Deptartment of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.
J Cell Biol. 2012 Jun 11;197(6):761-73. doi: 10.1083/jcb.201203061.
Little is known about quality control of proteins that aberrantly or persistently engage the endoplasmic reticulum (ER)-localized translocon en route to membrane localization or the secretory pathway. Hrd1 and Doa10, the primary ubiquitin ligases that function in ER-associated degradation (ERAD) in yeast, target distinct subsets of misfolded or otherwise abnormal proteins based primarily on degradation signal (degron) location. We report the surprising observation that fusing Deg1, a cytoplasmic degron normally recognized by Doa10, to the Sec62 membrane protein rendered the protein a Hrd1 substrate. Hrd1-dependent degradation occurred when Deg1-Sec62 aberrantly engaged the Sec61 translocon channel and underwent topological rearrangement. Mutations that prevent translocon engagement caused a reversion to Doa10-dependent degradation. Similarly, a variant of apolipoprotein B, a protein known to be cotranslocationally targeted for proteasomal degradation, was also a Hrd1 substrate. Hrd1 therefore likely plays a general role in targeting proteins that persistently associate with and potentially obstruct the translocon.
人们对那些异常或持续与内质网(ER)定位的易位子结合,从而导致膜定位或分泌途径的蛋白质的质量控制知之甚少。Hrd1 和 Doa10 是酵母内质网相关降解(ERAD)中的主要泛素连接酶,它们主要根据降解信号(degron)的位置来靶向不同的错误折叠或异常的蛋白质亚群。我们报告了一个令人惊讶的观察结果,即将 Deg1(一种通常被 Doa10 识别的细胞质 degron)融合到 Sec62 膜蛋白上,使该蛋白成为 Hrd1 的底物。当 Deg1-Sec62 异常结合 Sec61 易位子通道并经历拓扑重排时,就会发生 Hrd1 依赖性降解。防止易位子结合的突变导致恢复到依赖于 Doa10 的降解。类似地,载脂蛋白 B 的一种变体,一种已知被共转移靶向蛋白酶体降解的蛋白质,也是 Hrd1 的底物。因此,Hrd1 可能在靶向那些持续与易位子结合并可能阻碍易位子的蛋白质方面发挥一般作用。