首页> 美国卫生研究院文献>The Journal of Biological Chemistry >SEL1L Protein Critically Determines the Stability of the HRD1-SEL1L Endoplasmic Reticulum-associated Degradation (ERAD) Complex to Optimize the Degradation Kinetics of ERAD Substrates
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SEL1L Protein Critically Determines the Stability of the HRD1-SEL1L Endoplasmic Reticulum-associated Degradation (ERAD) Complex to Optimize the Degradation Kinetics of ERAD Substrates

机译:SEL1L蛋白可决定性地确定HRD1-SEL1L内质网相关降解(ERAD)复合物的稳定性以优化ERAD底物的降解动力学

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摘要

The mammalian HRD1-SEL1L complex provides a scaffold for endoplasmic reticulum (ER)-associated degradation (ERAD), thereby connecting luminal substrates for ubiquitination at the cytoplasmic surface after their retrotranslocation through the endoplasmic reticulum membrane. In this study the stability of the mammalian HRD1-SEL1L complex was assessed by performing siRNA-mediated knockdown of each of its components. Although endogenous SEL1L is a long-lived protein, the half-life of SEL1L was greatly reduced when HRD1 is silenced. Conversely, transiently expressed SEL1L was rapidly degraded but was stabilized when HRD1 was coexpressed. This was in contrast to the yeast Hrd1p-Hrd3p, where Hrd1p is destabilized by the depletion of Hrd3p, the SEL1L homologue. Endogenous HRD1-SEL1L formed a large ERAD complex (Complex I) associating with numerous ERAD components including ERAD lectin OS-9, membrane-spanning Derlin-1/2, VIMP, and Herp, whereas transiently expressed HRD1-SEL1L formed a smaller complex (Complex II) that was associated with OS-9 but not with Derlin-1/2, VIMP, or Herp. Despite its lack of stable association with the latter components, Complex II supported the retrotranslocation and degradation of model ERAD substrates α1-antitrypsin null Hong-Kong (NHK) and its variant NHK-QQQ lacking the N-glycosylation sites. NHK-QQQ was rapidly degraded when SEL1L was transiently expressed, whereas the simultaneous transfection of HRD1 diminished that effect. SEL1L unassociated with HRD1 was degraded by the ubiquitin-proteasome pathway, which suggests the involvement of a ubiquitin-ligase other than HRD1 in the rapid degradation of both SEL1L and NHK-QQQ. These results indicate that the regulation of the stability and assembly of the HRD1-SEL1L complex is critical to optimize the degradation kinetics of ERAD substrates.
机译:哺乳动物HRD1-SEL1L复合物为内质网(ER)相关降解(ERAD)提供了一个支架,从而在它们通过内质网逆向转运后,连接了用于在细胞质表面泛素化的腔基质。在这项研究中,哺乳动物HRD1-SEL1L复合物的稳定性通过执行siRNA介导的其每个成分的敲低来评估。尽管内源性SEL1L是长寿蛋白,但是当HRD1沉默时,SEL1L的半衰期会大大缩短。相反,瞬时表达的SEL1L迅速降解,但当HRD1共表达时稳定。这与酵母Hrd1p-Hrd3p相反,酵母Hrd1p-Hrd3p由于SEL1L同源物Hrd3p的消耗而不稳定。内源性HRD1-SEL1L与包括ERAD凝集素OS-9,跨膜Derlin-1 / 2,VIMP和Herp在内的许多ERAD成分相关联,形成了一个大型ERAD复合物(复合物I),而瞬时表达的HRD1-SEL1L形成了一个较小的复合物(与OS-9相关但与Derlin-1 / 2,VIMP或Herp不相关的Complex II)。尽管复合物II与后面的组分缺乏稳定的结合,但它支持模型ERAD底物α1-抗胰蛋白酶无效的香港(NHK)及其缺乏N-糖基化位点的变体NHK-QQQ的逆向转运和降解。瞬时表达SEL1L时,NHK-QQQ迅速降解,而同时转染HRD1则减弱了这种作用。与HRD1无关的SEL1L被泛素-蛋白酶体途径降解,这表明除了HRD1以外,泛素连接酶也参与了SEL1L和NHK-QQQ的快速降解。这些结果表明,HRD1-SEL1L复合物的稳定性和组装的调节对于优化ERAD底物的降解动力学至关重要。

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