Moreno-Moreno Olga, Torras-Llort Mònica, Azorín Fernando
Institute of Molecular Biology of Barcelona (IBMB), CSIC, Parc Científic de Barcelona, 08028 Barcelona, Spain.
Nucleic Acids Res. 2006;34(21):6247-55. doi: 10.1093/nar/gkl902. Epub 2006 Nov 7.
Centromere identity is determined by the formation of a specialized chromatin structure containing the centromere-specific histone H3 variant CENP-A. The precise molecular mechanism(s) accounting for the specific deposition of CENP-A at centromeres are still poorly understood. Centromeric deposition of CENP-A, which is independent of DNA replication, might involve specific chromatin assembly complexes and/or specific interactions with kinetochore components. However, transiently expressed CENP-A incorporates throughout chromatin indicating that CENP-A nucleosomes can also be promiscuously deposited during DNA replication. Therefore, additional mechanisms must exist to prevent deposition of CENP-A nucleosomes during replication and/or to remove them afterwards. Here, using transient expression experiments performed in Drosophila Kc cells, we show that proteasome-mediated degradation restricts localization of Drosophila CENP-A (CID) to centromeres by eliminating mislocalized CID as well as by regulating available CID levels. Regulating available CID levels appears essential to ensure centromeric deposition of transiently expressed CID as, when expression is increased in the presence of proteasome inhibitors, newly synthesized CID mislocalizes. Mislocalization of CID affects cell cycle progression as a high percentage of cells showing mislocalized CID are reactive against alphaPSer(10)H3 antibodies, enter mitosis at a very low frequency and show strong segregation defects. However, cells showing reduced amounts of mislocalized CID show normal cell cycle progression.
着丝粒身份由包含着丝粒特异性组蛋白H3变体CENP-A的特殊染色质结构的形成所决定。关于CENP-A在着丝粒处特异性沉积的精确分子机制仍知之甚少。CENP-A的着丝粒沉积独立于DNA复制,可能涉及特定的染色质组装复合物和/或与动粒组件的特定相互作用。然而,瞬时表达的CENP-A会整合到整个染色质中,这表明CENP-A核小体在DNA复制过程中也可能随机沉积。因此,必然存在其他机制来防止CENP-A核小体在复制过程中沉积和/或在复制后将其清除。在这里,通过在果蝇Kc细胞中进行的瞬时表达实验,我们表明蛋白酶体介导的降解通过消除错误定位的CID以及调节可用的CID水平,将果蝇CENP-A(CID)的定位限制在着丝粒。调节可用的CID水平对于确保瞬时表达的CID在着丝粒处沉积似乎至关重要,因为当在蛋白酶体抑制剂存在下表达增加时,新合成的CID会错误定位。CID的错误定位会影响细胞周期进程,因为高比例显示CID错误定位的细胞对αPSer(10)H3抗体有反应,以极低频率进入有丝分裂并表现出强烈的分离缺陷。然而,显示错误定位的CID量减少的细胞表现出正常的细胞周期进程。