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The domino SWI2/SNF2 Gene Product Represses Cell Death in Drosophila melanogaster

机译:多米诺骨牌SWI2 / SNF2基因产物抑制果蝇的细胞死亡

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摘要

The Drosophila domino locus encodes DNA-dependent ATPases of the SWI2/SNF2 class. This class of chromatin remodeler is associated with an array of cellular activities encompassing transcription, replication, repair and recombination. Moreover, domino was observed initially to maintain a repressive chromatin state via genetic interaction studies with homeotic genes. Although domino mutations were also characterized with a cell death phenotype, its association with a death pathway has not been investigated. Here we have used targeted RNA interference to depress domino function in the wing. Resultant wing damage phenotypes were found to be enhanced through overexpression of pro-apoptotic loci, and suppressed through loss of function of these loci. Loss of wing margin and blade tissue was correlated with activation of the effector Caspase Dcp-1, a marker for apoptosis. The affected wing regions also exhibited lower levels of the DIAP1 protein, an inhibitor of apoptosis. The lower level of DIAP1 protein was not correlated with an effect on the activity of a DIAP1 gene transgenic reporter (thread-LacZ), suggesting that loss of DIAP1 occurred post transcriptionally. In some cases excessive cell proliferation within the targeted tissue, measured through BrdU incorporation, was also observed. Finally, we used a transgenic reporter construct to monitor the chromatin state upstream of the proapoptotic reaper locus. In genotypes exhibiting targeted domino loss and wing phenotypes, we observed increased reporter activity only in the affected areas. These data support the conclusion that domino normally functions to maintain pro-apoptotic genes in a repressed state.
机译:果蝇多米诺骨牌基因座编码SWI2 / SNF2类的DNA依赖性ATPase。这类染色质重塑剂与一系列细胞活性有关,包括转录,复制,修复和重组。此外,最初通过与同源基因的遗传相互作用研究观察到多米诺维持染色质的抑制状态。尽管多米诺骨突变也具有细胞死亡表型的特征,但尚未研究其与死亡途径的关系。在这里,我们使用靶向RNA干扰来抑制机翼中的多米诺骨牌功能。发现导致的机翼损伤表型通过促凋亡基因座的过表达得到增强,并通过这些基因座的功能丧失得到抑制。翼缘和叶片组织的丧失与效应细胞胱天蛋白酶Dcp-1(细胞凋亡的标志物)的激活相关。受影响的机翼区域还显示出较低水平的DIAP1蛋白(一种凋亡抑制剂)。 DIAP1蛋白的较低水平与对DIAP1基因转基因报告基因(thread-LacZ)的活性没有影响,表明DIAP1的丢失发生在转录后。在某些情况下,还观察到通过BrdU掺入测量的靶组织内过度的细胞增殖。最后,我们使用了转基因报告基因构建体来监测促凋亡收割基因座上游的染色质状态。在表现出有针对性的多米诺骨牌损失和翅膀表型的基因型中,我们观察到仅在受影响的区域中报告基因活性增加。这些数据支持这样的结论,即多米诺骨牌正常运作以将促凋亡基因维持在受阻状态。

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