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线粒体跨膜pH值和电势梯度:评估它们与呼吸速率及腺苷5'-三磷酸合成之间的能量关系

Mitochondrial transmembrane pH and electrical gradients: evaluation of their energy relationships with respiratory rate and adenosine 5'-triphosphate synthesis.

作者信息

Wilson D F, Forman N G

出版信息

Biochemistry. 1982 Mar 16;21(6):1438-44. doi: 10.1021/bi00535a051.

DOI:10.1021/bi00535a051
PMID:7074098
Abstract

Mitochondria from rat liver were suspended in ionic media, and parallel measurements were made of the respiratory rate, intramitochondrial volumes, and the phosphorylation state [[ATP]/([ADP][Pi])], as well as transmembrane pH gradients (from the distribution of labeled weak acids and bases) and electrical gradients (from the distribution of labeled lipid-soluble ions and of K+ in the presence of valinomycin). A decrease in the pH gradient was observed with additions of sodium propionate, acetate, or lactate. In the case of propionate, the pH gradient decreased from -0.94 +/- 0.10 (control) to -0.09 +/- 0.08 unit (with 3 mM propionate) without change in any of the other measured parameters. Variation of the intramitochondrial volumes was achieved by changing [K+] (+valinomycin) and by diluting the choline chloride media. The transmembrane electrical potential decreased from -150 mV under control conditions to approximately -75 mV in a 70 mosM medium or when 8 mM K+ (+valinomycin) was present. The changes in [ATP]/([ADP][Pi]) were as follows: from 1.8 X 10(4) (control) to 3.9 X 10(2) M-1 with 8 mM K+ (+valinomycin) or 1.0 X 10(4) M-1 when the osmolarity was decreased from 300 to 70 mosM. This corresponds to a decrease in the energy utilized for ATP synthesis from 14.1 to 11.9 kcal/mol (from 58.9 to 49.7 kJ/mol) with added K+ and to 13.8 kcal/mol (57.7 kJ/mol) with decreased osmolarity. No direct correlation was found between the changes in transmembrane electrical potential, pH gradient, or total proton electrochemical gradient and either the respiratory rate or [ATP]/([ADP][Pi]).

摘要

将大鼠肝脏的线粒体悬浮于离子介质中,同时对呼吸速率、线粒体内体积、磷酸化状态[[ATP]/([ADP][Pi])]以及跨膜pH梯度(根据标记的弱酸和弱碱的分布)和电势梯度(根据标记的脂溶性离子和缬氨霉素存在时K+的分布)进行平行测量。添加丙酸钠、乙酸盐或乳酸盐时,观察到pH梯度降低。就丙酸盐而言,pH梯度从-0.94±0.10(对照)降至-0.09±0.08单位(加入3 mM丙酸盐时),而其他任何测量参数均无变化。通过改变[K+](+缬氨霉素)和稀释氯化胆碱介质来实现线粒体内体积的变化。跨膜电势在对照条件下为-150 mV,在70 mosM介质中或存在8 mM K+(+缬氨霉素)时降至约-75 mV。[ATP]/([ADP][Pi])的变化如下:从1.8×10(4)(对照)降至8 mM K+(+缬氨霉素)时的3.9×10(2) M-1,或渗透压从300降至70 mosM时的1.0×10(4) M-1。这对应于添加K+时用于ATP合成的能量从14.1降至11.9 kcal/mol(从58.9降至49.7 kJ/mol),渗透压降低时降至13.8 kcal/mol(57.7 kJ/mol)。未发现跨膜电势、pH梯度或总质子电化学梯度的变化与呼吸速率或[ATP]/([ADP][Pi])之间存在直接相关性。

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Mitochondrial transmembrane pH and electrical gradients: evaluation of their energy relationships with respiratory rate and adenosine 5'-triphosphate synthesis.线粒体跨膜pH值和电势梯度:评估它们与呼吸速率及腺苷5'-三磷酸合成之间的能量关系
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