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Mutations in the Novel Membrane Protein Spinster Interfere with Programmed Cell Death and Cause Neural Degeneration in Drosophila melanogaster

机译:新型膜蛋白纺锤体中的突变干扰果蝇的程序性细胞死亡并引起神经变性。

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摘要

Mutations in the spin gene are characterized by an extraordinarily strong rejection behavior of female flies in response to male courtship. They are also accompanied by decreases in the viability, adult life span, and oviposition rate of the flies. In spin mutants, some oocytes and adult neural cells undergo degeneration, which is preceded by reductions in programmed cell death of nurse cells in ovaries and of neurons in the pupal nervous system, respectively. The central nervous system (CNS) of spin mutant flies accumulates autofluorescent lipopigments with characteristics similar to those of lipofuscin. The spin locus generates at least five different transcripts, with only two of these being able to rescue the spin behavioral phenotype; each encodes a protein with multiple membrane-spanning domains that are expressed in both the surface glial cells in the CNS and the follicle cells in the ovaries. Orthologs of the spin gene have also been identified in a number of species from nematodes to humans. Analysis of the spin mutant will give us new insights into neurodegenerative diseases and aging.
机译:自旋基因中的突变的特征是雌性果蝇对雄性求偶的异常强烈的排斥行为。它们还伴有蝇的生存力,成年寿命和产卵率下降。在自旋突变体中,一些卵母细胞和成年神经细胞发生变性,这先于降低卵巢中护士细胞和the神经系统中神经元的程序性细胞死亡。自旋突变体果蝇的中枢神经系统(CNS)会积聚具有与脂褐素相似特征的自发荧光脂质体。自旋基因座产生至少五个不同的转录本,其中只有两个能够挽救自旋行为表型。每个编码一个具有多个跨膜结构域的蛋白质,该蛋白质在中枢神经系统的表面神经胶质细胞和卵巢的卵泡细胞中均表达。从线虫到人类,自旋基因的直向同源物也在许多物种中得到鉴定。对自旋突变体的分析将为我们提供有关神经退行性疾病和衰老的新见识。

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