Sluse Francis E, Jarmuszkiewicz Wieslawa
Laboratory of Bioenergetics, Institue of Chemistry, University of Liège, Belgium.
FEBS Lett. 2002 Jan 16;510(3):117-20. doi: 10.1016/s0014-5793(01)03229-x.
The appearance of intracellular oxidative phosphorylation at the time of acquisition of mitochondria in Eukarya was very soon accompanied by the emergence of uncoupling protein, a carrier specialized in free fatty acid-mediated H(+) recycling that can modulate the tightness of coupling between mitochondrial respiration and ATP synthesis, thereby maintaining a balance between energy supply and demand in the cell and defending cells against damaging reactive oxygen species production when electron carriers of the respiratory chain become over-reduced. The simultaneous occurrence of redox free energy-dissipating oxidase, which has the same final effect, could be related to the functional interactions between both dissipative systems.
在真核生物获取线粒体时细胞内氧化磷酸化的出现,很快就伴随着解偶联蛋白的出现,解偶联蛋白是一种专门负责游离脂肪酸介导的H(+)循环的载体,它可以调节线粒体呼吸与ATP合成之间偶联的紧密程度,从而维持细胞内能量供需的平衡,并在呼吸链的电子载体过度还原时保护细胞免受有害活性氧生成的影响。具有相同最终效应的氧化还原自由能耗散氧化酶的同时出现,可能与这两个耗散系统之间的功能相互作用有关。