Diacylglycerol Kinase η Activity in Cells Using Protein Myristoylation and Cellular Phosphatidic Acid Sensor

IF 1.8 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lipids Pub Date : 2021-02-24 DOI:10.1002/lipd.12301
Ayuka Ishizaki, Chiaki Murakami, Haruka Yamada, Fumio Sakane
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引用次数: 1

Abstract

Diacylglycerol kinase (DGK) phosphorylates diacylglycerol to produce phosphatidic acid (PtdOH) and regulates the balance between two lipid second messengers: diacylglycerol and PtdOH. Several lines of evidence suggest that the η isozyme of DGK is involved in the pathogenesis of bipolar disorder. However, the detailed molecular mechanisms regulating the pathophysiological functions remain unclear. One reason is that it is difficult to detect the cellular activity of DGKη. To overcome this difficulty, we utilized protein myristoylation and a cellular PtdOH sensor, the N-terminal region of α-synuclein (α-Syn-N). Although DGKη expressed in COS-7 cells was broadly distributed in the cytoplasm, myristoylated (Myr)-AcGFP-DGKη and Myr-AcGFP-DGKη-KD (inactive (kinase-dead) mutant) were substantially localized in the plasma membrane. Moreover, DsRed monomer-α-Syn-N significantly colocalized with Myr-AcGFP-DGKη but not Myr-AcGFP-DGKη-KD at the plasma membrane. When COS-7 cells were osmotically shocked, all DGKη constructs were exclusively translocated to osmotic shock-responsive granules (OSRG). DsRed monomer-α-Syn-N markedly colocalized with only Myr-AcGFP-DGKη at OSRG and exhibited a higher signal/background ratio (3.4) than Myr-AcGFP-DGKη at the plasma membrane in unstimulated COS-7 cells (2.5), indicating that α-Syn-N more effectively detects Myr-AcGFP-DGKη activity in OSRG. Therefore, these results demonstrated that the combination of myristoylation and the PtdOH sensor effectively detects DGKη activity in cells and that this method is convenient to examine the molecular functions of DGKη. Moreover, this method will be useful for the development of drugs targeting DGKη. Furthermore, the combination of myristoylation (intensive accumulation in membranes) and α-Syn-N can be applicable to assays for various cytosolic PtdOH-generating enzymes.

利用蛋白肉豆蔻酰化和细胞磷脂酸传感器测定细胞中二酰基甘油激酶η活性
二酰基甘油激酶(DGK)磷酸化二酰基甘油产生磷脂酸(PtdOH),并调节两种脂质第二信使:二酰基甘油和PtdOH之间的平衡。一些证据表明DGK的η同工酶参与双相情感障碍的发病机制。然而,调控其病理生理功能的详细分子机制尚不清楚。其中一个原因是很难检测到DGKη的细胞活性。为了克服这一困难,我们利用蛋白肉豆肉酰化和细胞PtdOH传感器,α-突触核蛋白(α-Syn-N)的n端区域。虽然COS-7细胞中表达的DGKη广泛分布在细胞质中,但肉豆醇化(Myr)-AcGFP-DGKη和Myr-AcGFP-DGKη- kd(失活(激酶死亡)突变体)基本上定位在质膜中。此外,DsRed单体-α-Syn-N在质膜上与Myr-AcGFP-DGKη显著共定位,而与Myr-AcGFP-DGKη- kd不显著共定位。当COS-7细胞受到渗透休克时,所有DGKη构建体都被转移到渗透休克反应颗粒(OSRG)上。在未受刺激的COS-7细胞中,DsRed单体-α-Syn-N在OSRG中仅与Myr-AcGFP-DGKη显著共定位,且在质膜上的信号/背景比(3.4)高于Myr-AcGFP-DGKη(2.5),表明α-Syn-N能更有效地检测OSRG中Myr-AcGFP-DGKη活性。因此,这些结果表明,肉豆肉酰化与PtdOH传感器的结合可以有效地检测细胞中DGKη的活性,并且该方法便于检测DGKη的分子功能。此外,该方法将为开发靶向DGKη的药物提供参考。此外,肉豆肉酰化(在膜上的密集积累)和α-Syn-N的结合可以适用于各种细胞质中ptdoh生成酶的测定。
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来源期刊
Lipids
Lipids 生物-生化与分子生物学
CiteScore
4.20
自引率
5.30%
发文量
33
审稿时长
4-8 weeks
期刊介绍: Lipids is a journal of the American Oil Chemists'' Society (AOCS) that focuses on publishing high-quality peer-reviewed papers and invited reviews in the general area of lipid research, including chemistry, biochemistry, clinical nutrition, and metabolism. In addition, Lipids publishes papers establishing novel methods for addressing research questions in the field of lipid research.
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