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Desumoylation activity of Axam, a novel Axin-binding protein, is involved in downregulation of β-catenin

  • Takayuki Kadoya
  • , Hideki Yamamoto
  • , Toshiaki Suzuki
  • , Akira Yukita
  • , Akimasa Fukui
  • , Tatsuo Michiue
  • , Toshimasa Asahara
  • , Keiji Tanaka
  • , Makoto Asashima
  • , Akira Kikuchi
  • Hiroshima University

研究成果: ジャーナルへの寄稿記事査読

71 被引用数 (Scopus)

抄録

Axam has been identified as a novel Axin-binding protein that inhibits the Wnt signaling pathway. We studied the molecular mechanism by which Axam stimulates the downregulation of β-catenin. The C-terminal region of Axam has an amino acid sequence similar to that of the catalytic region of SENP1, a SUMO-specific protease (desumoylation enzyme). Indeed, Axam exhibited activity to remove SUMO from sumoylated proteins in vitro and in intact cells. The Axin-binding domain is located in the central region of Axam, which is different from the catalytic domain. Neither the Axin-binding domain nor the catalytic domain alone was sufficient for the downregulation of β-catenin. An Axam fragment which contains both domains was able to decrease the level of β-catenin. On substitution of Ser for Cys547 in the catalytic domain, Axam lost its desumoylation activity. Further, this Axam mutant decreased the activity to downregulate β-catenin. Although Axam strongly inhibited axis formation and expression of siamois, a Wnt-response gene, in Xenopus embryos, AxamC547S showed weak activities. These results demonstrate that Axam functions as a desumoylation enzyme to down-regulate β-catenin and suggest that sumoylation is involved in the regulation of the Wnt signaling pathway.

本文言語英語
ページ(範囲)3803-3819
ページ数17
ジャーナルMolecular and Cellular Biology
22
11
DOI
出版ステータス出版済み - 2002
外部発表はい

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