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塔夫绸蛋白在心肌磷脂代谢中的神秘作用。

The enigmatic role of tafazzin in cardiolipin metabolism.

作者信息

Houtkooper Riekelt H, Turkenburg Marjolein, Poll-The Bwee Tien, Karall Daniela, Pérez-Cerdá Celia, Morrone Amelia, Malvagia Sabrina, Wanders Ronald J, Kulik Willem, Vaz Frédéric M

机构信息

University of Amsterdam, Academic Medical Center, P.O. Box 22700, 1100 DE Amsterdam, The Netherlands.

出版信息

Biochim Biophys Acta. 2009 Oct;1788(10):2003-14. doi: 10.1016/j.bbamem.2009.07.009. Epub 2009 Jul 18.

Abstract

The mitochondrial phospholipid cardiolipin plays an important role in cellular metabolism as exemplified by its involvement in mitochondrial energy production and apoptosis. Following its biosynthesis, cardiolipin is actively remodeled to achieve its final acyl composition. An important cardiolipin remodeling enzyme is tafazzin, of which several mRNA splice variants exist. Mutations in the tafazzin gene cause the X-linked recessive disorder Barth syndrome. In addition to providing an overview of the current knowledge in literature about tafazzin, we present novel experimental data and use this to discuss the functional role of the different tafazzin variants in cardiolipin metabolism in relation to Barth syndrome. We developed and performed specific quantitative PCR analyses of different tafazzin mRNA splice variants in 16 human tissues and correlated this with the tissue cardiolipin profile. In BTHS fibroblasts we showed that mutations in the tafazzin gene affected both the level and distribution of tafazzin mRNA variants. Transient expression of selected human tafazzin variants in BTHS fibroblasts showed for the first time in a human cell system that tafazzin lacking exon5 indeed functions in cardiolipin remodeling.

摘要

线粒体磷脂心磷脂在细胞代谢中发挥着重要作用,例如其参与线粒体能量产生和细胞凋亡。在心磷脂生物合成之后,它会被积极重塑以达到最终的酰基组成。一种重要的心磷脂重塑酶是塔法辛,它存在几种mRNA剪接变体。塔法辛基因突变会导致X连锁隐性疾病巴氏综合征。除了概述文献中关于塔法辛的现有知识外,我们还展示了新的实验数据,并以此讨论不同塔法辛变体在与巴氏综合征相关的心磷脂代谢中的功能作用。我们开发并对16种人体组织中的不同塔法辛mRNA剪接变体进行了特异性定量PCR分析,并将其与组织心磷脂谱相关联。在巴氏综合征成纤维细胞中,我们发现塔法辛基因突变影响了塔法辛mRNA变体的水平和分布。在巴氏综合征成纤维细胞中瞬时表达选定的人类塔法辛变体,首次在人类细胞系统中表明缺失外显子5的塔法辛确实在心磷脂重塑中发挥作用。

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