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Trypanosome Alternative Oxidase Possesses both an N-Terminal and Internal Mitochondrial Targeting Signal

机译:锥虫替代氧化酶具有N端和内部线粒体靶向信号

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Recognition of mitochondrial targeting signals (MTS) by receptor translocases of outer and inner membranes of mitochondria is one of the prerequisites for import of nucleus-encoded proteins into this organelle. The MTS for a majority of trypanosomatid mitochondrial proteins have not been well defined. Here we analyzed the targeting signal for trypanosome alternative oxidase (TAO), which functions as the sole terminal oxidase in the infective form of Trypanosoma brucei. Deleting the first 10 of 24 amino acids predicted to be the classical N-terminal MTS of TAO did not affect its import into mitochondria in vitro. Furthermore, ectopically expressed TAO was targeted to mitochondria in both forms of the parasite even after deletion of first 40 amino acid residues. However, deletion of more than 20 amino acid residues from the N terminus reduced the efficiency of import. These data suggest that besides an N-terminal MTS, TAO possesses an internal mitochondrial targeting signal. In addition, both the N-terminal MTS and the mature TAO protein were able to target a cytosolic protein, dihydrofolate reductase (DHFR), to a T. brucei mitochondrion. Further analysis identified a cryptic internal MTS of TAO, located within amino acid residues 115 to 146, which was fully capable of targeting DHFR to mitochondria. The internal signal was more efficient than the N-terminal MTS for import of this heterologous protein. Together, these results show that TAO possesses a cleavable N-terminal MTS as well as an internal MTS and that these signals act together for efficient import of TAO into mitochondria.
机译:通过线粒体外膜和内膜的受体转位酶识别线粒体靶向信号(MTS)是将核编码蛋白导入该细胞器的先决条件之一。大多数锥虫线粒体蛋白的MTS尚未明确。在这里,我们分析了锥虫替代氧化酶(TAO)的靶向信号,锥虫替代氧化酶以布鲁氏锥虫的感染形式作为唯一的末端氧化酶。删除预测为TAO的经典N末端MTS的24个氨基酸中的前10个,并不影响其在体外 中导入线粒体。此外,即使删除前40个氨基酸残基,异位表达的TAO仍以两种形式的寄生虫靶向线粒体。然而,从N末端缺失20个以上的氨基酸残基降低了导入效率。这些数据表明,TAO除了具有N末端MTS外,还具有内部线粒体靶向信号。此外,N末端MTS和成熟的TAO蛋白都能够将胞浆蛋白二氢叶酸还原酶(DHFR)靶向布氏锥虫线粒体。进一步的分析确定了TAO的内部MTS,位于氨基酸残基115至146内,完全能够将DHFR靶向线粒体。对于这种异源蛋白的导入,内部信号比N端MTS更有效。总之,这些结果表明,TAO具有可裂解的N末端MTS以及内部MTS,并且这些信号共同作用以有效地将TAO导入线粒体。

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