Marquardt Joseph, Chen Xi, Bi Erfei
Department of Cell and Developmental Biology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA.
Current affiliation: Department of Biology, Western Kentucky University, Bowling Green, KY.
bioRxiv. 2023 Nov 8:2023.11.08.566235. doi: 10.1101/2023.11.08.566235.
The septin cytoskeleton is extensively regulated by post-translational modifications such as phosphorylation to achieve the diversity of architectures including rings, hourglass, and gauzes. While many of the phosphorylation events of septins have been extensively studied in the budding yeast , the regulation of the kinases involved remains poorly understood. Here we show that two septin-associated kinases, the LKB1/PAR-4-related kinase Elm1 and the Nim1/PAR-1-related kinase Gin4, regulate each other at two discrete points of the cell cycle. During bud emergence, Gin4 targets Elm1 to the bud neck via direct binding and phosphorylation to control septin hourglass assembly and stability. During mitosis, Elm1 maintains Gin4 localization via direct binding and phosphorylation to enable timely remodeling of the septin hourglass into a double ring. This unique synergy ensures that septin architecture is assembled and remodeled in a temporally controlled manner to perform distinct functions during the cell cycle.
Septins细胞骨架通过诸如磷酸化等翻译后修饰受到广泛调控,以实现包括环、沙漏和纱网等多种结构的多样性。虽然在芽殖酵母中已经对Septins的许多磷酸化事件进行了广泛研究,但对相关激酶的调控仍知之甚少。在这里,我们表明两种与Septins相关的激酶,即LKB1/PAR-4相关激酶Elm1和Nim1/PAR-1相关激酶Gin4,在细胞周期的两个不同点相互调控。在芽出现期间,Gin4通过直接结合和磷酸化将Elm1靶向芽颈,以控制Septins沙漏结构的组装和稳定性。在有丝分裂期间,Elm1通过直接结合和磷酸化维持Gin4的定位,以使Septins沙漏结构及时重塑为双环。这种独特的协同作用确保Septins结构以时间控制的方式组装和重塑,以在细胞周期中执行不同的功能。