首页> 美国卫生研究院文献>RNA >Tissue-specific autoregulation of Drosophila suppressor of forked by alternative poly(A) site utilization leads to accumulation of the suppressor of forked protein in mitotically active cells.
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Tissue-specific autoregulation of Drosophila suppressor of forked by alternative poly(A) site utilization leads to accumulation of the suppressor of forked protein in mitotically active cells.

机译:果蝇的果蝇抑制剂的组织特异性自动调节通过替代的poly(A)站点利用导致有丝分裂活性细胞中叉蛋白的抑制剂的积累。

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摘要

The Suppressor of forked protein is the Drosophila homolog of the 77K subunit of human cleavage stimulation factor, a complex required for the first step of the mRNA 3'-end-processing reaction. We have shown previously that wild-type su(f) function is required for the accumulation of a truncated su(f) transcript polyadenylated in intron 4 of the gene. This led us to propose a model in which the Su(f) protein would negatively regulate its own accumulation by stimulating 3'-end formation of this truncated su(f) RNA. In this article, we demonstrate this model and show that su(f) autoregulation is tissue specific. The Su(f) protein accumulates at a high level in dividing tissues, but not in nondividing tissues. We show that this distribution of the Su(f) protein results from stimulation by Su(f) of the tissue-specific utilization of the su(f) intronic poly(A) site, leading to the accumulation of the truncated su(f) transcript in nondividing tissues. Utilization of this intronic poly(A) site is affected in a su(f) mutant and restored in the mutant with a transgene encoding wild-type Su(f) protein. These data provide an in vivo example of cell-type-specific regulation of a protein level by poly(A) site choice, and confirm the role of Su(f) in regulation of poly(A) site utilization.
机译:分叉蛋白的抑制物是人卵裂刺激因子77K亚基的果蝇同源物,这是mRNA 3'末端加工反应第一步所需的复合物。先前我们已经表明,野生型su(f)功能对于基因的内含子4中截短的su(f)转录多聚腺苷酸的积累是必需的。这导致我们提出了一个模型,其中Su(f)蛋白将通过刺激这种截短的su(f)RNA的3'端形成来负调控自身的积累。在本文中,我们演示了此模型并显示su(f)自动调节是组织特异性的。 Su(f)蛋白在分裂组织中高水平积累,但在非分裂组织中不高。我们表明Su(f)蛋白的这种分布是由Su(f)刺激su(f)内含子poly(A)部位的组织特异性利用而引起的,导致截短的su(f)积累非分裂组织中的转录本。此内含子poly(A)位点的使用在su(f)突变体中受到影响,并通过编码野生型Su(f)蛋白的转基因在突变体中恢复。这些数据提供了通过poly(A)位置选择对蛋白质水平进行细胞类型特异性调节的体内示例,并证实了Su(f)在调节poly(A)位置利用中的作用。

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