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The prolyl isomerase FKBP25 regulates microtubule polymerization impacting cell cycle progression and genomic stability

机译:脯氨酰异构酶FKBP25调节微管聚合撞击细胞周期进展和基因组稳定性

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摘要

FK506 binding proteins (FKBPs) catalyze the inter-conversion of cis-trans proline conformers in proteins. Importantly, FK506 drugs have anti-cancer and neuroprotective properties, but the effectors and mechanisms underpinning these properties are not well understood because the cellular function(s) of most FKBP proteins are unclear. FKBP25 is a nuclear prolyl isomerase that interacts directly with nucleic acids and is associated with several DNA/RNA binding proteins. Here, we show the catalytic FKBP domain binds microtubules (MTs) directly to promote their polymerization and stabilize the MT network. Furthermore, FKBP25 associates with the mitotic spindle and regulates entry into mitosis. This interaction is important for mitotic spindle dynamics, as we observe increased chromosome instability in FKBP25 knockdown cells. Finally, we provide evidence that FKBP25 association with chromatin is cell-cycle regulated by Protein Kinase C phosphorylation. This disrupts FKBP25-DNA contacts during mitosis while maintaining its interaction with the spindle apparatus. Collectively, these data support a model where FKBP25 association with chromatin andMTs is carefully choreographed to ensure faithful genome duplication. Additionally, they highlight that FKBP25 is a MT-associated FK506 receptor and potential therapeutic target in MT-associated diseases.
机译:FK506结合蛋白(FKBPS)催化蛋白质中CIS-Trans ProLine符合子的互换。重要的是,FK506药物具有抗癌和神经保护性能,但效果和机制尚不清楚这些性质的效果和机制是因为大多数FKBP蛋白质的细胞功能尚不清楚。 FKBP25是一种核脯氨酰异构酶,其直接与核酸相互作用,并且与几种DNA / RNA结合蛋白相关。这里,我们显示催化FKBP结构域直接结合微管(MTS)以促进其聚合并稳定MT网络。此外,FKBP25与有丝分裂主轴联系起来并调节进入有丝分裂。这种相互作用对于有丝分裂主轴动态非常重要,因为我们观察到FKBP25敲低细胞中的染色体不稳定性增加。最后,我们提供了与染色质的FKBP25与染色质的关联是通过蛋白激酶C磷酸化调节的细胞周期。这在有丝分裂期间破坏了FKBP25-DNA接触,同时保持其与主轴装置的相互作用。统称,这些数据支持与染色质ANDMTS的FKBP25关联的模型,以仔细思考,以确保忠实的基因组复制。另外,它们突出显示FKBP25是MT相关的FK506受体和MT相关疾病中的潜在治疗靶标。

著录项

  • 来源
    《Nucleic Acids Research》 |2018年第5期|共20页
  • 作者单位

    Univ Victoria Dept Biochem &

    Microbiol Victoria BC V8W 3P6 Canada;

    Univ Victoria Dept Biochem &

    Microbiol Victoria BC V8W 3P6 Canada;

    Univ Victoria Div Med Sci Victoria BC V8P 5C2 Canada;

    Univ Victoria Div Med Sci Victoria BC V8P 5C2 Canada;

    Univ Victoria Dept Biochem &

    Microbiol Victoria BC V8W 3P6 Canada;

    Univ Victoria Genome BC Prote Ctr Vancouver Isl Technol Pk Victoria BC V8Z 7X8 Canada;

    Univ British Columbia BC Canc Agcy Genome Sci Ctr Vancouver BC V6T 1Z3 Canada;

    Univ Victoria Genome BC Prote Ctr Vancouver Isl Technol Pk Victoria BC V8Z 7X8 Canada;

    Univ Victoria Genome BC Prote Ctr Vancouver Isl Technol Pk Victoria BC V8Z 7X8 Canada;

    Univ British Columbia BC Canc Agcy Genome Sci Ctr Vancouver BC V6T 1Z3 Canada;

    Univ Victoria Div Med Sci Victoria BC V8P 5C2 Canada;

    Univ Victoria Dept Biochem &

    Microbiol Victoria BC V8W 3P6 Canada;

    Univ Victoria Dept Biochem &

    Microbiol Victoria BC V8W 3P6 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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