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膜磷脂作为视觉循环运作中的一种能量来源。

Membrane phospholipids as an energy source in the operation of the visual cycle.

作者信息

Rando R R

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Biochemistry. 1991 Jan 22;30(3):595-602. doi: 10.1021/bi00217a001.

Abstract

Biology depends on the coupling of the free energy of hydrolysis of phosphate esters, such as ATP, to drive processes which would otherwise be thermodynamically unfavorable. Carboxyl esters are like phosphate esters in their ability to hydrolyze with substantial negative free energies, enabling them to participate in group transfer processes as well. In particular, membrane phospholipids constitute an enormous store of potential energy that could be used to fuel energetically unfavorable processes. One such process involves the biosynthesis of 11-cis-retinal, the chromophore of rhodopsin, from all-trans-retinol (vitamin A). The difference in free energy between an all-trans retinoid and its corresponding 11-cis retinoid is approximately 4 kcal/mol. This energy is provided for in a minimally two-step process involving membrane phospholipids as the energy source. First, all-trans-retinol is esterified in the retinal pigment epithelium by lecithin retinol acyl transferase (LRAT) to produce an all-trans-retinyl ester. Second, this ester is transformed into 11-cis-retinol by an isomerohydrolase in a process that couples the negative free energy of hydrolysis of the acyl ester to the formation of the strained 11-cis-retinol.

摘要

生物学依赖于磷酸酯(如ATP)水解自由能的耦合,以驱动那些在热力学上原本不利的过程。羧酸酯在水解时具有大量负自由能的能力与磷酸酯相似,这使它们也能够参与基团转移过程。特别是,膜磷脂构成了一个巨大的势能储备库,可用于为能量上不利的过程提供能量。一个这样的过程涉及从全反式视黄醇(维生素A)生物合成11-顺式视黄醛,即视紫红质的发色团。全反式类视黄醇与其相应的11-顺式类视黄醇之间的自由能差约为4千卡/摩尔。这种能量通过一个至少两步的过程提供,该过程以膜磷脂作为能量来源。首先,全反式视黄醇在视网膜色素上皮细胞中被卵磷脂视黄醇酰基转移酶(LRAT)酯化,生成全反式视黄酯。其次,该酯在一个异构水解酶的作用下转化为11-顺式视黄醇,此过程将酰基酯水解的负自由能与紧张的11-顺式视黄醇的形成相耦合。

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