首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Motif from Lys216 to Lys222 in Human BUB3 Protein Is a Nuclear Localization Signal and Critical for BUB3 Function in Mitotic Checkpoint
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A Motif from Lys216 to Lys222 in Human BUB3 Protein Is a Nuclear Localization Signal and Critical for BUB3 Function in Mitotic Checkpoint

机译:人BUB3蛋白中从Lys216到Lys222的母题是核定位信号对有丝分裂关卡中BUB3的功能至关重要

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摘要

Human BUB3 is a key mitotic checkpoint factor that recognizes centromeric components and recruits other mitotic checkpoint molecules to the unattached kinetochore. The key amino acid residues responsible for its localization are not yet defined. In this study, we identified a motif from Lys216 to Lys222 in BUB3 as its nuclear localization signal. A BUB3 mutant with deletion of this motif (Del216–222) was found to localize to both the cytoplasm and the nucleus, distinct from the exclusively nuclear distribution of wild-type BUB3. Further analysis revealed that residues Glu213, Lys216, Lys217, Lys218, Tyr219, and Phe221, but not Lys222, contribute to nuclear localization. Interestingly, the nuclear localization signal was also critical for the kinetochore localization of BUB3. The deletion mutant Del216–222 and a subtle mutant with four residue changes in this region (E213Q/K216E/K217E/K218E (QE)) did not localize to the kinetochore efficiently or mediate mitotic checkpoint arrest. Protein interaction data suggested that the QE mutant was able to interact with BUB1, MAD2, and BubR1 but that its association with the centromeric components CENP-A and KNL1 was impaired. A motif from Leu61 to Leu65 in CENP-A was found to be involved in the association of BUB3 and CENP-A in cells; however, further assays suggested that CENP-A does not physically interact with BUB3 and does not affect BUB3 localization. Our findings help to dissect the mechanisms of BUB3 in mitotic checkpoint signaling.
机译:人BUB3是关键的有丝分裂检查点因子,可识别着丝粒成分,并将其他有丝分裂检查点分子募集到未连接的动粒上。尚未确定负责其定位的关键氨基酸残基。在这项研究中,我们确定了BUB3中从Lys 216 到Lys 222 的基序是其核定位信号。发现具有该基序缺失的BUB3突变体(Del216–222)位于细胞质和细胞核,这与野生型BUB3的纯核分布不同。进一步分析显示残基Glu 213 ,Lys 216 ,Lys 217 ,Lys 218 ,Tyr 219 和Phe 221 而不是Lys 222 有助于核定位。有趣的是,核定位信号对于BUB3的线粒体定位也至关重要。缺失突变体Del216–222和在该区域具有四个残基变化的细微突变体(E213Q / K216E / K217E / K218E(QE))没有有效地定位于动线粒体或不能介导有丝分裂检查点的阻滞。蛋白质相互作用数据表明,QE突变体能够与BUB1,MAD2和BubR1相互作用,但其与着丝粒成分CENP-A和KNL1的结合受到损害。发现CENP-A中Leu 61 到Leu 65 的基序与细胞中BUB3和CENP-A的缔合有关。但是,进一步的分析表明CENP-A不会与BUB3发生物理相互作用,也不会影响BUB3的定位。我们的发现有助于剖析BUB3在有丝分裂检查点信号传导中的机制。

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