首页> 美国卫生研究院文献>The Journal of Biological Chemistry >RED a Spindle Pole-associated Protein Is Required for Kinetochore Localization of MAD1 Mitotic Progression and Activation of the Spindle Assembly Checkpoint
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RED a Spindle Pole-associated Protein Is Required for Kinetochore Localization of MAD1 Mitotic Progression and Activation of the Spindle Assembly Checkpoint

机译:RED纺锤极相关蛋白MAD1的线粒体定位有丝分裂进行和纺锤体装配检查点的激活是必需的

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摘要

The spindle assembly checkpoint (SAC) is essential for ensuring the proper attachment of kinetochores to the spindle and, thus, the precise separation of paired sister chromatids during mitosis. The SAC proteins are recruited to the unattached kinetochores for activation of the SAC in prometaphase. However, it has been less studied whether activation of the SAC also requires the proteins that do not localize to the kinetochores. Here, we show that the nuclear protein RED, also called IK, a down-regulator of human leukocyte antigen (HLA) II, interacts with the human SAC protein MAD1. Two RED-interacting regions identified in MAD1 are from amino acid residues 301–340 and 439–480, designated as MAD1(301–340) and MAD1(439–480), respectively. Our observations reveal that RED is a spindle pole-associated protein that colocalizes with MAD1 at the spindle poles in metaphase and anaphase. Depletion of RED can cause a shorter mitotic timing, a failure in the kinetochore localization of MAD1 in prometaphase, and a defect in the SAC. Furthermore, the RED-interacting peptides MAD1(301–340) and MAD1(439–480), fused to enhanced green fluorescence protein, can colocalize with RED at the spindle poles in prometaphase, and their expression can abrogate the SAC. Taken together, we conclude that RED is required for kinetochore localization of MAD1, mitotic progression, and activation of the SAC.
机译:纺锤体装配检查点(SAC)对于确保将动粒体正确地固定在纺锤体上以及因此在有丝分裂过程中配对姐妹染色单体的精确分离至关重要。将SAC蛋白募集到未连接的动植物中,以在前中期激活SAC。但是,关于SAC的激活是否还需要不定位于动植物的蛋白质的研究较少。在这里,我们显示核蛋白RED,也称为IK,人类白细胞抗原(HLA)II的下调剂,与人类SAC蛋白MAD1相互作用。 MAD1中鉴定出的两个RED相互作用区域分别来自氨基酸残基301-340和439-480,分别命名为MAD1(301-340)和MAD1(439-480)。我们的观察结果表明,RED是一种与纺锤极相关的蛋白,在中期和后期,它与MAD1在纺锤极共定位。 RED的耗尽会导致有丝分裂时间缩短,前期MAD1的线粒体定位失败和SAC缺陷。此外,与增强型绿色荧光蛋白融合的RED相互作用肽MAD1(301-340)和MAD1(439-480)可以与RED在前中期纺锤极共定位,它们的表达可以消除SAC。两者合计,我们得出结论,RED是MAD1的线粒体定位,有丝分裂进程和SAC激活所必需的。

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