The Structure and Function of Acylglycerophosphate Acyltransferase 4/Lysophosphatidic Acid Acyltransferase Delta (AGPAT4/LPAATδ)

被引:22
作者
Zhukovsky, Mikhail A. [1 ,2 ]
Filograna, Angela [1 ,2 ]
Luini, Alberto [1 ,2 ]
Corda, Daniela [1 ,2 ]
Valente, Carmen [1 ,2 ]
机构
[1] CNR, Inst Biochem & Cell Biol, Naples, Italy
[2] CNR, Inst Prot Biochem, Naples, Italy
来源
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY | 2019年 / 7卷
关键词
acyltransferase; AGPAT; LPAAT; phosphatidic acid; lysophosphatidic acid; Golgi complex; membrane fission; BARS; POLYUNSATURATED FATTY-ACIDS; PHOSPHATIDIC-ACID; LYSOPHOSPHATIDIC ACID; DIACYLGLYCEROL ACYLTRANSFERASE-2; ENDOPLASMIC-RETICULUM; MEMBRANE-PROTEINS; DOCOSAHEXAENOIC ACID; HEPATIC STEATOSIS; SYNAPTIC RIBBON; GOLGI-COMPLEX;
D O I
10.3389/fcell.2019.00147
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Lipid-modifying enzymes serve crucial roles in cellular processes such as signal transduction (producing lipid-derived second messengers), intracellular membrane transport (facilitating membrane remodeling needed for membrane fusion/fission), and protein clustering (organizing lipid domains as anchoring platforms). The lipid products crucial in these processes can derive from different metabolic pathways, thus it is essential to know the localization, substrate specificity, deriving products (and their function) of all lipid-modifying enzymes. Here we discuss an emerging family of these enzymes, the lysophosphatidic acid acyltransferases (LPAATs), also known as acylglycerophosphate acyltransferases (AGPATs), that produce phosphatidic acid (PA) having as substrates lysophosphatidic acid (LPA) and acyl-CoA. Eleven LPAAT/AGPAT enzymes have been identified in mice and humans based on sequence homologies, and their localization, specific substrates and functions explored. We focus on one member of the family, LPAAT delta, a protein expressed mainly in brain and in muscle (though to a lesser extent in other tissues); while at the cellular level it is localized at the trans-Golgi network membranes and at the mitochondrial outer membranes. LPAAT delta is a physiologically essential enzyme since mice knocked-out for Lpaat delta show severe dysfunctions including cognitive impairment, impaired force contractility and altered white adipose tissue. The LPAAT delta physiological roles are related to the formation of its product PA. PA is a multifunctional lipid involved in cell signaling as well as in membrane remodeling. In particular, the LPAAT delta-catalyzed conversion of LPA (invertedcone-shaped lipid) to PA (cone-shaped lipid) is considered a mechanism of deformation of the bilayer that favors membrane fission. Indeed, LPAAT delta is an essential component of the fission-inducing machinery driven by the protein BARS. In this process, a protein-tripartite complex (BARS/14-3-3 gamma/phosphoinositide kinase PI4KIII beta) is recruited at the trans-Golgi network, at the sites where membrane fission is to occur; there, LPAAT delta directly interacts with BARS and is activated by BARS. The resulting formation of PA is essential for membrane fission occurring at those spots. Also in mitochondria PA formation has been related to fusion/fission events. Since PA is formed by various enzymatic pathways in different cell compartments, the BARS-LPAAT delta interaction indicates the relevance of lipid-modifying enzymes acting exactly where their products are needed (i.e., PA at the Golgi membranes).
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页数:14
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共 114 条
  • [21] The Golgi mitotic checkpoint is controlled by BARS-dependent fission of the Golgi ribbon into separate stacks in G2
    Colanzi, Antonino
    Carcedo, Cristina Hidalgo
    Persico, Angela
    Cericola, Claudia
    Turacchio, Gabriele
    Bonazzi, Matteo
    Luini, Alberto
    Corda, Daniela
    [J]. EMBO JOURNAL, 2007, 26 (10) : 2465 - 2476
  • [22] Molecular mechanism and functional role of brefeldin A-mediated ADP-ribosylation of CtBP1/BARS
    Colanzi, Antonino
    Grimaldi, Giovanna
    Catara, Giuliana
    Valente, Carmen
    Cericola, Claudia
    Liberali, Prisca
    Ronci, Maurizio
    Lalioti, Vasiliki S.
    Bruno, Agostino
    Beccari, Andrea R.
    Urbani, Andrea
    De Flora, Antonio
    Nardini, Marco
    Bolognesi, Martino
    Luini, Alberto
    Corda, Daniela
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (24) : 9794 - 9799
  • [23] Mammalian Triacylglycerol Metabolism: Synthesis, Lipolysis, and Signaling
    Coleman, Rosalind A.
    Mashek, Douglas G.
    [J]. CHEMICAL REVIEWS, 2011, 111 (10) : 6359 - 6386
  • [24] N-myristoylation determines dual targeting of mammalian NADH-cytochrome b(5) reductase to ER and mitochondrial outer membranes by a mechanism of kinetic partitioning
    Colombo, S
    Longhi, R
    Alcaro, S
    Ortuso, F
    Sprocati, T
    Flora, A
    Borgese, N
    [J]. JOURNAL OF CELL BIOLOGY, 2005, 168 (05) : 735 - 745
  • [25] The multiple activities of CtBP/BARS proteins: the Golgi view
    Corda, D
    Colanzi, A
    Luini, A
    [J]. TRENDS IN CELL BIOLOGY, 2006, 16 (03) : 167 - 173
  • [26] Biological activities and metabolism of the lysophosphoinositides and glycerophosphoinositols
    Corda, D
    Iurisci, C
    Berrie, CP
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2002, 1582 (1-3): : 52 - 69
  • [27] Proline-induced distortions of transmembrane helices
    Cordes, FS
    Bright, JN
    Sansom, MSP
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2002, 323 (05) : 951 - 960
  • [28] Molecular Mechanisms of Hepatic Steatosis and Insulin Resistance in the AGPAT2-Deficient Mouse Model of Congenital Generalized Lipodystrophy
    Cortes, Victor A.
    Curtis, David E.
    Sukumaran, Suja
    Shao, Xinli
    Parameswara, Vinay
    Rashid, Shirya
    Smith, Amy R.
    Ren, Jimin
    Esser, Victoria
    Hammer, Robert E.
    Agarwal, Anil K.
    Horton, Jay D.
    Garg, Abhimanyu
    [J]. CELL METABOLISM, 2009, 9 (02) : 165 - 176
  • [29] LIPID POLYMORPHISM AND THE FUNCTIONAL ROLES OF LIPIDS IN BIOLOGICAL-MEMBRANES
    CULLIS, PR
    DEKRUIJFF, B
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1979, 559 (04) : 399 - 420
  • [30] Membrane Remodeling by a Bacterial Phospholipid-Methylating Enzyme
    Danne, Linna
    Aktas, Meriyem
    Unger, Andreas
    Linke, Wolfgang A.
    Erdmann, Ralf
    Narberhaus, Franz
    [J]. MBIO, 2017, 8 (01):