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肌红蛋白和线粒体:去氧时氧化肌红蛋白与线粒体膜相互作用。

Myoglobin and mitochondria: oxymyoglobin interacts with mitochondrial membrane during deoxygenation.

机构信息

Institute of Cell Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region, Russia.

出版信息

Biochemistry (Mosc). 2009 Nov;74(11):1211-8. doi: 10.1134/s0006297909110054.

Abstract

The rates of oxygen uptake by rat liver mitochondria (MC) (native coupled, freshly frozen, and uncoupled by FCCP) have been measured polarographically in the absence (V(0)) or presence (V(1)) of 0.11-0.25 mM sperm whale MbO2. Under the same standard conditions, the rate of sperm whale MbO2 deoxygenation (V(2)) has been studied spectrophotometrically in the presence of respiring MC. For freshly frozen MC, the dependence of V(1) and V(2) on the overall charge of MbO2 has been investigated at pH 5.6-7.6, and the influence of other differently charged proteins (apomyoglobin, egg lysozyme, lactalbumin, and BSA) has been studied at pH 7.4. It is shown that the rate of mitochondrial respiration in the presence of MbO2 increases by 10-30% (V(1) > V(0)). No myoglobin effect is observed for FCCP-uncoupled MC (V(max) does not change). The rate of MbO2 deoxygenation is equal to the rate of oxygen uptake by mitochondria (V(2)/V(1) ~ 1 at pH 7.2-7.5). At varying pH < 7.2, the V(2) values become markedly higher than V(1), evidently due to the increased MbO2 positive charge and its stronger interaction with negatively charged mitochondrial membrane. At pH 7.4, on the contrary, V(2) is twice lower than V(1) in the case of negatively charged CM-MbO2 (pI 5.2), which has carboxymethylated histidines. Positively charged lysozyme (pI 11) strongly inhibits MbO2 deoxygenation (V(2)) without affecting oxygen uptake by MC (V(0) and V(1)). At the same time, apomyoglobin (pI 8.5), which is structurally very similar to the holoprotein, and both negatively charged lactalbumin (pI 4.4) and BSA (pI 4.7) have no substantial influence on V(2) and V(1). The MC membrane evidently has no specific sites for the interaction with myoglobin. Rather, the protein contacts with phospholipids of the outer membrane during MbO2 deoxygenation, and electrostatic interactions are of great importance for this process.

摘要

大鼠肝线粒体(MC)的耗氧量(天然偶联、新鲜冷冻和由 FCCP 解偶联)的速率已通过在不存在(V(0))或存在(V(1))0.11-0.25mM 抹香鲸 MbO2 的情况下通过极谱法进行了测量。在相同的标准条件下,使用呼吸 MC 分光光度法研究了抹香鲸 MbO2 的脱氧速率(V(2))。对于新鲜冷冻的 MC,已在 pH5.6-7.6 下研究了 MbO2 的总电荷对 V(1)和 V(2)的依赖性,并在 pH7.4 下研究了其他带不同电荷的蛋白质(脱铁肌红蛋白、卵溶菌酶、乳白蛋白和 BSA)的影响。结果表明,在 MbO2 存在下,线粒体呼吸速率增加 10-30%(V(1)>V(0))。FCCP 解偶联的 MC 未观察到肌红蛋白效应(V(max)不变)。MbO2 脱氧速率等于线粒体的耗氧量(V(2)/V(1)~1 在 pH7.2-7.5 时)。在 pH<7.2 时,V(2)值明显高于 V(1),显然是由于 MbO2 正电荷增加及其与带负电荷的线粒体膜的相互作用增强所致。相反,在 pH7.4 时,带负电荷的 CM-MbO2(pI5.2)的 V(2)值是 V(1)的两倍,带负电荷的 CM-MbO2 具有羧甲基化组氨酸。带正电荷的溶菌酶(pI11)强烈抑制 MbO2 脱氧(V(2))而不影响 MC 的耗氧量(V(0)和 V(1))。与此同时,结构上与全蛋白非常相似的脱铁肌红蛋白(pI8.5)以及带负电荷的乳白蛋白(pI4.4)和 BSA(pI4.7)对 V(2)和 V(1)均无明显影响。MC 膜显然没有与肌红蛋白相互作用的特定部位。相反,在 MbO2 脱氧过程中,蛋白质与外膜的磷脂接触,静电相互作用对此过程非常重要。

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