出版ステータス出版済み - 2010/08/20

ASJC Scopus 主題領域

  • 生化学
  • 分子生物学
  • 細胞生物学

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