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首页> 外文期刊>The Journal of biological chemistry >The Inner Centromere Protein (INCENP) Coil Is a Single α-Helix (SAH) Domain That Binds Directly to Microtubules and Is Important for Chromosome Passenger Complex (CPC) Localization and Function in Mitosis *
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The Inner Centromere Protein (INCENP) Coil Is a Single α-Helix (SAH) Domain That Binds Directly to Microtubules and Is Important for Chromosome Passenger Complex (CPC) Localization and Function in Mitosis *

机译:内部中心蛋白质(INCENCP)线圈是单个α-螺旋(SAH)结构域,其直接与微管结合,对于染色体乘客综合体(CPC)定位和功能中的功能是重要的 *

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Background: INCENP is predicted to have a coiled coil domain. Results: The coil is actually a stable single α-helix (SAH) domain that is highly extendable and directly binds microtubules. Conclusion: This flexible dog leash may allow Aurora B to associate with dynamic targets in the outer kinetochore. Significance: The SAH domain allows CPC flexibility without requiring complex dimerization. The chromosome passenger complex (CPC) is a master regulator of mitosis. Inner centromere protein (INCENP) acts as a scaffold regulating CPC localization and activity. During early mitosis, the N-terminal region of INCENP forms a three-helix bundle with Survivin and Borealin, directing the CPC to the inner centromere where it plays essential roles in chromosome alignment and the spindle assembly checkpoint. The C-terminal IN box region of INCENP is responsible for binding and activating Aurora B kinase. The central region of INCENP has been proposed to comprise a coiled coil domain acting as a spacer between the N- and C-terminal domains that is involved in microtubule binding and regulation of the spindle checkpoint. Here we show that the central region (213 residues) of chicken INCENP is not a coiled coil but a ~32-nm-long single α-helix (SAH) domain. The N-terminal half of this domain directly binds to microtubules in vitro . By analogy with previous studies of myosin 10, our data suggest that the INCENP SAH might stretch up to ~80 nm under physiological forces. Thus, the INCENP SAH could act as a flexible “dog leash,” allowing Aurora B to phosphorylate dynamic substrates localized in the outer kinetochore while at the same time being stably anchored to the heterochromatin of the inner centromere. Furthermore, by achieving this flexibility via an SAH domain, the CPC avoids a need for dimerization (required for coiled coil formation), which would greatly complicate regulation of the proximity-induced trans-phosphorylation that is critical for Aurora B activation.
机译:背景:预测IVENPP具有盘绕的线圈域。结果:线圈实际上是一种稳定的单α-螺旋(SAH)结构域,其具有高度伸展的并且直接结合微管。结论:这种灵活的狗皮带可以允许Aurora B与外部Kinetochore中的动态目标相关联。意义:SAH域允许CPC灵活性而无需复杂的二聚体。染色体乘客综合体(CPC)是有丝分裂的常规调节因素。内厘米蛋白(INCENCP)充当支架调节CPC定位和活性。在早期有丝分裂期间,INCENP的N-末端区域形成三螺旋束,其具有Survivin和Borealin,将CPC引导到内厘米,其中它在染色体对准和主轴组件检查点中起着基本作用。 INCENPP的框区域中的C末端负责结合和活化极光B激酶。已经提出了INCEnpp的中心区域,以包括作为在涉及涉及微管粘合和轴检查点的微管结合和调节的N-和C末端结构域之间的卷绕线圈域。在这里,我们表明鸡Incenpp的中心区域(213个残基)不是卷绕线圈,而是一个〜32nm-long的单α-螺旋(SAH)域。该结构域的N末端一半直接与体外微管粘合。通过比喻与以前的肌球蛋白10研究,我们的数据表明,在生理力量下,INVENP SAH可能会延伸到〜80nm。因此,INCENP SAH可以充当柔性“狗皮带”,使Aurora B允许磷酸化的动态基质,同时稳定地锚定到内厘米的异铬胺。此外,通过通过SAH结构域实现这种灵活性,CPC避免了对二聚化(卷绕线圈形成所需)的需要,这将大大复杂化对Aurora B激活至关重要的接近诱导的反式磷酸化的调节。

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