School of Biotechnology and Biomolecular Sciences, UNSW Sydney, New South Wales 2052, Australia
School of Biotechnology and Biomolecular Sciences, UNSW Sydney, New South Wales 2052, Australia.
Biochem J. 2019 Sep 20;476(18):2545-2560. doi: 10.1042/BCJ20190418.
Squalene monooxygenase (SM) is an essential rate-limiting enzyme in cholesterol synthesis. SM degradation is accelerated by excess cholesterol, and this requires the first 100 amino acids of SM (SM N100). This process is part of a protein quality control pathway called endoplasmic reticulum-associated degradation (ERAD). In ERAD, SM is ubiquitinated by MARCH6, an E3 ubiquitin ligase located in the endoplasmic reticulum (ER). However, several details of the ERAD process for SM remain elusive, such as the extraction mechanism from the ER membrane. Here, we used SM N100 fused to GFP (SM N100-GFP) as a model degron to investigate the extraction process of SM in ERAD. We showed that valosin-containing protein (VCP) is important for the cholesterol-accelerated degradation of SM N100-GFP and SM. In addition, we revealed that VCP acts following ubiquitination of SM N100-GFP by MARCH6. We demonstrated that the amphipathic helix (Gln62-Leu73) of SM N100-GFP is critical for regulation by VCP and MARCH6. Replacing this amphipathic helix with hydrophobic re-entrant loops promoted degradation in a VCP-dependent manner. Finally, we showed that inhibiting VCP increases cellular squalene and cholesterol levels, indicating a functional consequence for VCP in regulating the cholesterol synthesis pathway. Collectively, we established VCP plays a key role in ERAD that contributes to the cholesterol-mediated regulation of SM.
鲨烯单加氧酶(SM)是胆固醇合成中的一种必需限速酶。过量胆固醇会加速 SM 的降解,这需要 SM 的前 100 个氨基酸(SM N100)。这个过程是一种称为内质网相关降解(ERAD)的蛋白质质量控制途径的一部分。在 ERAD 中,SM 被位于内质网(ER)中的 E3 泛素连接酶 MARCH6 泛素化。然而,SM 的 ERAD 过程的几个细节仍然难以捉摸,例如从 ER 膜中提取的机制。在这里,我们使用与 GFP 融合的 SM N100(SM N100-GFP)作为模型降解物来研究 ERAD 中 SM 的提取过程。我们表明,含缬氨酸的蛋白(VCP)对于胆固醇加速的 SM N100-GFP 和 SM 的降解很重要。此外,我们揭示了 VCP 在 MARCH6 对 SM N100-GFP 的泛素化之后起作用。我们证明,SM N100-GFP 的两性螺旋(Gln62-Leu73)对于 VCP 和 MARCH6 的调节至关重要。用疏水性再进入环取代这个两性螺旋促进了 VCP 依赖性降解。最后,我们表明抑制 VCP 会增加细胞中的鲨烯和胆固醇水平,表明 VCP 在调节胆固醇合成途径方面具有功能后果。总之,我们建立了 VCP 在 ERAD 中发挥关键作用,有助于胆固醇介导的 SM 调节。