首页> 美国卫生研究院文献>Frontiers in Oncology >The splicing mutant of the human tumor suppressor protein DFNA5 induces programmed cell death when expressed in the yeast Saccharomyces cerevisiae
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The splicing mutant of the human tumor suppressor protein DFNA5 induces programmed cell death when expressed in the yeast Saccharomyces cerevisiae

机译:当在酿酒酵母中表达时人类肿瘤抑制蛋白DFNA5的剪接突变体诱导程序性细胞死亡。

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摘要

DFNA5 was first identified as a gene responsible for autosomal dominant deafness. Different mutations were found, but they all resulted in exon 8 skipping during splicing and premature termination of the protein. Later, it became clear that the protein also has a tumor suppression function and that it can induce apoptosis. Epigenetic silencing of the DFNA5 gene is associated with different types of cancers, including gastric and colorectal cancers as well as breast tumors. We introduced the wild-type and mutant DFNA5 allele in the yeast Saccharomyces cerevisiae. The expression of the wild-type protein was well tolerated by the yeast cells, although the protein was subject of degradation and often deposited in distinct foci when cells entered the diauxic shift. In contrast, cells had problems to cope with mutant DFNA5 and despite an apparent compensatory reduction in expression levels, the mutant protein still triggered a marked growth defect, which in part can be ascribed to its interaction with mitochondria. Consistently, cells with mutant DFNA5 displayed significantly increased levels of ROS and signs of programmed cell death. The latter occurred independently of the yeast caspase, Mca1, but involved the mitochondrial fission protein, Fis1, the voltage-dependent anion channel protein, Por1 and the mitochondrial adenine nucleotide translocators, Aac1 and Aac3. Recent data proposed DFNA5 toxicity to be associated to a globular domain encoded by exon 2–6. We confirmed these data by showing that expression of solely this domain confers a strong growth phenotype. In addition, we identified a point mutant in this domain that completely abrogated its cytotoxicity in yeast as well as human Human Embryonic Kidney 293T cells (HEK293T). Combined, our data underscore that the yeast system offers a valuable tool to further dissect the apoptotic properties of DFNA5.
机译:DFNA5首先被鉴定为负责常染色体显性遗传性聋的基因。发现了不同的突变,但是它们都导致蛋白的剪接和过早终止过程中外显子8的跳跃。后来,人们发现该蛋白质还具有抑癌功能,并且可以诱导细胞凋亡。 DFNA5基因的表观遗传沉默与不同类型的癌症相关,包括胃癌和结肠直肠癌以及乳腺肿瘤。我们在酵母中引入了野生型和突变型DFNA5等位基因。酵母细胞对野生型蛋白的表达具有很好的耐受性,尽管当该蛋白发生降解并在细胞进入双峰移位时经常沉积在不同的病灶中。相反,细胞存在应对突变DFNA5的问题,尽管表达水平出现明显的补偿性降低,但突变蛋白仍引发明显的生长缺陷,这部分归因于其与线粒体的相互作用。一致地,具有突变DFNA5的细胞显示出显着增加的ROS水平和程序性细胞死亡的迹象。后者独立于酵母半胱天冬酶Mca1发生,但涉及线粒体裂变蛋白Fis1,电压依赖性阴离子通道蛋白Por1和线粒体腺嘌呤核苷酸转运蛋白Aac1和Aac3。最新数据表明DFNA5毒性与外显子2–6编码的球形结构域相关。我们通过显示仅此结构域的表达即可赋予很强的生长表型来证实这些数据。此外,我们在此结构域中鉴定出一个点突变体,该突变体完全消除了其在酵母以及人类人胚肾293T细胞(HEK293T)中的细胞毒性。综合来看,我们的数据强调了酵母系统为进一步剖析DFNA5的凋亡特性提供了一种有价值的工具。

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