Literature DB >> 22325614

Genetically encoded probes for phosphatidic acid.

Nawal Kassas1, Petra Tryoen-Tóth, Matthias Corrotte, Tamou Thahouly, Marie-France Bader, Nancy J Grant, Nicolas Vitale.   

Abstract

In addition to forming bilayers to separate cellular compartments, lipids participate in vesicular trafficking and signal transduction. Among others, phosphatidic acid (PA) is emerging as an important signaling molecule. The spatiotemporal distribution of cellular PA appears to be tightly regulated by localized synthesis and a rapid metabolism. Although PA has been long proposed as a pleiotropic bioactive lipid, when and where PA is produced in the living cells have only recently been explored using biosensors that specifically bind to PA. The probes that we have generated are composed of the PA-binding domains of either Spo20p or Raf1 directly fused to GFP. In this chapter, we will describe the expression and purification of GST-fusion proteins of these probes, and the use of phospholipid strips to validate the specificity of their interaction with PA. We will then illustrate the use of GFP-tagged probes to visualize the synthesis of PA in the neurosecretory PC12 cells and RAW 267.4 macrophages. Interestingly, the two probes show a differential distribution in these cell types, indicating that they may have different affinities for PA or recognize different pools of PA. In conclusion, the development of a broader choice of probes may be required to adequately follow the complex dynamics of PA in different cell types, in order to determine the cellular distribution of PA and its role in various cellular processes.
Copyright © 2012 Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22325614     DOI: 10.1016/B978-0-12-386487-1.00020-1

Source DB:  PubMed          Journal:  Methods Cell Biol        ISSN: 0091-679X            Impact factor:   1.441


  27 in total

Review 1.  Quantifying lipid changes in various membrane compartments using lipid binding protein domains.

Authors:  Péter Várnai; Gergő Gulyás; Dániel J Tóth; Mira Sohn; Nivedita Sengupta; Tamas Balla
Journal:  Cell Calcium       Date:  2016-12-31       Impact factor: 6.817

2.  A Chemoenzymatic Strategy for Imaging Cellular Phosphatidic Acid Synthesis.

Authors:  Timothy W Bumpus; Jeremy M Baskin
Journal:  Angew Chem Int Ed Engl       Date:  2016-10-10       Impact factor: 15.336

3.  The Coffin-Lowry syndrome-associated protein RSK2 regulates neurite outgrowth through phosphorylation of phospholipase D1 (PLD1) and synthesis of phosphatidic acid.

Authors:  Mohamed-Raafet Ammar; Yann Humeau; André Hanauer; Bernard Nieswandt; Marie-France Bader; Nicolas Vitale
Journal:  J Neurosci       Date:  2013-12-11       Impact factor: 6.167

4.  Phosphatidylinositol-Phosphatidic Acid Exchange by Nir2 at ER-PM Contact Sites Maintains Phosphoinositide Signaling Competence.

Authors:  Yeun Ju Kim; Maria-Luisa Guzman-Hernandez; Eva Wisniewski; Tamas Balla
Journal:  Dev Cell       Date:  2015-05-28       Impact factor: 12.270

5.  Comparative Characterization of Phosphatidic Acid Sensors and Their Localization during Frustrated Phagocytosis.

Authors:  Nawal Kassas; Emeline Tanguy; Tamou Thahouly; Laetitia Fouillen; Dimitri Heintz; Sylvette Chasserot-Golaz; Marie-France Bader; Nancy J Grant; Nicolas Vitale
Journal:  J Biol Chem       Date:  2017-01-23       Impact factor: 5.157

6.  ADP ribosylation factor 6 (ARF6) promotes acrosomal exocytosis by modulating lipid turnover and Rab3A activation.

Authors:  Leonardo E Pelletán; Laila Suhaiman; Cintia C Vaquer; Matías A Bustos; Gerardo A De Blas; Nicolas Vitale; Luis S Mayorga; Silvia A Belmonte
Journal:  J Biol Chem       Date:  2015-02-20       Impact factor: 5.157

7.  A real-time, click chemistry imaging approach reveals stimulus-specific subcellular locations of phospholipase D activity.

Authors:  Dongjun Liang; Kane Wu; Reika Tei; Timothy W Bumpus; Johnny Ye; Jeremy M Baskin
Journal:  Proc Natl Acad Sci U S A       Date:  2019-07-16       Impact factor: 11.205

Review 8.  Unraveling the mechanisms that specify molecules for secretion in extracellular vesicles.

Authors:  Andrew M Leidal; Jayanta Debnath
Journal:  Methods       Date:  2020-01-21       Impact factor: 3.608

9.  Temporal production of the signaling lipid phosphatidic acid by phospholipase D2 determines the output of extracellular signal-regulated kinase signaling in cancer cells.

Authors:  Feng Zhang; Ziqing Wang; Maryia Lu; Yoshiya Yonekubo; Xiao Liang; Yueqiang Zhang; Ping Wu; Yong Zhou; Sergio Grinstein; John F Hancock; Guangwei Du
Journal:  Mol Cell Biol       Date:  2013-10-28       Impact factor: 4.272

Review 10.  Guidelines for the Use of Protein Domains in Acidic Phospholipid Imaging.

Authors:  Matthieu Pierre Platre; Yvon Jaillais
Journal:  Methods Mol Biol       Date:  2016
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