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异常的内质网质量控制通过神经 GPI-锚定蛋白在老年精神分裂症患者额皮质中的内质网输出加工功能障碍。

Abnormal ER quality control of neural GPI-anchored proteins via dysfunction in ER export processing in the frontal cortex of elderly subjects with schizophrenia.

机构信息

Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, Birmingham, AL, 35294, USA.

出版信息

Transl Psychiatry. 2019 Jan 16;9(1):6. doi: 10.1038/s41398-018-0359-4.

Abstract

Abnormalities of posttranslational protein modifications (PTMs) have recently been implicated in the pathophysiology of schizophrenia. Glycosylphosphatidylinositols (GPIs) are a class of complex glycolipids, which anchor surface proteins and glycoproteins to the cell membrane. GPI attachment to proteins represents one of the most common PTMs and GPI-associated proteins (GPI-APs) facilitate many cell surface processes, including synapse development and maintenance. Mutations in the GPI processing pathway are associated with intellectual disability, emphasizing the potential role of GPI-APs in cognition and schizophrenia-associated cognitive dysfunction. As initial endoplasmic reticulum (ER)-associated protein processing is essential for GPI-AP function, we measured protein expression of molecules involved in attachment (GPAA1), modification (PGAP1), and ER export (Tmp21) of GPI-APs, in homogenates and in an ER enriched fraction derived from dorsolateral prefrontal cortex (DLPFC) of 15 matched pairs of schizophrenia and comparison subjects. In total homogenate we found a significant decrease in transmembrane protein 21 (Tmp21) and in the ER-enriched fraction we found reduced expression of post-GPI attachment protein (PGAP1). PGAP1 modifies GPI-anchors through inositol deacylation, allowing it to be recognized by Tmp21. Tmp21 is a component of the p24 complex that recognizes GPI-anchored proteins, senses the status of the GPI-anchor, and regulates incorporation into COPII vesicles for export to the Golgi apparatus. Together, these proteins are the molecular mechanisms underlying GPI-AP quality control and ER export. To investigate the potential consequences of a deficit in export and/or quality control, we measured cell membrane-associated expression of known GPI-APs that have been previously implicated in schizophrenia, including GPC1, NCAM, MDGA2, and EPHA1, using Triton X-114 phase separation. Additionally, we tested the sensitivity of those candidate proteins to phosphatidylinositol-specific phospholipase C (PI-PLC), an enzyme that cleaves GPI from GPI-APs. While we did not observe a difference in the amount of these GPI-APs in Triton X-114 phase separated membrane fractions, we found decreased NCAM and GPC1 within the PI-PLC sensitive fraction. These findings suggest dysregulation of ER-associated GPI-AP protein processing, with impacts on post-translational modifications of proteins previously implicated in schizophrenia such as NCAM and GPC1. These findings provide evidence for a deficit in ER protein processing pathways in this illness.

摘要

蛋白质翻译后修饰(PTMs)的异常最近被牵连到精神分裂症的病理生理学中。糖基磷脂酰肌醇(GPIs)是一类复杂的糖脂,它们将表面蛋白和糖蛋白锚定在细胞膜上。GPIs 与蛋白质的结合代表最常见的 PTMs 之一,而 GPI 相关蛋白(GPI-APs)则促进许多细胞表面过程,包括突触的发育和维持。GPI 加工途径中的突变与智力障碍有关,这强调了 GPI-APs 在认知和与精神分裂症相关的认知功能障碍中的潜在作用。由于初始内质网(ER)相关蛋白加工对于 GPI-AP 功能至关重要,我们测量了 15 对匹配的精神分裂症和对照组受试者的背外侧前额叶皮层(DLPFC)匀浆和 ER 富集部分中涉及 GPI-AP 附着(GPAA1)、修饰(PGAP1)和 ER 输出(Tmp21)的分子的蛋白表达。在总匀浆中,我们发现跨膜蛋白 21(Tmp21)显著减少,而在 ER 富集部分中,我们发现 PGAP1 的表达减少。PGAP1 通过肌醇去酰化修饰 GPI 锚,使其被 Tmp21 识别。Tmp21 是 p24 复合物的一个组成部分,该复合物识别 GPI 锚定蛋白,感知 GPI 锚的状态,并调节其掺入 COPII 小泡以输出到高尔基体。这些蛋白共同构成了 GPI-AP 质量控制和 ER 输出的分子机制。为了研究出口和/或质量控制缺陷的潜在后果,我们使用 Triton X-114 相分离法测量了先前与精神分裂症有关的已知 GPI-APs 的细胞膜相关表达,包括 GPC1、NCAM、MDGA2 和 EPHA1。此外,我们测试了这些候选蛋白对磷脂酰肌醇特异性磷脂酶 C(PI-PLC)的敏感性,PI-PLC 是一种从 GPI-APs 中切割 GPI 的酶。虽然我们没有观察到 Triton X-114 相分离膜部分中这些 GPI-APs 的量有差异,但我们发现 PI-PLC 敏感部分中的 NCAM 和 GPC1 减少。这些发现表明内质网相关 GPI-AP 蛋白加工失调,影响到先前与精神分裂症有关的蛋白质的翻译后修饰,如 NCAM 和 GPC1。这些发现为这种疾病中内质网蛋白加工途径的缺陷提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ea/6341114/8bdf9cf49cd5/41398_2018_359_Fig1_HTML.jpg

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