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汞离子对离体叶绿体脂-蛋白复合体稳定性的影响。

Effect of mercury ion on the stability of the lipid-protein complex of isolated chloroplasts.

作者信息

Panda Sunakar, Panda Sumita

机构信息

Laboratory of Environmental Biochemistry, P.G. Department of Chemistry, Berhampur University, Bhanjabihar, Berhampur 760007, Dist. Ganjam, Orissa, India.

出版信息

Indian J Biochem Biophys. 2009 Oct;46(5):405-8.

Abstract

Mercury is known to interact with different parts of living systems causing serious biochemical and physiological disorder. In order to know the effect of mercury (Hg2+) ion on chloroplasts, the cell free organelle are incubated in an isotonic buffer medium in presence of mercury ion. The metal ion is found to induce membrane lipid peroxidation, loss of photosynthetic pigments and degradation of proteins. Such degradation brings about a drastic modification of lipid-protein organization of chloroplasts as reflected from a blue shift of absorption peaks and lowering of chlorophyll-a fluorescence intensity. The detrimental effect of Hg2+ ion has been explained in terms of direct binding with lipid-protein complex of photosynthetic membrane. Such a binding of metal ion exposes the lipid-protein complex for an easier entry and attack of reactive oxygen species (ROS) generated during incubation of chloroplasts in light and dark, thereby resulting in higher disorganization, which is evident from cation- induced changes in absorption and emission characteristics of the organelle.

摘要

众所周知,汞会与生命系统的不同部分相互作用,导致严重的生化和生理紊乱。为了了解汞(Hg2+)离子对叶绿体的影响,将无细胞细胞器在含有汞离子的等渗缓冲介质中孵育。发现金属离子会诱导膜脂过氧化、光合色素损失和蛋白质降解。这种降解导致叶绿体脂质-蛋白质组织发生剧烈改变,这从吸收峰的蓝移和叶绿素a荧光强度的降低可以反映出来。Hg2+离子的有害作用已根据其与光合膜脂质-蛋白质复合物的直接结合来解释。金属离子的这种结合使脂质-蛋白质复合物暴露,便于在叶绿体光照和黑暗孵育期间产生的活性氧(ROS)更容易进入并攻击,从而导致更高程度的紊乱,这从阳离子诱导的细胞器吸收和发射特性变化中可以明显看出。

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