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Pdro, a Protein Associated with Late Endosomes and Lysosomes and Implicated in Cellular Cholesterol Homeostasis

机译:Pdro,一种与晚期内体和溶酶体相关的蛋白,与细胞胆固醇稳态有关

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Background Cellular cholesterol is a vital component of the cell membrane. Its concentration is tightly controlled by mechanisms that remain only partially characterized. In this study, we describe a late endosome/lysosomes–associated protein whose expression level affects cellular free cholesterol content. Methodology/Principal Findings Using a restricted proteomic analysis of detergent-resistant membranes (DRMs), we have identified a protein encoded by gene C11orf59. It is mainly localized to late endosome/lysosome (LE/LY) compartment through N-terminal myristoylation and palmitoylation. We named it Pdro for protein associated with DRMs and endosomes. Very recently, three studies have reported on the same protein under two other names: the human p27RF-Rho that regulates RhoA activation and actin dynamics, and its rodent orthologue p18 that controls both LE/LY dynamics through the MERK-ERK pathway and the lysosomal activation of mammalian target of rapamycin complex 1 by amino acids. We found that, consistent with the presence of sterol-responsive element consensus sequences in the promoter region of C11orf59, Pdro mRNA and protein expression levels are regulated positively by cellular cholesterol depletion and negatively by cellular cholesterol loading. Conversely, Pdro is involved in the regulation of cholesterol homeostasis, since its depletion by siRNA increases cellular free cholesterol content that is accompanied by an increased cholesterol efflux from cells. On the other hand, cells stably overexpressing Pdro display reduced cellular free cholesterol content. Pdro depletion-mediated excess cholesterol results, at least in part, from a stimulated low-density lipoprotein (LDL) uptake and an increased cholesterol egress from LE/LY. Conclusions/Significance LDL-derived cholesterol release involves LE/LY motility that is linked to actin dynamics. Because Pdro regulates these two processes, we propose that modulation of Pdro expression in response to sterol levels regulates LDL-derived cholesterol through both LDL uptake and LE/LY dynamics, to ultimately control free cholesterol homeostasis.
机译:背景技术细胞胆固醇是细胞膜的重要组成部分。其浓度受仅部分表征的机制严格控制。在这项研究中,我们描述了晚期内体/溶酶体相关蛋白,其表达水平会影响细胞中游离胆固醇的含量。方法/主要发现使用对耐洗涤剂的膜(DRM)进行限制性蛋白质组学分析,我们鉴定了由基因C11orf59编码的蛋白质。它主要通过N末端肉豆蔻酰化和棕榈酰化定位于晚期内体/溶酶体(LE / LY)区室。我们将其命名为Pdro,用于与DRM和内体相关的蛋白质。最近,有三项研究报道了同一蛋白质的另外两个名称:调节RhoA激活和肌动蛋白动力学的人类p27RF-Rho,以及通过MERK-ERK途径和溶酶体控制LE / LY动力学的啮齿类直向同源物p18。氨基酸激活雷帕霉素复合物1的哺乳动物靶标。我们发现,与C11orf59启动子区域中的固醇响应元件共有序列一致,Pdro mRNA和蛋白质表达水平受到细胞胆固醇消耗的正调控,而受细胞胆固醇负荷的负调控。相反,Pdro参与胆固醇稳态的调节,因为它被siRNA消耗后会增加细胞中游离胆固醇的含量,并伴随着胆固醇从细胞中的释放增加。另一方面,稳定过量表达Pdro的细胞显示出降低的细胞游离胆固醇含量。 Pdro耗竭介导的过量胆固醇至少部分是由于刺激的低密度脂蛋白(LDL)摄取和LE / LY胆固醇释放增加所致。结论/意义LDL衍生的胆固醇释放涉及LE / LY运动,这与肌动蛋白动力学有关。因为Pdro调节了这两个过程,所以我们提出响应于固醇水平的Pdro表达调节通过LDL摄取和LE / LY动力学调节LDL衍生的胆固醇,从而最终控制游离胆固醇的体内稳态。

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