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Alteration of Golgi apparatus ion homeostasis in cellular and mouse models of Angelman syndrome.

机译:高尔基体离子稳态在安格曼综合征细胞模型和小鼠模型中的变化。

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摘要

Ube3a is a HECT domain E3 ubiquitin ligase originally discovered as the protein factor required for the degradation of the oncogene p53 by the high-risk human papillomaviruses and later identified as the critical protein for the neurodevelopmental disorder Angelman syndrome. However, characterization of the endogenous properties of Ube3a has been limited and the mechanism underlying the pathogenesis of Angelman syndrome has not been elucidated. Given ubiquitous expression of Ube3a, we hypothesized Ube3a may regulate a general process required for proper cellular function. Over the last few years, an interesting cohort of Ube3a interacting partners and putative substrates have been named, including Golgi-localized proteins and proteins known to regulate secretory trafficking. Therefore, we hypothesized that Ube3a may regulate Golgi structure or function.;In this dissertation I define a new role for Ube3a function at the Golgi apparatus in the regulation of intralumenal ion homeostasis. A disruption in Golgi morphology by Ube3a overexpression in Clone 9 cells first suggested that Ube3a could regulate the structure of the Golgi apparatus. Cells with stable knockdown of Ube3a have altered Golgi morphology as shown by electron microscopy, with the Golgi appearing disorganized, overly fenestrated, and swollen. Next, we determined that the pH of the Golgi apparatus in Ube3a knockdown cells is significantly elevated, implying that the elevated Golgi pH is primary cause of the altered Golgi morphology in the Ube3a knockdown cells. Finally, we wanted to determine whether these results were applicable to the brain and Angelman syndrome. We found that the morphology of the Golgi structures in Ube3a(m-/p+) visual cortical neurons were greatly perturbed, and could be seen as swollen cisternae by electron microscopy and disorganized Golgi structures by immunohistochemistry. Thus, these results suggest a new role for Ube3a in the regulation of ion homeostasis at the Golgi apparatus, and this function is relevant for both non-neuronal and neuronal cell populations. This is predicted to lead to deficits in Golgi function, particularily in the glycosylation and proteolytic processing of nascent cargo. These findings provide new insight into the function of Ube3a and into the pathogenesis of Angelman syndrome.
机译:Ube3a是一种HECT域E3泛素连接酶,最初被发现是高危人乳头瘤病毒降解癌基因p53所需的蛋白质因子,后来被鉴定为神经发育障碍Angelman综合征的关键蛋白质。但是,Ube3a内源性的表征受到限制,并且尚未阐明Angelman综合征发病机理的机制。给定Ube3a的普遍表达,我们假设Ube3a可能调节正常细胞功能所需的一般过程。在过去的几年中,Ube3a相互作用伙伴和推定的底物的一个有趣的队列已经被命名,包括高尔基体定位蛋白和已知调节分泌运输的蛋白。因此,我们假设Ube3a可能调节高尔基体的结构或功能。在本文中,我定义了高尔基体中Ube3a的功能在调节腔内离子稳态中的新作用。 Ube3a在克隆9细胞中的过表达破坏了高尔基体的形态,这首先表明Ube3a可以调节高尔基体的结构。如电子显微镜所示,具有稳定敲除Ube3a的细胞已改变了高尔基体的形态,其中高尔基体表现出无序,过度开窗和肿胀。接下来,我们确定Ube3a敲低细胞中高尔基体的pH值显着升高,这意味着高尔基pH升高是Ube3a敲低细胞中高尔基体形态改变的主要原因。最后,我们想确定这些结果是否适用于大脑和Angelman综合征。我们发现,Ube3a(m- / p +)视觉皮层神经元中的高尔基体结构的形态受到了极大的干扰,并且通过电子显微镜可以看出其泡池是肿胀的,而免疫组织化学可以将其视为混乱的高尔基体结构。因此,这些结果暗示了Ube3a在高尔基体离子稳态调节中的新作用,并且该功能与非神经元和神经元细胞群有关。预计这会导致高尔基体功能下降,特别是新生货物的糖基化和蛋白水解加工。这些发现为Ube3a的功能和Angelman综合征的发病机理提供了新的见解。

著录项

  • 作者

    Condon, Kathryn Helen.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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