Department of Basic Geriatrics, Research Institute for Neurological Diseases and Geriatrics, Kyoto Prefectural University of Medicine, Kawaramachi-Hirokoji, Kyoto 602-8566, Japan.
J Cell Sci. 2011 Aug 15;124(Pt 16):2692-701. doi: 10.1242/jcs.081232. Epub 2011 Jul 19.
Proteolytic systems and the aggresome pathway contribute to preventing accumulation of cytotoxic aggregation-prone proteins. Although polyubiquitylation is usually required for degradation or aggresome formation, several substrates are processed independently of ubiquitin through a poorly understood mechanism. Here, we found that p62/SQSTM1, a multifunctional adaptor protein, was involved in the selective autophagic clearance of a non-ubiquitylated substrate, namely an aggregation-prone isoform of STAT5A (STAT5A_ΔE18). By using a cell line that stably expressed STAT5A_ΔE18, we investigated the properties of its aggregation and degradation. We found that STAT5A_ΔE18 formed non-ubiquitylated aggresomes and/or aggregates by impairment of proteasome functioning or autophagy. Transport of these aggregates to the perinuclear region was inhibited by trichostatin A or tubacin, inhibitors of histone deacetylase (HDAC), indicating that the non-ubiquitylated aggregates of STAT5A_ΔE18 were sequestered into aggresomes in an HDAC6-dependent manner. Moreover, p62 was bound to STAT5A_ΔE18 through its PB1 domain, and the oligomerization of p62 was required for this interaction. In p62-knockdown experiments, we found that p62 was required for autophagic clearance of STAT5A_ΔE18 but not for its aggregate formation, suggesting that the binding of p62 to non-ubiquitylated substrates might trigger their autophagic clearance.
蛋白水解系统和聚集物途径有助于防止细胞毒性聚集倾向蛋白的积累。虽然多泛素化通常是降解或聚集物形成所必需的,但有几个底物通过一种了解甚少的机制独立于泛素进行处理。在这里,我们发现多功能衔接蛋白 p62/SQSTM1 参与了未泛素化底物即 STAT5A 的易聚集同工型(STAT5A_ΔE18)的选择性自噬清除。通过使用稳定表达 STAT5A_ΔE18 的细胞系,我们研究了其聚集和降解的特性。我们发现,STAT5A_ΔE18 通过蛋白酶体功能或自噬的损伤形成未泛素化的聚集物和/或聚集体。这些聚集体向核周区的转运被组蛋白去乙酰化酶 (HDAC) 的抑制剂曲古抑菌素 A 或 tubacin 抑制,表明 STAT5A_ΔE18 的未泛素化聚集体以 HDAC6 依赖的方式被隔离到聚集物中。此外,p62 通过其 PB1 结构域与 STAT5A_ΔE18 结合,并且 p62 的寡聚化对于这种相互作用是必需的。在 p62 敲低实验中,我们发现 p62 对于 STAT5A_ΔE18 的自噬清除是必需的,但对于其聚集体形成不是必需的,这表明 p62 与未泛素化底物的结合可能触发其自噬清除。