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Limited Functional Redundancy and Oscillation of Cyclins in Multinucleated Ashbya gossypii Fungal Cells

机译:有限的功能冗余和细胞周期蛋白在多核Ashbya棉酚真菌细胞中的振荡。

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Cyclin protein behavior has not been systematically investigated in multinucleated cells with asynchronous mitoses. Cyclins are canonical oscillating cell cycle proteins, but it is unclear how fluctuating protein gradients can be established in multinucleated cells where nuclei in different stages of the division cycle share the cytoplasm. Previous work in A. gossypii, a filamentous fungus in which nuclei divide asynchronously in a common cytoplasm, demonstrated that one G1 and one B-type cyclin do not fluctuate in abundance across the division cycle. We have undertaken a comprehensive analysis of all G1 and B-type cyclins in A. gossypii to determine whether any of the cyclins show periodic abundance across the cell cycle and to examine whether cyclins exhibit functional redundancy in such a cellular environment. We localized all G1 and B-type cyclins and notably found that only AgClb5/6p varies in subcellular localization during the division cycle. AgClb5/6p is lost from nuclei at the meta-anaphase transition in a D-box-dependent manner. These data demonstrate that efficient nuclear autonomous protein degradation can occur within multinucleated cells residing in a common cytoplasm. We have shown that three of the five cyclins in A. gossypii are essential genes, indicating that there is minimal functional redundancy in this multinucleated system. In addition, we have identified a cyclin, AgClb3/4p, that is essential only for sporulation. We propose that the cohabitation of different cyclins in nuclei has led to enhanced substrate specificity and limited functional redundancy within classes of cyclins in multinucleated cells.
机译:细胞周期蛋白的蛋白质行为尚未在具有异步有丝分裂的多核细胞中进行系统研究。细胞周期蛋白是典型的振荡细胞周期蛋白,但是目前尚不清楚如何在多核细胞中建立起波动的蛋白梯度,在多核细胞中,分裂周期不同阶段的核共享细胞质。 A中的先前工作。 gossypii 是一种丝状真菌,其中的核在一个共同的细胞质中异步分裂,这表明一个G1和一个B型细胞周期蛋白在整个分裂周期中不会发生大量波动。我们对 A中的所有G1和B型细胞周期蛋白进行了全面分析。 gossypii 来确定是否有任何细胞周期蛋白在整个细胞周期中都显示出周期性的丰度,并检查细胞周期蛋白在这种细胞环境中是否表现出功能冗余。我们本地化了所有G1和B型细胞周期蛋白,并特别发现在分裂周期中只有AgClb5 / 6p的亚细胞定位发生变化。 AgClb5 / 6p以依赖于D-box的方式在亚后期过渡过程中从核中丢失。这些数据表明,有效的核自主蛋白降解可在共同细胞质中的多核细胞内发生。我们已经显示了 A中的五个细胞周期蛋白中的三个。棉酚是必需基因,表明该多核系统的功能冗余极小。此外,我们已经鉴定出一种细胞周期蛋白AgClb3 / 4p,它仅对孢子形成至关重要。我们提出,不同细胞周期蛋白在细胞核中的共居导致多核细胞中细胞周期蛋白类别内底物特异性增强和功能冗余受限。

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