PO.MCB04.02 · 分子与细胞生物学

核膜蛋白LEM2与内质网应激信号通路之间的联系为肿瘤发展特征提供新见解

A link between the nuclear envelope protein LEM2 and an endoplasmic reticulum stress signaling pathway provides new insight into features of tumor development

海报缩略图:核膜蛋白LEM2与内质网应激信号通路之间的联系为肿瘤发展特征提供新见解
编号 6004 展板 5 时间 4/21 02:00–05:00 区域 Section 24 主讲 Natasha Saik, BS;PhD
分会场 Senescence and Cell Stress
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作者与单位 Authors & Affiliations

Natasha O. Saik1, Maho Niwa2, Katharine S. Ullman1

1Oncological Sciences, Univ. of Utah Huntsman Cancer Inst., Salt Lake City, UT,2Molecular Biology, University of California San Diego, School of Biological Studies, San Diego, CA

摘要 Abstract

中文摘要
癌症常与某些核膜(NE)蛋白水平降低相关,这导致核形状不规则或核畸形。核畸形可反映核完整性受损和DNA修复功能受损,二者共同驱动基因组不稳定和肿瘤发展。因此,核膜蛋白(包括LEM结构域蛋白)的表达水平正成为肿瘤检测、分类和患者预后的信息性生物标志物。鉴于LEM2这一核膜相关LEM结构域蛋白在多种癌症中发生改变,我们探究了LEM2缺失对与癌症进展相关的表型结果的影响。传统上,核膜蛋白在癌症表型中的作用是在其经典核功能的背景下研究的。然而,文献中的线索提示LEM2参与调控一个物理相连的细胞器——内质网(ER)。尽管包裹细胞核的膜(即核膜)与内质网之间存在功能耦合和物理连续性,但源自细胞核的变化如何影响内质网组织和稳态仍知之甚少。因此,我们检验了破坏LEM2是否影响内质网稳态——这是癌症进展的一个重要调控因素。当内质网稳态被破坏时,未折叠蛋白反应(UPR)通路通过转录程序将内质网应激信号传递至细胞核,以缓解内质网应激并促进细胞存活。癌细胞常利用UPR的适应性特征,UPR组分已成为预测治疗反应和预后的有前景的生物标志物。在此,我们鉴定了一种新的核到内质网通讯机制,其中LEM2的缺失触发UPR某一特定分支的非经典激活。由LEM2缺失激活的UPR似乎并非响应经典的蛋白毒性应激,而是源于特定脂质的改变。我们的发现定义了一条新的核到内质网信号轴,核膜通过该轴调节内质网中脂质介导的UPR活性。正在进行的工作旨在确定这一核到内质网通路如何影响其他癌症表型,并剖析核膜扰动如何改变内质网脂质稳态以激活UPR。更广泛地说,揭示核膜-内质网通讯的细胞器间调控机制为深入认识肿瘤发展提供了一个新框架。
查看英文原文 English abstract
Cancer is often associated with reduced levels of certain nuclear envelope (NE) proteins, which contributes to irregularly shaped nuclei or nuclear dysmorphia. Nuclear dysmorphia can reflect compromised nuclear integrity and impaired DNA repair, which together can drive genomic instability and tumor development. Accordingly, expression levels of NE proteins-including LEM-domain proteins-are emerging as informative biomarkers for tumor detection, classification, and patient prognosis. Given that LEM2, an NE-associated LEM-domain protein, is altered in multiple cancers, we explored the effects of LEM2 depletion on phenotypic outcomes associated with cancer progression. Traditionally, the role of NE proteins in cancer phenotypes has been studied within the context of their canonical nuclear roles. However, hints from the literature suggest LEM2 contributes to the regulation of a physically connected organelle, the endoplasmic reticulum (ER). Despite the functional coupling and the physical continuity between the membranes that enclose the nucleus -the NE- and the ER, how changes originating in the nucleus influence ER organization and homeostasis remains poorly understood. Therefore, we examined whether disrupting LEM2 affects ER homeostasis-an important regulator of cancer progression. When ER homeostasis is disrupted, the unfolded protein response (UPR) pathway relays ER stress signals to the nucleus via transcriptional programs to alleviate ER stress and promote cell survival. Cancer cells often exploit the adaptive features of the UPR, and UPR components have emerged as promising biomarkers for predicting treatment response and prognosis. Here, we identify a novel mechanism of nucleus-to-ER communication in which loss of LEM2 triggers non-canonical activation of a specific branch of the UPR. Rather than responding to classic proteotoxic stress, the UPR activated by LEM2 depletion appears to arise from alterations in specific lipids. Our findings define a novel nucleus-to-ER signaling axis through which the NE modulates lipid-mediated UPR activity in the ER. Ongoing work aims to determine how this nucleus-to-ER pathway affects additional cancer phenotypes and to dissect how NE perturbations alter ER lipid homeostasis to activate the UPR. More broadly, uncovering the inter-organelle regulatory mechanisms of NE-ER communication provides a novel framework for gaining insight into tumor development.
利益披露 Disclosure
N. O. Saik, None.. M. Niwa, None.. K. S. Ullman, None.

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