首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Formation of molecular species of mitochondrial cardiolipin. 1. A novel transacylation mechanism to shuttle fatty acids between sn-1 and sn-2 positions of multiple phospholipid species.
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Formation of molecular species of mitochondrial cardiolipin. 1. A novel transacylation mechanism to shuttle fatty acids between sn-1 and sn-2 positions of multiple phospholipid species.

机译:线粒体心磷脂分子种类的形成。 1.一种新型的酰基转移机制,可将脂肪酸在多个磷脂物种的sn-1和sn-2位置之间穿梭。

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Mitochondrial cardiolipin undergoes extensive remodeling of its acyl groups to generate uniformly substituted species, such as tetralinoleoyl-cardiolipin, but the mechanism of this remodeling has not been elucidated, except for the fact that it requires tafazzin. Here we show that purified recombinant Drosophila tafazzin exchanges acyl groups between cardiolipin and phosphatidylcholine by a combination of forward and reverse transacylations. The acyl exchange is possible in the absence of phospholipase A(2) because it requires only trace amounts of lysophospholipids. We show that purified tafazzin reacts with various phospholipid classes and with various acyl groups both in sn-1 and sn-2 position. Expression studies in Sf9 insect cells suggest that the effect of tafazzin on cardiolipin species is dependent on the cellular environment and not on enzymatic substrate specificity. Our data demonstrate that tafazzin catalyzes general acyl exchange between phospholipids, which raises the question whether pattern formation in cardiolipin is the result of the equilibrium distribution of acyl groups between multiple phospholipid species.
机译:线粒体心磷脂对其酰基进行广泛的重塑以产生均匀取代的物质,例如四亚油酰基-心磷脂,但是除了需要他扎新的事实之外,尚未阐明这种重塑的机制。在这里,我们显示纯化的重组果蝇tafazzin通过正向和反向转酰基作用的组合在心磷脂和磷脂酰胆碱之间交换酰基。在没有磷脂酶A(2)的情况下进行酰基交换是可能的,因为它只需要痕量的溶血磷脂。我们显示纯化的tafazzin与各种磷脂类以及sn-1和sn-2位置的各种酰基反应。在Sf9昆虫细胞中的表达研究表明,他夫嗪对心磷脂种类的影响取决于细胞环境,而不取决于酶促底物特异性。我们的数据表明,tafazzin催化磷脂之间的一般酰基交换,这引发了一个问题,即心磷脂中的模式形成是否是多个磷脂物种之间酰基平衡分布的结果。

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