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1 due to an increase in the amount of adenine nucleotide translocase.
2 ATP depletion, or inhibition of the adenine nucleotide translocase.
3 endent anion channel (porin) and the adenine nucleotide translocase.
4 , mitochondrial creatine kinase, and adenine nucleotide translocase.
5 is known to be cardioprotective, and adenine nucleotide translocase 1 (ANT1) is a key mediator of mit
7 to interact with and dephosphorylate adenine nucleotide translocase 1 (ANT1), a central molecule cont
9 al mitochondrial proteins, including adenine nucleotide translocase 1 (ANT1), were more oxidized by H
11 cloned cDNAs derived from the mouse adenine nucleotide translocase-1 and -2 genes (Ant1 and Ant2) an
13 y sheds light on the central role of adenine nucleotide translocase 2 (ANT2) in the pathogenesis of o
14 urated fatty acid stimulation of the adenine nucleotide translocase 2 (ANT2), an inner mitochondrial
16 ied voltage-dependent anion channel, adenine nucleotide translocase and the fusion protein were incor
17 ransition pore that is formed by the adenine nucleotide translocase and the voltage-dependent anion c
18 ed oxygen consumption independent of adenine nucleotide translocase and uncoupling proteins, decrease
20 was insensitive to inhibitors of the adenine nucleotide translocase (ANT) and of the voltage-dependen
22 chondrial creatine kinase (MtCK) and adenine nucleotide translocase (ANT) can play an important role
26 TP has two molecular components, the adenine nucleotide translocase (ANT) family of proteins and an u
28 ide is known to attack Cys159 of the adenine nucleotide translocase (ANT) in a CAT-sensitive manner,
29 zzle is that in permeabilized cells, adenine nucleotide translocase (ANT) is less accessible to cytos
32 d bongkrekic acid, inhibitors of the adenine nucleotide translocase (ANT) that lock the transporter i
34 tage-dependent anion channel (VDAC), adenine nucleotide translocase (ANT), and hexokinase II (HKII).
35 nuated by knockdown or inhibition of adenine nucleotide translocase (ANT), cyclophilin D (CypD), or m
36 analysis identified this protein as adenine nucleotide translocase (ANT), represented by two highly
37 induced RIP-dependent inhibition of adenine nucleotide translocase (ANT)-conducted transport of ADP
38 l ADP-ATP-using reactions except the adenine nucleotide translocase (ANT)-mediated mitochondrial ADP-
43 glucocorticoid hormone receptor and adenine nucleotide translocase (ANT1) were downregulated at 128
45 e mitochondria also showed a greater adenine nucleotide translocase-catalysed proton conductance than
49 sed proton transport activity of the adenine nucleotide translocase (dependent on fatty acids and inh
50 nded on electron transport chain and adenine nucleotide translocase functionality, but it was indepen
51 tudy provides evidence for a role of adenine nucleotide translocase in the mechanism underlying alter
53 anion channel (outer membrane), the adenine nucleotide translocase (inner membrane) and cyclophilin-
54 dent anion channel (outer membrane), adenine nucleotide translocase (inner membrane) and cyclophilin-
55 ncreased levels of the mitochondrial adenine nucleotide translocase stress-sensitive B (SesB), increa
56 tage-dependent anion channel and the adenine nucleotide translocase were similar in the two mitochond
57 both the F(1)F(O)-ATPase and of the adenine nucleotide translocase, which delivers nucleotides to it
58 ockdown-induced dysregulation in the adenine nucleotide translocase, which results in a slower rate o