Mitochondrial transport and metabolism of the major methyl donor and versatile cofactor S-adenosylmethionine, and related diseases: A review†

被引:19
作者
Monne, Magnus [1 ,2 ]
Marobbio, Carlo M. T. [1 ]
Agrimi, Gennaro [1 ]
Palmieri, Luigi [1 ,3 ]
Palmieri, Ferdinando [1 ,3 ]
机构
[1] Univ Bari, Dept Biosci Biotechnol & Biopharmaceut, Via E Orabona 4, I-70125 Bari, Italy
[2] Univ Basilicata, Dept Sci, Potenza, Italy
[3] CNR, Inst Biomembranes Bioenerget & Mol Biotechnol IBI, Bari, Italy
关键词
S-adenosyl-L-methionine; diseases; metabolism; methyltransferase; mitochondria; mitochondrial carrier; mitochondrial transport; METHIONINE SYNTHASE REDUCTASE; HOMOCYSTEINE METHYLTRANSFERASE EXPRESSION; ELECTRON-TRANSFER FLAVOPROTEIN; TRANSMEMBRANE ALPHA-HELICES; PEPTIDE-SPECIFIC ANTIBODIES; DOMINANT CEREBELLAR-ATAXIA; COQ5; C-METHYLTRANSFERASE; AMINO-ACID-RESIDUES; CARRIER FAMILY 25; RAT-LIVER;
D O I
10.1002/iub.2658
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
S-adenosyl-L-methionine (SAM) is a coenzyme and the most commonly used methyl-group donor for the modification of metabolites, DNA, RNA and proteins. SAM biosynthesis and SAM regeneration from the methylation reaction product S-adenosyl-L-homocysteine (SAH) take place in the cytoplasm. Therefore, the intramitochondrial SAM-dependent methyltransferases require the import of SAM and export of SAH for recycling. Orthologous mitochondrial transporters belonging to the mitochondrial carrier family have been identified to catalyze this antiport transport step: Sam5p in yeast, SLC25A26 (SAMC) in humans, and SAMC1-2 in plants. In mitochondria SAM is used by a vast number of enzymes implicated in the following processes: the regulation of replication, transcription, translation, and enzymatic activities; the maturation and assembly of mitochondrial tRNAs, ribosomes and protein complexes; and the biosynthesis of cofactors, such as ubiquinone, lipoate, and molybdopterin. Mutations in SLC25A26 and mitochondrial SAM-dependent enzymes have been found to cause human diseases, which emphasizes the physiological importance of these proteins.
引用
收藏
页码:573 / 591
页数:19
相关论文
共 191 条
[1]   Mutations in NSUN2 Cause Autosomal-Recessive Intellectual Disability [J].
Abbasi-Moheb, Lia ;
Mertel, Sara ;
Gonsior, Melanie ;
Nouri-Vahid, Leyla ;
Kahrizi, Kimia ;
Cirak, Sebahattin ;
Wieczorek, Dagmar ;
Motazacker, M. Mahdi ;
Esmaeeli-Nieh, Sahar ;
Cremer, Kirsten ;
Weissmann, Robert ;
Tzschach, Andreas ;
Garshasbi, Masoud ;
Abedini, Seyedeh S. ;
Najmabadi, Hossein ;
Ropers, H. Hilger ;
Sigrist, Stephan J. ;
Kuss, Andreas W. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2012, 90 (05) :847-855
[2]   Identification of the human mitochondrial S-adenosylmethionine transporter:: bacterial expression, reconstitution, functional characterization and tissue distribution [J].
Agrimi, G ;
Di Noia, MA ;
Marobbio, CMT ;
Fiermonte, G ;
Lasorsa, FM ;
Palmieri, F .
BIOCHEMICAL JOURNAL, 2004, 379 :183-190
[3]   HUMAN NICOTINAMIDE N-METHYLTRANSFERASE GENE - MOLECULAR-CLONING, STRUCTURAL CHARACTERIZATION AND CHROMOSOMAL LOCALIZATION [J].
AKSOY, S ;
BRANDRIFF, BF ;
WARD, A ;
LITTLE, PFR ;
WEINSHILBOUM, RM .
GENOMICS, 1995, 29 (03) :555-561
[4]   CHARACTERIZATION OF A FULL-LENGTH CDNA-ENCODING HUMAN LIVER S-ADENOSYLMETHIONINE SYNTHETASE - TISSUE-SPECIFIC GENE-EXPRESSION AND MESSENGER-RNA LEVELS IN HEPATOPATHIES [J].
ALVAREZ, L ;
CORRALES, F ;
MARTINDUCE, A ;
MATO, JM .
BIOCHEMICAL JOURNAL, 1993, 293 :481-486
[5]   Variant non ketotic hyperglycinemia is caused by mutations in LIAS, BOLA3 and the novel gene GLRX5 [J].
Baker, Peter R., II ;
Friederich, Marisa W. ;
Swanson, Michael A. ;
Shaikh, Tamim ;
Bhattacharya, Kaustuv ;
Scharer, Gunter H. ;
Aicher, Joseph ;
Creadon-Swindell, Geralyn ;
Geiger, Elizabeth ;
MacLean, Kenneth N. ;
Lee, Wang-Tso ;
Deshpande, Charu ;
Freckmann, Mary-Louise ;
Shih, Ling-Yu ;
Wasserstein, Melissa ;
Rasmussen, Malene B. ;
Lund, Allan M. ;
Procopis, Peter ;
Cameron, Jessie M. ;
Robinson, Brian H. ;
Brown, Garry K. ;
Brown, Ruth M. ;
Compton, Alison G. ;
Dieckmann, Carol L. ;
Collard, Renata ;
Coughlin, Curtis R., II ;
Spector, Elaine ;
Wempe, Michael F. ;
Van Hove, Johan L. K. .
BRAIN, 2014, 137 :366-379
[6]   Mitochondrial 16S rRNA Is Methylated by tRNA Methyltransferase TRMT61B in All Vertebrates [J].
Bar-Yaacov, Dan ;
Frumkin, Idan ;
Yashiro, Yuka ;
Chujo, Takeshi ;
Ishigami, Yuma ;
Chemla, Yonatan ;
Blumberg, Amit ;
Schlesinger, Orr ;
Bieri, Philipp ;
Greber, Basil ;
Ban, Nenad ;
Zarivach, Raz ;
Alfonta, Lital ;
Pilpel, Yitzhak ;
Suzuki, Tsutomu ;
Mishmar, Dan .
PLOS BIOLOGY, 2016, 14 (09)
[7]   Depletion of mitochondrial methionine adenosyltransferase α1 triggers mitochondrial dysfunction in alcohol-associated liver disease [J].
Barbier-Torres, Lucia ;
Murray, Ben ;
Yang, Jin Won ;
Wang, Jiaohong ;
Matsuda, Michitaka ;
Robinson, Aaron ;
Binek, Aleksandra ;
Fan, Wei ;
Fernandez-Ramos, David ;
Lopitz-Otsoa, Fernando ;
Luque-Urbano, Maria ;
Millet, Oscar ;
Mavila, Nirmala ;
Peng, Hui ;
Ramani, Komal ;
Gottlieb, Roberta ;
Sun, Zhaoli ;
Liangpunsakul, Suthat ;
Seki, Ekihiro ;
Van Eyk, Jennifer E. ;
Mato, Jose M. ;
Lu, Shelly C. .
NATURE COMMUNICATIONS, 2022, 13 (01)
[8]   S-adenosylhomocysteine hydrolase deficiency in a human:: A genetic disorder of methionine metabolism [J].
Baric, I ;
Fumic, K ;
Glenn, B ;
Cuk, M ;
Schulze, A ;
Finkelstein, JD ;
James, SJ ;
Mejaski-Bosnjak, V ;
Pazanin, L ;
Pogribny, IP ;
Rados, M ;
Sarnavka, V ;
Scukanec-Spoljar, M ;
Allen, RH ;
Stabler, S ;
Uzelac, L ;
Vugrek, O ;
Wagner, C ;
Zeisel, S ;
Mudd, SH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (12) :4234-4239
[9]   Methionine synthase and methionine synthase reductase interact with MMACHC and with MMADHC [J].
Bassila, Christine ;
Ghemrawi, Rose ;
Flayac, Justine ;
Froese, D. Sean ;
Baumgartner, Matthias R. ;
Gueant, Jean-Louis ;
Coelho, David .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2017, 1863 (01) :103-112
[10]   The Control Region of Mitochondrial DNA Shows an Unusual CpG and Non-CpG Methylation Pattern [J].
Bellizzi, Dina ;
D'Aquila, Patrizia ;
Scafone, Teresa ;
Giordano, Marco ;
Riso, Vincenzo ;
Riccio, Andrea ;
Passarino, Giuseppe .
DNA RESEARCH, 2013, 20 (06) :537-547