Molecular Cell Biology Division, Faculty of Biology/Chemistry, University of Osnabrück, 49076 Osnabrück, Germany.
Molecular Genetics, Life and Medical Sciences Institute, University of Bonn, 53115 Bonn, Germany.
Sci Rep. 2017 Jan 25;7:41290. doi: 10.1038/srep41290.
SMSr/SAMD8 is an ER-resident ceramide phosphoethanolamine synthase with a critical role in controlling ER ceramides and suppressing ceramide-induced apoptosis in cultured cells. SMSr-mediated ceramide homeostasis relies on the enzyme's catalytic activity as well as on its N-terminal sterile α-motif or SAM domain. Here we report that SMSr-SAM is structurally and functionally related to the SAM domain of diacylglycerol kinase DGKδ, a central regulator of lipid signaling at the plasma membrane. Native gel electrophoresis indicates that both SAM domains form homotypic oligomers. Chemical crosslinking studies show that SMSr self-associates into ER-resident trimers and hexamers that resemble the helical oligomers formed by DGKδ-SAM. Residues critical for DGKδ-SAM oligomerization are conserved in SMSr-SAM and their substitution causes a dissociation of SMSr oligomers as well as a partial redistribution of the enzyme to the Golgi. Conversely, treatment of cells with curcumin, a drug disrupting ceramide and Ca homeostasis in the ER, stabilizes SMSr oligomers and promotes retention of the enzyme in the ER. Our data provide first demonstration of a multi-pass membrane protein that undergoes homotypic oligomerization via its SAM domain and indicate that SAM-mediated self-assembly of SMSr is required for efficient retention of the enzyme in the ER.
SMSr/SAMD8 是一种内质网驻留型神经酰胺磷酸乙醇胺合酶,对于控制内质网神经酰胺和抑制培养细胞中的神经酰胺诱导凋亡具有关键作用。SMSr 介导的神经酰胺动态平衡依赖于酶的催化活性及其 N 端无菌α基序或 SAM 结构域。在这里,我们报告 SMSr-SAM 在结构和功能上与二酰基甘油激酶 DGKδ 的 SAM 结构域相关,DGKδ 是质膜脂质信号的中央调节剂。天然凝胶电泳表明,这两个 SAM 结构域都形成同型寡聚体。化学交联研究表明,SMSr 自身缔合成内质网驻留的三聚体和六聚体,类似于 DGKδ-SAM 形成的螺旋寡聚体。对于 DGKδ-SAM 寡聚化至关重要的残基在 SMSr-SAM 中保守,其取代会导致 SMSr 寡聚体的解离以及该酶向高尔基体的部分再分布。相反,用姜黄素(一种破坏内质网中神经酰胺和 Ca 动态平衡的药物)处理细胞可稳定 SMSr 寡聚体并促进该酶在 ER 中的保留。我们的数据首次证明了一种多跨膜蛋白,其通过其 SAM 结构域发生同源寡聚化,并表明 SAM 介导的 SMSr 自组装对于该酶在 ER 中的有效保留是必需的。