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首页> 外文期刊>RNA >Pentamidine inhibits mitochondrial intron splicing and translation in Saccharomyces cerevisiae.
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Pentamidine inhibits mitochondrial intron splicing and translation in Saccharomyces cerevisiae.

机译:喷他idine可抑制酿酒酵母中的线粒体内含子剪接和翻译。

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Pentamidine inhibits in vitro splicing of nuclear group I introns from rRNA genes of some pathogenic fungi and is known to inhibit mitochondrial function in yeast. Here we report that pentamidine inhibits the self-splicing of three group I and two group II introns of yeast mitochondria. Comparison of yeast strains with different configurations of mitochondrial introns (12, 5, 4, or 0 introns) revealed that strains with the most introns were the most sensitive to growth inhibition by pentamidine on glycerol medium. Analysis of blots of RNA from yeast strains grown in raffinose medium in the presence or absence of pentamidine revealed that the splicing of seven group I and two group II introns that have intron reading frames was inhibited by the drug to varying extents. Three introns without reading frames were unaffected by the drug in vivo, and two of these were inhibited in vitro, implying that the drug affects splicing by acting directly on RNA in vitro, but on another target in vivo. Because the most sensitive introns in vivo are the ones whose splicing depends on a maturase encoded by the intron reading frames, we tested pentamidine for effects on mitochondrial translation. We found that the drug inhibits mitochondrial but not cytoplasmic translation in cells at concentrations that inhibit mitochondrial intron splicing. Therefore, pentamidine is a potent and specific inhibitor of mitochondrial translation, and this effect explains most or all of its effects on respiratory growth and on in vivo splicing of mitochondrial introns.
机译:喷他idine抑制某些致病性真菌的rRNA基因的I类核内含子的体外剪接,并已知能抑制酵母中的线粒体功能。在这里我们报告喷他idine抑制酵母线粒体的三个第一和第二组内含子的自我剪接。比较具有不同构型的线粒体内含子(12、5、4或0个内含子)的酵母菌株,发现内含子最多的菌株对戊pen在甘油培养基上的生长抑制最敏感。分析在存在或不存在喷他idine的情况下在棉子糖培养基中生长的酵母菌株的RNA印迹分析表明,具有内含子阅读框架的七个I组和两个II组内含子的剪接在不同程度上受到药物的抑制。体内没有3个没有阅读框的内含子不受药物的影响,其中有2个在体外被抑制,这意味着该药物通过直接在体外作用于RNA而对体内的另一个靶标起作用,从而影响剪接。由于体内最敏感的内含子是那些剪接取决于内含子阅读框编码的成熟酶的内含子,因此我们测试了戊tam对线粒体翻译的影响。我们发现该药物以抑制线粒体内含子剪接的浓度抑制细胞中的线粒体而非细胞质翻译。因此,喷他idine是线粒体翻译的有效和特异性抑制剂,这种作用解释了其对呼吸生长和线粒体内含子体内剪接的大部分或全部作用。

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