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Localization of the Drosophila Rad9 Protein to the Nuclear Membrane Is Regulated by the C-Terminal Region and Is Affected in the Meiotic Checkpoint

机译:果蝇Rad9蛋白到核膜的本地化由C端区域调节,并在减数分裂检查站中受到影响。

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摘要

Rad9, Rad1, and Hus1 (9-1-1) are part of the DNA integrity checkpoint control system. It was shown previously that the C-terminal end of the human Rad9 protein, which contains a nuclear localization sequence (NLS) nearby, is critical for the nuclear transport of Rad1 and Hus1. In this study, we show that in Drosophila, Hus1 is found in the cytoplasm, Rad1 is found throughout the entire cell and that Rad9 (DmRad9) is a nuclear protein. More specifically, DmRad9 exists in two alternatively spliced forms, DmRad9A and DmRad9B, where DmRad9B is localized at the cell nucleus, and DmRad9A is found on the nuclear membrane both in Drosophila tissues and also when expressed in mammalian cells. Whereas both alternatively spliced forms of DmRad9 contain a common NLS near the C terminus, the 32 C-terminal residues of DmRad9A, specific to this alternative splice form, are required for targeting the protein to the nuclear membrane. We further show that activation of a meiotic checkpoint by a DNA repair gene defect but not defects in the anchoring of meiotic chromosomes to the oocyte nuclear envelope upon ectopic expression of non-phosphorylatable Barrier to Autointegration Factor (BAF) dramatically affects DmRad9A localization. Thus, by studying the localization pattern of DmRad9, our study reveals that the DmRad9A C-terminal region targets the protein to the nuclear membrane, where it might play a role in response to the activation of the meiotic checkpoint.
机译:Rad9,Rad1和Hus1(9-1-1)是DNA完整性检查点控制系统的一部分。先前已显示,人类Rad9蛋白的C末端包含附近的核定位序列(NLS),对于Rad1和Hus1的核转运至关重要。在这项研究中,我们表明在果蝇中,在细胞质中发现了Hus1,在整个细胞中都发现了Rad1,而Rad9(DmRad9)是一种核蛋白。更具体地说,DmRad9以两种交替剪接的形式存在,即DmRad9A和DmRad9B,其中DmRad9B位于细胞核中,而DmRad9A在果蝇组织中以及在哺乳动物细胞中表达时都存在于核膜上。尽管DmRad9的两个选择性剪​​接形式均在C末端附近包含一个公共NLS,但DmRad9A的32个C末端残基对这种替代性剪接形式具有特异性,是将蛋白质靶向核膜所必需的。我们进一步表明通过DNA修复基因缺陷减数分裂检查点的激活,但不是减数分裂染色体锚定到卵母细胞核被膜上的缺陷,在非磷酸化屏障对自身整合因子(BAF)的异位表达会极大地影响DmRad9A的定位。因此,通过研究DmRad9的定位模式,我们的研究表明DmRad9A的C端区域将蛋白质靶向核膜,在此蛋白质可能对减数分裂检查点的激活起反应。

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