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PHENOTYPIC INTERACTIONS OF SPINSTER WITH THE GENES ENCODING PROTEINS FOR CELL DEATH CONTROL IN Drosophila melanogaster

机译:纺锤体与编码果蝇细胞死亡的基因编码蛋白的表型相互作用

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The spin gene was first identified by its mutant phenotype, which is characterized by extremely strong mate refusal by females in response to male courtship in Drosophila. Spin mutants are also known to be accompanied by a remarkable reduction in programmed cell death in the reproductive and nervous systems. To better understand the molecular functions of spin, we searched for its genetic modifiers. Forced expression of spin~+ in somatic cells as driven by ptc-Gal4 in the testis resulted in the invasion of mature sperm into the anterior testes tip, which is otherwise occupied only by immature germ cells. To obtain genes that modulate spin's effect, the gain-of-function spin phenotype was observed in the presence of a chromosome harboring an EP or GSP-element insertion, which initiates transcription of the genomic sequence neighboring the insertion site. We isolated th and emc as suppressors of spin and atg8a as a gene that reproduces the spin phenotype on its own. th encodes Inhibitor of apoptosis-1, and mammalian Id genes homologous to emc are known to inhibit apoptosis. atg8a encodes a protein essential for autophagy. These results suggest that spin promotes cell death mechanisms that are regulated negatively by th and emc and positively by atg8a.
机译:自旋基因首先通过其突变表型鉴定,其特征是雌性对果蝇中男性求偶的反应非常强烈地拒绝配偶。旋转突变体还伴随着生殖和神经系统程序性细胞死亡的显着减少。为了更好地了解自旋的分子功能,我们搜索了其遗传修饰因子。 ptc-Gal4在睾丸中驱动体细胞中spin〜+的强迫表达导致成熟精子浸入睾丸前部尖端,否则仅被未成熟生殖细胞占据。为了获得调节自旋效应的基因,在存在带有EP或GSP元素插入的染色体的情况下观察到了功能增强自旋表型,该染色体启动了插入位点附近的基因组序列的转录。我们分离了th和emc作为自旋的抑制剂,并分离了atg8a作为自己复制自旋表型的基因。 th编码细胞凋亡抑制剂1,已知与emc同源的哺乳动物Id基因可抑制细胞凋亡。 atg8a编码自噬必不可少的蛋白质。这些结果表明,自旋促进了由th和emc负调控,由atg8a负调控的细胞死亡机制。

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