PGSE是调节哺乳动物高尔基应激反应蛋白聚糖途径的新型增强子。

IF 2 4区 生物学 Q4 CELL BIOLOGY
Cell structure and function Pub Date : 2019-01-11 Epub Date: 2018-11-28 DOI:10.1247/csf.18031
Kanae Sasaki, Ryota Komori, Mai Taniguchi, Akie Shimaoka, Sachiko Midori, Mayu Yamamoto, Chiho Okuda, Ryuya Tanaka, Miyu Sakamoto, Sadao Wakabayashi, Hiderou Yoshida
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引用次数: 13

摘要

高尔基应激反应是一种体内平衡机制,当高尔基体功能不足时,它会增强高尔基体的功能。在哺乳动物细胞中,高尔基应激反应的三种反应途径分别为TFE3、HSP47和CREB3,它们分别增强了n -糖基化、抗凋亡活性和促凋亡活性等特定高尔基功能的能力。相反,蛋白聚糖(pg)的糖基化是高尔基体的另一个重要功能,尽管在高尔基体应激下上调pg糖基化酶表达的反应途径尚不清楚。本研究发现,高尔基体中PG糖基化能力不足会诱导PG糖基化酶的表达(PG-高尔基胁迫),编码PG糖基化酶基因的转录诱导与已知的高尔基胁迫反应途径和内质网应激反应无关。对编码这些糖基化酶基因的启动子分析发现了新的增强子元件PGSE-A和PGSE-B(共识序列分别为CCGGGGCGGGGCG和TTTTACAATTGGTC),它们调节了pg -高基胁迫下的转录诱导。根据这些观察,我们发现的反应通路是一种新的高尔基应激反应通路,我们将其命名为PG通路。关键词:高尔基应激,蛋白聚糖,内质网应激,细胞器区,细胞器自调节
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PGSE Is a Novel Enhancer Regulating the Proteoglycan Pathway of the Mammalian Golgi Stress Response.

The Golgi stress response is a homeostatic mechanism that augments the functional capacity of the Golgi apparatus when Golgi function becomes insufficient (Golgi stress). Three response pathways of the Golgi stress response have been identified in mammalian cells, the TFE3, HSP47 and CREB3 pathways, which augment the capacity of specific Golgi functions such as N-glycosylation, anti-apoptotic activity and pro-apoptotic activity, respectively. On the contrary, glycosylation of proteoglycans (PGs) is another important function of the Golgi, although the response pathway upregulating expression of glycosylation enzymes for PGs in response to Golgi stress remains unknown. Here, we found that expression of glycosylation enzymes for PGs was induced upon insufficiency of PG glycosylation capacity in the Golgi (PG-Golgi stress), and that transcriptional induction of genes encoding glycosylation enzymes for PGs was independent of the known Golgi stress response pathways and ER stress response. Promoter analyses of genes encoding these glycosylation enzymes revealed the novel enhancer elements PGSE-A and PGSE-B (the consensus sequences are CCGGGGCGGGGCG and TTTTACAATTGGTC, respectively), which regulate their transcriptional induction upon PG-Golgi stress. From these observations, the response pathway we discovered is a novel Golgi stress response pathway, which we have named the PG pathway.Key words: Golgi stress, proteoglycan, ER stress, organelle zone, organelle autoregulation.

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来源期刊
Cell structure and function
Cell structure and function 生物-细胞生物学
CiteScore
2.50
自引率
0.00%
发文量
6
审稿时长
>12 weeks
期刊介绍: Cell Structure and Function is a fully peer-reviewed, fully Open Access journal. As the official English-language journal of the Japan Society for Cell Biology, it is published continuously online and biannually in print. Cell Structure and Function publishes important, original contributions in all areas of molecular and cell biology. The journal welcomes the submission of manuscripts on research areas such as the cell nucleus, chromosomes, and gene expression; the cytoskeleton and cell motility; cell adhesion and the extracellular matrix; cell growth, differentiation and death; signal transduction; the protein life cycle; membrane traffic; and organelles.
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