The Human and Mouse SLC25A29 Mitochondrial Transporters Rescue the Deficient Ornithine Metabolism in Fibroblasts of Patients With the Hyperornithinemia-Hyperammonemia-Homocitrullinuria (HHH) Syndrome

被引:23
作者
Camacho, Jose A. [1 ]
Rioseco-Camacho, Natalia [1 ]
机构
[1] Univ Calif Irvine, Dept Pediat, Div Human Genet & Metab, Irvine, CA 92697 USA
关键词
CARNITINE-ACYLCARNITINE TRANSLOCASE; SUBSTRATE; DISORDER; MUTATION; CARRIERS; ORNT1;
D O I
10.1203/PDR.0b013e3181a283c1
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
The hyperornithinemia-hyperammonemia-homocitrullinuria (HHH) syndrome is a disorder of the urea cycle (UCD) and ornithine degradation pathway caused by mutations in the mitochondrial ornithine transporter (ORNT1). Unlike other UCDs, HHH syndrome is characterized by a less severe and variable phenotype that we believe may, in part, be due to genes with redundant function to ORNT1, such as the previously characterized ORNT2 gene. We reasoned that SLC25A29, a member of the same subfamily of mitochondrial carrier proteins as ORNT1 and ORNT2, might also have overlapping function with ORNT1. Here, we report that both the human and mouse SLC25A29, previously identified as mitochondrial carnitine/acyl-carnitine transporter-like, when overexpressed transiently also rescues the impaired ornithine transport in cultured HHH fibroblasts. Moreover, we observed that, in the mouse, the Slc25a29 message is more significantly expressed in the CNS and cultured astrocytes when compared with the liver and kidney. These results suggest a potential physiologic role for the SLC25A29 transporter in the oxidation of fatty acids, ornithine degradation pathway, and possibly the urea cycle. Our results show that SLC25A29 is the third human mitochondrial ornithine transporter, designated as ORNT3, which may contribute to the milder and variable phenotype seen in patients with HHH syndrome. (Pediatr Res 66: 35-41, 2009)
引用
收藏
页码:35 / 41
页数:7
相关论文
共 19 条
[1]  
Blázquez C, 1998, J NEUROCHEM, V71, P1597
[2]   Cloning and characterization of human ORNT2: a second mitochondrial ornithine transporter that can rescue a defective ORNT1 in patients with the hyperornithinemia-hyperammonemia-homocitrullinuria syndrome, a urea cycle disorder [J].
Camacho, JA ;
Rioseco-Camacho, N ;
Andrade, D ;
Porter, J ;
Kong, J .
MOLECULAR GENETICS AND METABOLISM, 2003, 79 (04) :257-271
[3]   Hyperornithinaemia-hyperammonaemia-homocitrullinuria syndrome is caused by mutations in a gene encoding a mitochondrial ornithine transporter [J].
Camacho, JA ;
Obie, C ;
Biery, B ;
Goodman, BK ;
Hu, CA ;
Almashanu, S ;
Steel, G ;
Casey, R ;
Lambert, M ;
Mitchell, GA ;
Valle, D .
NATURE GENETICS, 1999, 22 (02) :151-158
[4]   Clinical and functional characterization of a human ORNT1 mutation (T32R) in the hyperornithinemia-hyperammonemia-homocitrullinuria (HHH) syndrome [J].
Camacho, Jose A. ;
Mardach, Rebecca ;
Rioseco-Camacho, Natalia ;
Ruiz-Pesini, Eduardo ;
Derbeneva, Olga ;
Andrade, Dario ;
Zaldivar, Frank ;
Qu, Yong ;
Cederbaum, Stephen D. .
PEDIATRIC RESEARCH, 2006, 60 (04) :423-429
[5]   Evidence Based Selection of Housekeeping Genes [J].
de Jonge, Hendrik J. M. ;
Fehrmann, Rudolf S. N. ;
de Bont, Eveline S. J. M. ;
Hofstra, Robert M. W. ;
Gerbens, Frans ;
Kamps, Willem A. ;
de Vries, Elisabeth G. E. ;
van der Zee, Ate G. J. ;
Meerman, Gerard J. te ;
ter Elst, Arja .
PLOS ONE, 2007, 2 (09)
[6]   Phenotypic variability among patients with hyperornithinaemia-hyperammonaemia-homocitrullinuria syndrome homozygous for the delF188 mutation in SLC25A15 [J].
Debray, F-G ;
Lambert, M. ;
Lemieux, B. ;
Soucy, J. F. ;
Drouin, R. ;
Fenyves, D. ;
Dube, J. ;
Maranda, B. ;
Laframboise, R. ;
Mitchell, G. A. .
JOURNAL OF MEDICAL GENETICS, 2008, 45 (11) :759-764
[7]  
GRAY RGF, 1983, J INHERIT METAB DIS, V6, P143
[8]   Fourteen novel human members of mitochondrial solute carrier family 25 (SLC25) widely expressed in the central nervous system [J].
Haitina, Tatjana ;
Lindblom, Jonas ;
Renstrom, Thomas ;
Fredriksson, Robert .
GENOMICS, 2006, 88 (06) :779-790
[9]   A new genetic disorder in mitochondrial fatty acid β-oxidation:: ACAD9 deficiency [J].
He, M. ;
Rutledge, S. L. ;
Kelly, D. R. ;
Palmer, C. A. ;
Murdoch, G. ;
Majumder, N. ;
Nicholls, R. D. ;
Pei, Z. ;
Watkins, P. A. ;
Vockley, J. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2007, 81 (01) :87-103
[10]   Substrate and functional diversity of lysine acetylation revealed by a proteomics survey [J].
Kim, Sung Chan ;
Sprung, Robert ;
Chen, Yue ;
Xu, Yingda ;
Ball, Haydn ;
Pei, Jimin ;
Cheng, Tzuling ;
Kho, Yoonjung ;
Xiao, Hao ;
Xiao, Lin ;
Grishin, Nick V. ;
White, Michael ;
Yang, Xiang-Jiao ;
Zhao, Yingming .
MOLECULAR CELL, 2006, 23 (04) :607-618