首页> 外文期刊>Journal of Cell Science >TRIM32, but not its muscular dystrophy-associated mutant, positively regulates and is targeted to autophagic degradation by p62/SQSTM1
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TRIM32, but not its muscular dystrophy-associated mutant, positively regulates and is targeted to autophagic degradation by p62/SQSTM1

机译:Trim32,但不是其肌肉营养不良相关的突变体,正面调节并靶向P62 / SQSTM1的自噬降解

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摘要

The tripartite motif (TRIM) proteins constitute a family of ubiquitin E3 ligases involved in a multitude of cellular processes, including protein homeostasis and autophagy. TRIM32 is characterized by six protein-protein interaction domains termed NHL, various point mutations in which are associated with limb-girdle-muscular dystrophy 2H (LGMD2H). Here, we show that TRIM32 is an autophagy substrate. Lysosomal degradation of TRIM32 was dependent on ATG7 and blocked by knockout of the five autophagy receptors p62 (also known as SQSTM1), NBR1, NDP52 (also known as CALCOCO2). TAX1BP1 and OPTN, pointing towards degradation by selective autophagy. p62 directed TRIM32 to lysosomal degradation, while TRIM32 mono-ubiquitylated p62 on lysine residues involved in regulation of p62 activity. Loss of TRIM32 impaired p62 sequestration, while reintroduction of TRIM32 facilitated p62 dot formation and its autophagic degradation. A TRIM32(LGMD2H) disease mutant was unable to undergo autophagic degradation and to mono-ubiquitylate p62, and its reintroduction into the TRIM32-knockout cells did not affect p62 dot formation. In light of the important roles of autophagy and p62 in muscle cell proteostasis, our results point towards impaired TRIM32-mediated regulation of p62 activity as a pathological mechanisms in LGMD2H.
机译:三方基质(修剪)蛋白质构成泛素e3的杂蛋白族,涉及多种细胞过程,包括蛋白质稳态和自噬。 Trim32的特征在于六种蛋白质 - 蛋白质相互作用结构域被称为NHL,各种点突变与肢体 - 肌肌营养不良2H(LGMD2H)相关。在这里,我们表明Trim32是自噬衬底。 Trim32的溶酶体降解依赖于ATG7并被五种自噬受体P62(也称为SQSTM1),NBR1,NDP52(也称为Calcoco2)阻断。税收1bp1和optn,通过选择性自噬指向降解。 P62定向纺饰32至溶酶体降解,而TRIM32单对偶氮化的P62赖氨酸残基涉及P62活性的调节。 TRIM32损失损失P62封存,而重组促进TRIM32促进的P62点形成及其自噬降。 TRIM32(LGMD2H)疾病突变体不能进行自噬降解和单次ubiquityLate P62,其重新引入Trim32敲除细胞不影响P62点形成。鉴于自噬和P62在肌肉细胞蛋白质中的重要作用,我们的结果指出了Trim32介导的P62活性调节作为LGMD2h的病理机制。

著录项

  • 来源
    《Journal of Cell Science》 |2019年第23期|共16页
  • 作者单位

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Univ New Mexico Hlth Sci Ctr Autophagy Inflammat &

    Metab Ctr Biomed Res Excell Albuquerque NM;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

    Arctic Univ Norway Univ Tromso Dept Med Biol Mol Canc Res Grp N-9037 Tromso Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

    TRIM32; p62/SQSTM1; LGMD2H; Autophagy; BBS11; Ubiquitylation;

    机译:Trim32;p62 / sqstm1;lgmd2h;自噬;bbs11;ubiquitylation;

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