Ribosome stalling during co-translational translocation at the ER causes translocon clogging and impairs ER protein biogenesis. Mammalian cells resolve translocon clogging via a poorly characterized translocation-associated quality control (TAQC) process. Here, we combine a genome-wide CRISPR screen with live-cell imaging to dissect the molecular linchpin of TAQC. We show that TAQC substrates translated from mRNAs bearing a ribosome-stalling poly(A) sequence are degraded by lysosomes and the proteasome. By contrast, the degradation of defective nascent chains encoded by nonstop (NS) mRNAs involves an unconventional ER-associated protein degradation (ERAD) mechanism depending on ER-to-Golgi trafficking, KDEL-mediated substrate retrieval at the Golgi, and a tRNA-binding factor NEMF that appends an aggregation-prone carboxyl tail to stalled NS nascent chains. We propose that NEMF-mediated CAT tailing targets a subset of TAQC substrates via Golgi retrieval for ERAD, safeguarding ER homeostasis.
NEMF-mediated CAT tailing facilitates translocation-associated quality control.
NEMF 介导的 CAT 尾部修饰促进易位相关的质量控制
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作者:Ennis Amanda, Wang Lihui, Xu Yue, Saidi Layla, Wang Xiaorong, Yu Clinton, Yun Sijung, Huang Lan, Ye Yihong
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Jun 2; 224(6):e202408199 |
| doi: | 10.1083/jcb.202408199 | 研究方向: | 其它 |
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