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染色体乘客复合体控制纺锤体检查点功能,这与其在纠正微管动粒相互作用中的作用无关。

The chromosomal passenger complex controls spindle checkpoint function independent from its role in correcting microtubule kinetochore interactions.

作者信息

Vader Gerben, Cruijsen Carin W A, van Harn Tanja, Vromans Martijn J M, Medema René H, Lens Susanne M A

机构信息

Department of Medical Oncology, University Medical Center, 3584 CG Utrecht, The Netherlands.

出版信息

Mol Biol Cell. 2007 Nov;18(11):4553-64. doi: 10.1091/mbc.e07-04-0328. Epub 2007 Aug 15.

Abstract

The chromosomal passenger complex (CPC) is a critical regulator of chromosome segregation during mitosis by correcting nonbipolar microtubule-kinetochore interactions. By severing these interactions, the CPC is thought to create unattached kinetochores that are subsequently sensed by the spindle assembly checkpoint (SAC) to prevent premature mitotic exit. We now show that spindle checkpoint function of the CPC and its role in eliminating nonbipolar attachments can be uncoupled. Replacing the chromosomal passenger protein INCENP with a mutant allele that lacks its coiled-coil domain results in an overt defect in a SAC-mediated mitotic arrest in response to taxol treatment, indicating that this domain is critical for CPC function in spindle checkpoint control. Surprisingly, this mutant could restore alignment and cytokinesis during unperturbed cell divisions and was capable of resolving syntelic attachments. Also, Aurora-B kinase was localized and activated normally on centromeres in these cells, ruling out a role for the coiled-coil domain in general Aurora-B activation. Thus, mere microtubule destabilization of nonbipolar attachments by the CPC is insufficient to install a checkpoint-dependent mitotic arrest, and additional, microtubule destabilization-independent CPC signaling toward the spindle assembly checkpoint is required for this arrest, potentially through amplification of the unattached kinetochore-derived checkpoint signal.

摘要

染色体乘客复合体(CPC)是有丝分裂期间染色体分离的关键调节因子,可纠正非双极微管-动粒相互作用。通过切断这些相互作用,CPC被认为会产生未附着的动粒,随后纺锤体组装检查点(SAC)会感知到这些动粒,以防止有丝分裂过早退出。我们现在表明,CPC的纺锤体检查点功能及其在消除非双极附着中的作用可以解偶联。用缺乏卷曲螺旋结构域的突变等位基因取代染色体乘客蛋白INCENP,会导致在紫杉醇处理后SAC介导的有丝分裂停滞出现明显缺陷,这表明该结构域对于CPC在纺锤体检查点控制中的功能至关重要。令人惊讶的是,这种突变体能够在未受干扰的细胞分裂过程中恢复染色体排列和胞质分裂,并且能够解决染色体并置附着。此外,在这些细胞中,极光激酶B(Aurora-B)在着丝粒上正常定位并激活,排除了卷曲螺旋结构域在一般Aurora-B激活中的作用。因此,仅由CPC对非双极附着进行微管去稳定化不足以引发依赖检查点的有丝分裂停滞,这种停滞还需要额外的、独立于微管去稳定化的CPC向纺锤体组装检查点的信号传导,这可能是通过放大未附着动粒衍生的检查点信号来实现的。

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