Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, United States.
Department of Biosciences, University of Milan, Milan, Italy.
Elife. 2020 Jul 28;9:e55596. doi: 10.7554/eLife.55596.
During endoplasmic reticulum-associated degradation (ERAD), the cytoplasmic enzyme -glycanase 1 (NGLY1) is proposed to remove -glycans from misfolded -glycoproteins after their retrotranslocation from the ER to the cytosol. We previously reported that NGLY1 regulates BMP signaling in a tissue-specific manner (Galeone et al., 2017). Here, we establish the Dpp and its mouse ortholog BMP4 as biologically relevant targets of NGLY1 and find, unexpectedly, that NGLY1-mediated deglycosylation of misfolded BMP4 is required for its retrotranslocation. Accumulation of misfolded BMP4 in the ER results in ER stress and prompts the ER recruitment of NGLY1. The ER-associated NGLY1 then deglycosylates misfolded BMP4 molecules to promote their retrotranslocation and proteasomal degradation, thereby allowing properly-folded BMP4 molecules to proceed through the secretory pathway and activate signaling in other cells. Our study redefines the role of NGLY1 during ERAD and suggests that impaired BMP4 signaling might underlie some of the NGLY1 deficiency patient phenotypes.
在内质网相关降解(ERAD)过程中,细胞质酶 -糖苷酶 1(NGLY1)被认为在错误折叠的 -糖蛋白从内质网逆行到细胞质后,从这些蛋白上去除 -聚糖。我们之前曾报道,NGLY1 以组织特异性的方式调节 BMP 信号(Galeone 等人,2017)。在这里,我们确定 Dpp 及其小鼠同源物 BMP4 是 NGLY1 的生物学相关靶标,并且出人意料地发现,NGLY1 介导的错误折叠 BMP4 的去糖基化对于其逆行是必需的。错误折叠的 BMP4 在 ER 中的积累会导致 ER 应激,并促使 ER 招募 NGLY1。然后,ER 相关的 NGLY1 对错误折叠的 BMP4 分子进行去糖基化,以促进它们的逆行和蛋白酶体降解,从而使正确折叠的 BMP4 分子能够通过分泌途径,并在其他细胞中激活信号。我们的研究重新定义了 NGLY1 在 ERAD 过程中的作用,并表明受损的 BMP4 信号可能是 NGLY1 缺乏患者表型的部分原因。