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植物线粒体载体的代谢作用。

Metabolic Roles of Plant Mitochondrial Carriers.

机构信息

Max-Planck-Instiute of Molecular Plant Physiology, 14476 Postdam-Golm, Germany.

Instituto de Educação, Agricultura e Ambiente, Universidade Federal do Amazonas, Humaitá 69800-000, Amazonas, Brazil.

出版信息

Biomolecules. 2020 Jul 8;10(7):1013. doi: 10.3390/biom10071013.

Abstract

Mitochondrial carriers (MC) are a large family (MCF) of inner membrane transporters displaying diverse, yet often redundant, substrate specificities, as well as differing spatio-temporal patterns of expression; there are even increasing examples of non-mitochondrial subcellular localization. The number of these six trans-membrane domain proteins in sequenced plant genomes ranges from 39 to 141, rendering the size of plant families larger than that found in and comparable with . Indeed, comparison of plant MCs with those from these better characterized species has been highly informative. Here, we review the most recent comprehensive studies of plant MCFs, incorporating the torrent of genomic data emanating from next-generation sequencing techniques. As such we present a more current prediction of the substrate specificities of these carriers as well as review the continuing quest to biochemically characterize this feature of the carriers. Taken together, these data provide an important resource to guide direct genetic studies aimed at addressing the relevance of these vital carrier proteins.

摘要

线粒体载体(MC)是一个庞大的家族(MCF),它们是具有不同但通常是冗余的底物特异性的内膜转运蛋白,以及不同的时空表达模式;甚至越来越多的例子表明它们存在于非线粒体亚细胞定位中。在已测序的植物基因组中,这些具有六个跨膜结构域的蛋白质的数量范围从 39 到 141,使得植物家族的大小大于 和 中发现的大小。事实上,将植物 MC 与这些特征更好的物种的 MC 进行比较非常有启发性。在这里,我们综述了最近关于植物 MCF 的全面研究,整合了来自下一代测序技术的大量基因组数据。因此,我们对这些载体的底物特异性进行了更准确的预测,并综述了对这些载体的生化特性进行研究的持续探索。这些数据共同为指导旨在解决这些重要载体蛋白相关性的直接遗传研究提供了重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d848/7408384/b67d0a46424f/biomolecules-10-01013-g001.jpg

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