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142篇 您的检索式:作者名="HALESTRAP A P"
    题名 作者 年代 出处 被引量
1Fluorescence resonance energy transfer studies on the interaction between the lactate transporter MCT1 and CD147 provide information on the topology and stoichiometry of the complex in situ显示文摘Wilson M C Meredith D Halestrap A P 2002J Biol Chem2002,277,5:1
2Mitochondrial permeability transition pore opening during myocardial reperfusion-a target for cardioprotection显示文摘Halestrap A P Clarke S J Javadov S A 2004Cardiovasc Res2004,61,3:1
3Mitochondrial permeability transition pore opening during myocardial reperfusion a target for cardioproteetion 显示文摘Halestrap A P Clarke S J Javadov S A 2004Cardiovasc Res2004,61,3:1
4Mitochondrial permeability transition pore opening during myocardial reperfusion-a target for cardioprotection 显示文摘Halestrap A P Clarke S J Javadov S A 2004Cardiovasc Res2004,61,3:1
5The mitochondrial permeability transition: its molecular mechanism and role in reperfusion injury显示文摘Halestrap A P 1999Biochem Soc Symp1999,66,:1
6Mito-chondrial permeability transition pore opening during myocar-dial reperfusion a target for cardioprot ect ion显示文摘HALESTRAP A p CLARKE S J JAVADOV S A 2004Cardiovasc Res2004,61,3:1
7Cloning and sequencing of four new mammalian monocarboxylate transporter (MCT) homologues confirms the existence of a transporter family with an ancient past显示文摘PRICE N T JACKSON V N HALESTRAP A P 1998Biochem J1998,329,:1
8Mito-chondrial non-specific pores remain closed during cardiac ischaemia,but open upon reperfusion显示文摘GRIFFITHS E J HALESTRAP A P 1995Biochem J1995,307,1:1
9The adenine nueleotide transloease: Aeentral component of the mitoehondrial permeability transition pore and key player in cell death显示文摘Halestrap A P Brenner C 2003Current Medicinal Chemistry2003,10,16:1
10Cloning and se- quencing of four new mammalian monocarboxylate transporter (MCT) homoqogues confirms the existence of a transporter fami- ly with an an-cient past 显示文摘Price N T Jackson V N Halestrap A P 1998Biochem J1998,329,2:1
11Evidence that metformin exerts its antidiabetic effects through inhibition of complex of the mitochondrial respiratory chain显示文摘OWEN M R DORAN E HALESTRAP A P 2000Biochem J2000,348,3:1
12The SLC16 gene family-from monocarbexylate transporters(MCTs)to aromatic amino acid transporters and beyond显示文摘Halestrap A P Meredith D 2004Pflugers Arch2004,447,5:1
13Insulin and the regulation of adipose tissue acetyl coenzyme A carboxylase显示文摘HALESTRAP A P DENTON R M 1973Biochemical Journal1973,105,:1
14Oxidative stress, thiol reagents, and membrane potential modulate the mitochondrial permeability transition by affecting nucleotide binding to the adenine nucleotide translocase显示文摘Halestrap A P Woodfield K Y Connern C P 1997J Biol Chem1997,272,6:1
15Lactate transport in skeletal muscle-role and regulation of the monocarboxylate transporter显示文摘Juel C Halestrap A P 1999J Physiol1999,517,:1
16The mitochondrial perbmeability transition: its molecular mechanism and role in reperfusion injury 显示文摘Halestrap A P 1999Biochem Soc Syrup1999,66,:1
17Cellular and subcellular distribution of monocarboxylate transporters in cul- tured brain cells and in the adult brain 显示文摘Pellerin L Bergersen L H Halestrap A P 2005Neurosei Res2005,79,12:1
18Eluciting the molecular mechanism of the heart显示文摘Halestrap A P Kerr P M Javadov S 1998Biophys Acta1998,1366,:1
19Recent progress in elucidating the molecular mechanism of the mitochondrial permeability transition pore 显示文摘Leung A W Halestrap A P 2008Biochim Biophys Acta2008,1777,78:1
20Evidence that mefformin exerts its anti-diabetic effects through inhibition of complex 1 of the mitochondrial respiratory chain 显示文摘OWEN M R DRAN E HALESTRAP A P 2000Biochem J2000,348,3:1
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