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解偶联剂间氯苯腙对漂浮紫萍膜电位和电导率的主要影响研究

A study of the primary effect of the uncoupler carbonyl cyanide m-chlorophenylhydrazone on membrane potential and conductance in Riccia fluitans.

作者信息

Felle H, Bentrup F W

出版信息

Biochim Biophys Acta. 1977 Jan 4;464(1):179-87. doi: 10.1016/0005-2736(77)90380-7.

Abstract
  1. In the presence of 10(-5) to 10 (-8) M carbonyl cyanide m-chlorophenylhydrazone (CCCP) the membrane potential of thallus cells of the aquatic liverwort Riccia fluitans responds to changes of the external pH between 5.5 and 8.3. This occurs in the light and dark, and also if respiration is abolished by addition of 10(-4) M KCN and 10 (-5) M salicyl-hydroxamic acid. 2. The ATP-level of the thallus is reduced, independently of the external pH, by greter than or equal to 10 (-6) M CCCP to 30--40% of the control level of about 1.1 nmol ATP per mg dryweight within 5 min. 3. Upon addition of 10 (-4) M CCCP at 20 degrees C the ATP-level declines exponentially with a half time of about 20--30 s, whereas the membrane potential declines exponentially with a half time of about 2--3 s. 4. At pH 7.2 the electrical membrane conductance yields a sigmoid curve as a function of the logarithm of the CCCP concentration between 10 (-8) and 3 - 10 (-6) M. On the other hand, at 3 - 10(-7) M M CCCP the gm (electrical slope conductance, muS - cm-2 = 10 (-6)-omega-1-cm-2) versus pH-curve displays an optimum between pH 6.5 and 7.5. 5. We conclude that CCCP acts upon membrane potential and conductance in Riccia predominantly by inducing a passive proton permeability of the cell membrane, i.e. CCCP raises the permeability ratio, PH/PK, more than 100-fold above its control level of about 10.
摘要
  1. 在存在10⁻⁵至10⁻⁸M羰基氰化物间氯苯腙(CCCP)的情况下,水生苔类植物浮苔叶状体细胞的膜电位会对外部pH值在5.5至8.3之间的变化做出反应。这在光照和黑暗条件下都会发生,并且即使通过添加10⁻⁴M KCN和10⁻⁵M水杨羟肟酸使呼吸作用停止时也会发生。2. 叶状体的ATP水平会被大于或等于10⁻⁶M的CCCP降低,与外部pH值无关,在5分钟内降至约1.1 nmol ATP/mg干重的对照水平的30% - 40%。3. 在20℃添加10⁻⁴M CCCP后,ATP水平呈指数下降,半衰期约为20 - 30秒,而膜电位呈指数下降,半衰期约为2 - 3秒。4. 在pH 7.2时,电膜电导作为CCCP浓度在10⁻⁸至3×10⁻⁶M之间对数的函数产生一条S形曲线。另一方面,在3×10⁻⁷M CCCP时,gm(电斜率电导,μS·cm⁻² = 10⁻⁶Ω⁻¹·cm⁻²)与pH曲线在pH 6.5至7.5之间显示出一个最佳值。5. 我们得出结论,CCCP在浮苔中对膜电位和电导的作用主要是通过诱导细胞膜的被动质子通透性,即CCCP将通透性比PH/PK提高到其约为10的对照水平之上100倍以上。

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