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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Septin-Associated Protein Kinases in the Yeast Saccharomyces cerevisiae
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Septin-Associated Protein Kinases in the Yeast Saccharomyces cerevisiae

机译:酵母酵母中与Septin相关的蛋白激酶

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摘要

Septins are a family of eukaryotic GTP-binding proteins that associate into linear rods, which, in turn, polymerize end-on-end into filaments and further assemble into other, more elaborate super-structures at discrete subcellular locations. Hence, septin-based ensembles are considered elements of the cytoskeleton. One function of these structures that has been well-documented in studies conducted in budding yeast Saccharomyces cerevisiae is to serve as a scaffold that recruits regulatory proteins, which dictate the spatial and temporal control of certain aspects of the cell division cycle. In particular, septin-associated protein kinases couple cell cycle progression with cellular morphogenesis. Thus, septin-containing structures serve as signaling platforms that integrate a multitude of signals and coordinate key downstream networks required for cell cycle passage. This review summarizes what we currently understand about how the action of septin-associated protein kinases and their substrates control information flow to drive the cell cycle into and out of mitosis, to regulate bud growth, and especially to direct timely and efficient execution of cytokinesis and cell abscission. Thus, septin structures represent a regulatory node at the intersection of many signaling pathways. In addition, and importantly, the activities of certain septin-associated protein kinases also regulate the state of organization of the septins themselves, creating a complex feedback loop.
机译:Septins是一类真核GTP结合蛋白,结合到线性杆中,然后依次端对端聚合成细丝,然后在离散的亚细胞位置进一步组装成其他更精细的超结构。因此,基于Septin的集合体被认为是细胞骨架的组成部分。这些结构的功能已在发芽酵母酿酒酵母中进行的研究中得到了充分证明,其功能是用作募集调节蛋白的支架,该蛋白决定了细胞分裂周期某些方面的时空控制。特别地,与Septin相关的蛋白激酶将细胞周期进程与细胞形态发生耦合在一起。因此,含Septin的结构可用作整合大量信号并协调细胞周期通过所需的关键下游网络的信号平台。这篇综述总结了我们目前对与Septin相关的蛋白激酶及其底物的作用如何控制信息流以驱动细胞周期进入有丝分裂或从有丝分裂中退出,调节芽的生长,尤其是指导及时,高效地执行胞质分裂和分裂的了解。细胞脱落。因此,septin结构代表了许多信号传导途径交叉处的调控节点。另外,重要的是,某些与Septin相关的蛋白激酶的活性还调节Septin自身的组织状态,从而形成复杂的反馈环。

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