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氢化过程对膜流动性的调节。III. 菠菜叶绿体生物膜的氢化及其对光合电子传递影响的研究。

The modulation of membrane fluidity by hydrogenation processes. III. The hydrogenation of biomembranes of spinach chloroplasts and a study of the effect of this on photosynthetic electron transport.

作者信息

Restall C J, Williams P, Percival M P, Quinn P J, Chapman D

出版信息

Biochim Biophys Acta. 1979 Jul 19;555(1):119-30. doi: 10.1016/0005-2736(79)90077-4.

Abstract

A method is reported for the in situ modification of the lipids of isolated spinach chloroplast membranes. The technique is based on a direct hydrogenation of the lipid double bonds in the presence of the catalyst, chlorotris(triphenylphosphine)rhodium (I). The pattern of hydrogenation achieved suggests that the catalyst distributes amongst all of the membranes. The polyunsaturated lipids within the membranes are hydrogenated at a faster rate and at an earlier stage than are the monoenoic lipids. Whilst addition of the catalyst to the chloroplast causes an initial 10--20% decrease in Hill activity, saturation of up to 40% of the double bonds present can be accomplished without causing further significant alterations in photosynthetic electron transport processes or marked morphological changes of the chloroplast structure as observed in the electron microscope.

摘要

本文报道了一种对分离的菠菜叶绿体膜脂质进行原位修饰的方法。该技术基于在催化剂三(三苯基膦)氯化铑(I)存在下对脂质双键进行直接氢化。所实现的氢化模式表明催化剂分布在所有膜中。膜内的多不饱和脂质比单烯脂质氢化速度更快且在更早阶段发生氢化。虽然向叶绿体中添加催化剂会使希尔活性最初降低10% - 20%,但可以使高达40%的现有双键饱和,而不会在光合电子传递过程中引起进一步的显著变化,也不会像在电子显微镜下观察到的那样导致叶绿体结构发生明显的形态变化。

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