癌蛋白TGAT的c端对于质膜结合和rhoa介导的有效信号传导是必需的。

Q1 Biochemistry, Genetics and Molecular Biology BMC Cell Biology Pub Date : 2018-06-07 DOI:10.1186/s12860-018-0155-2
J van Unen, D Botman, T Yin, Y I Wu, M A Hink, T W J Gadella, M Postma, J Goedhart
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引用次数: 5

摘要

背景:Rho鸟嘌呤交换因子(RhoGEFs)控制着细胞迁移、粘附和增殖等过程。RhoGEF Trio的选择性剪接产生TGAT。RhoGEF TGAT是一种具有组成性RhoGEF活性的癌蛋白。我们研究了TGAT的亚细胞位置是否对其RhoGEF活性至关重要。方法:由于质膜相关的rhogef在激活RhoA方面特别有效,因此我们检测了TGAT的质膜定位。为此,我们开发了一种高灵敏度的图像分析方法来定量测量质膜关联。该方法需要细胞质标记物和质膜标记物,它们与所标记的感兴趣的蛋白质共同成像。通过线性解混来测定目标蛋白荧光信号中的质膜和细胞质成分。结果:野生型TGAT与质膜部分共定位。引人注目的是,半胱氨酸tgat突变体在c尾缺乏一个或多个假定的棕榈酰化位点,仍然显示出膜关联。相反,缺少最后15个氨基酸的截断变体(TGATΔ15)失去了膜关联。通过使用RhoA fret传感器和测定f -肌动蛋白水平,我们发现TGAT的膜定位是高RhoGEF活性的原因。仍然保持膜结合的TGAT突变体表现出与野生型TGAT相似的活性。相比之下,胞质TGATΔ15变异体的活性被取消。合成募集TGATΔ15到膜上证实TGAT有效激活质膜上的RhoA。结论:综上所述,TGAT的膜结合对其活性至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The C-terminus of the oncoprotein TGAT is necessary for plasma membrane association and efficient RhoA-mediated signaling.

Background: Rho guanine exchange factors (RhoGEFs) control cellular processes such as migration, adhesion and proliferation. Alternative splicing of the RhoGEF Trio produces TGAT. The RhoGEF TGAT is an oncoprotein with constitutive RhoGEF activity. We investigated whether the subcellular location of TGAT is critical for its RhoGEF activity.

Methods: Since plasma membrane associated RhoGEFs are particularly effective at activating RhoA, plasma membrane localization of TGAT was examined. To this end, we developed a highly sensitive image analysis method to quantitatively measure plasma membrane association. The method requires a cytoplasmic marker and a plasma membrane marker, which are co-imaged with the tagged protein of interest. Linear unmixing is performed to determine the plasma membrane and cytoplasmic component in the fluorescence signal of protein of interest.

Results: The analysis revealed that wild-type TGAT is partially co-localized with the plasma membrane. Strikingly, cysteine TGAT-mutants lacking one or more putative palmitoylation sites in the C-tail, still showed membrane association. In contrast, a truncated variant, lacking the last 15 amino acids, TGATΔ15, lost membrane association. We show that membrane localization of TGAT was responsible for high RhoGEF activity by using a RhoA FRET-sensor and by determining F-actin levels. Mutants of TGAT that still maintained membrane association showed similar activity as wild-type TGAT. In contrast, the activity was abrogated for the cytoplasmic TGATΔ15 variant. Synthetic recruitment of TGATΔ15 to membranes confirmed that TGAT effectively activates RhoA at the plasma membrane.

Conclusion: Together, these results show that membrane association of TGAT is critical for its activity.

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来源期刊
BMC Cell Biology
BMC Cell Biology 生物-细胞生物学
CiteScore
7.30
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: BMC Molecular and Cell Biology, formerly known as BMC Cell Biology, is an open access journal that considers articles on all aspects of both eukaryotic and prokaryotic cell and molecular biology, including structural and functional cell biology, DNA and RNA in a cellular context and biochemistry, as well as research using both the experimental and theoretical aspects of physics to study biological processes and investigations into the structure of biological macromolecules.
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