Kawaguchi Yuki, Taoka Masato, Takekiyo Takahiro, Uekita Takamasa, Shoji Ikuo, Hachiya Naomi, Ichimura Tohru
Department of Applied Chemistry, National Defense Academy, Yokosuka, Kanagawa, Japan.
Department of Chemistry, Tokyo Metropolitan University, Hachioji, Tokyo, Japan.
PLoS One. 2017 Jan 4;12(1):e0169436. doi: 10.1371/journal.pone.0169436. eCollection 2017.
The spontaneous and energy-releasing reaction of protein aggregation is typically prevented by cellular quality control machinery (QC). TRIM32 is a member of the TRIM (tripartite motif-containing) ubiquitin E3 ligases, and when overexpressed in cultured cells, readily forms spherical inclusions designated as cytoplasmic bodies (CBs) even without proteasome inhibition. Here, we show that HSP70, a central QC component, is a primary binding factor of overexpressed TRIM32. Contrary to expectation, however, we find that this molecular chaperone facilitates and stabilizes CB assembly depending on intrinsic ATPase activity, rather than preventing CB formation. We also show that the HSP70-TRIM32 complex is biochemically distinct from the previously characterized 14-3-3-TRIM32 phospho-complex. Moreover, the two complexes have opposing roles, with HSP70 stimulating CB formation and 14-3-3 retaining TRIM32 in a diffuse form throughout the cytosol. Our results suggest that CB inclusion formation is actively controlled by cellular QC and requires ATP, similar to protein folding and degradation reactions.
蛋白质聚集的自发且释放能量的反应通常会被细胞质量控制机制(QC)所阻止。TRIM32是含三联基序(TRIM)的泛素E3连接酶家族成员,在培养细胞中过表达时,即使没有蛋白酶体抑制,也很容易形成被称为胞质体(CBs)的球形包涵体。在此,我们表明,作为质量控制核心组分的HSP70是过表达的TRIM32的主要结合因子。然而,与预期相反,我们发现这种分子伴侣依赖内在的ATP酶活性促进并稳定了CB组装,而不是阻止CB形成。我们还表明,HSP70 - TRIM32复合物在生化性质上与先前鉴定的14 - 3 - 3 - TRIM32磷酸化复合物不同。此外,这两种复合物具有相反的作用,HSP70刺激CB形成,而14 - 3 - 3使TRIM32以弥散形式保留在整个细胞质中。我们的结果表明,CB包涵体的形成受到细胞质量控制的积极调控,并且与蛋白质折叠和降解反应一样需要ATP。