Rapid and extensive uptake and activation of hydrophobic triphenylphosphonium cations within cells

被引:168
作者
Ross, Meredith F. [1 ]
Prime, Tracy A. [1 ]
Abakumova, Irina [1 ]
James, Andrew M. [1 ]
Porteous, Carolyn M. [2 ]
Smith, Robin A. J. [3 ]
Murphy, Michael P. [1 ]
机构
[1] MRC, Dunn Human Nutr Unit, Wellcome Trust, Cambridge CB2 0XY, England
[2] Univ Otago, Dept Biochem, Dunedin, New Zealand
[3] Univ Otago, Dept Chem, Dunedin, New Zealand
基金
英国医学研究理事会;
关键词
lipophilic cation; membrane potential; mitochondria; mitochondrial targeting; mitoquinone (MitoQ);
D O I
10.1042/BJ20080063
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
Mitochondria-targeted molecules comprising the lipophilic TPP (triphenylphosphonium) cation covalently linked to a hydrophobic bioactive moiety are used to modify and probe mitochondria in cells and in vivo. However, it is unclear how hydrophobicity affects the rate and extent of their uptake into mitochondria within cells, making it difficult to interpret experiments because their intracellular concentration in different compartments is uncertain. To address this issue, we compared the uptake into both isolated mitochondria and mitochondria within cells of two hydrophobic TPP derivatives, [H-3]MitoQ (mitoquinone) and [H-3]DecylTPP, with the more hydrophilic TPP cation [H-3]TPMP (methyltriphenylphosphonium). Uptake of MitoQ by mitochondria and cells was described by the Nernst equation and was similar to 5-fold greater than that for TPMP, as a result of its greater binding within the mitochondrial matrix. DecylTPP was also taken up extensively by cells, indicating that increased hydrophobicity enhanced uptake. Both MitoQ and DecylTPP were taken up very rapidly into cells, reaching a steady state within 15 min, compared with similar to 8 h for TPMP. This far faster uptake was the result of the increased rate of passage of hydrophobic TPP molecules through the plasma membrane. Within cells MitoQ was predominantly located within mitochondria, where it was rapidly reduced to the ubiquinol form, consistent with its protective effects in cells and in vivo being due to the ubiquinol antioxidant. The strong influence of hydrophobicity on TPP cation uptake into mitochondria within cells facilitates the rational design of mitochondria-targeted compounds to report on and modify mitochondrial function in vivo.
引用
收藏
页码:633 / 645
页数:13
相关论文
共 44 条
[1]   Targeting an antioxidant to mitochondria decreases cardiac ischemia-reperfusion injury [J].
Adlam, VJ ;
Harrison, JC ;
Porteous, CM ;
James, AM ;
Smith, RAJ ;
Murphy, MP ;
Sammut, IA .
FASEB JOURNAL, 2005, 19 (09) :1088-1095
[2]   Fine-tuning the hydrophobicity of a mitochondria-targeted antioxidant [J].
Asin-Cayuela, J ;
Manas, ARB ;
James, AM ;
Smith, RAJ ;
Murphy, MP .
FEBS LETTERS, 2004, 571 (1-3) :9-16
[3]   Mitochondria, oxidants, and aging [J].
Balaban, RS ;
Nemoto, S ;
Finkel, T .
CELL, 2005, 120 (04) :483-495
[4]   MEMBRANE-POTENTIAL OF MITOCHONDRIA IN INTACT LYMPHOCYTES DURING EARLY MITOGENIC STIMULATION [J].
BRAND, MD ;
FELBER, SM .
BIOCHEMICAL JOURNAL, 1984, 217 (02) :453-459
[5]  
BRAND MD, 1995, BIOENERGETICS PRACTI, P39
[6]   THERMODYNAMIC CONTROL OF ELECTRON FLUX THROUGH MITOCHONDRIAL CYTOCHROME BC1 COMPLEX [J].
BROWN, GC ;
BRAND, MD .
BIOCHEMICAL JOURNAL, 1985, 225 (02) :399-405
[7]   Targeting lipoic acid to mitochondria:: Synthesis and characterization of a triphenylphosphonium-conjugated α-lipoyl derivative [J].
Brown, Stephanie E. ;
Ross, Meredith F. ;
Sanjuan-Pla, Alejandra ;
Manas, Abdul-Rahman B. ;
Smith, Robin A. J. ;
Murphy, Michael P. .
FREE RADICAL BIOLOGY AND MEDICINE, 2007, 42 (12) :1766-1780
[8]   SYNTHESIS AND CHARACTERIZATION OF THIOBUTYLTRIPHENYLPHOSPHONIUM BROMIDE, A NOVEL THIOL REAGENT TARGETED TO THE MITOCHONDRIAL MATRIX [J].
BURNS, RJ ;
SMITH, RAJ ;
MURPHY, MP .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1995, 322 (01) :60-68
[9]  
Chappell JB, 1972, Subcellular Components, V2nd, P77, DOI DOI 10.1016/B978-0-408-70360-4.50009-2
[10]   Mitochondria superoxide dismutase mimetic inhibits peroxide-induced oxidative damage and apoptosis: Role of mitochondrial superoxide [J].
Dhanasekaran, A ;
Kotamraju, S ;
Karunakaran, C ;
Kalivendi, SV ;
Thomas, S ;
Joseph, J ;
Kalyanaraman, B .
FREE RADICAL BIOLOGY AND MEDICINE, 2005, 39 (05) :567-583