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Shaping meiotic chromosomes with SUMO: a feedback loop controls theassembly of the synaptonemal complex in budding yeast

机译:用SUMO塑造减数分裂染色体:反馈回路控制着酵母中突触复合物的组装

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摘要

The synaptonemal complex (SC) is a meiosis-specific chromosomal structure in which homologous chromosomes are intimately linked through arrays of specialized proteins called transverse filaments (TF). Widely conserved in eukaryote meiosis, the SC forms during prophase I and is essential for accurate segregation of homologous chromosomes at meiosis I. However, the basic mechanism overlooking formation and regulation of the SC has been poorly understood. By using the budding yeast Saccharomyces cerevisiae, we recently showed that SC formation is controlled through the attachment of multiple molecules of small ubiquitin-like modifier (SUMO) to a regulator of TF assembly. Intriguingly, this SUMOylation is activated by TF, implicating the involvement of a positive feedback loop in the control of SC assembly. We discuss the implication of this finding and possible involvement of a similar mechanism in regulating other processes.
机译:突触复合物(SC)是减数分裂特定的染色体结构,其中同源染色体通过称为横向细丝(TF)的专门蛋白阵列紧密连接。 SC在真核生物减数分裂中广泛保守,在前期I期间形成SC,这对于在减数分裂I上准确分离同源染色体至关重要。然而,对SC形成和调控的基本机制了解甚少。通过使用发芽的酵母酿酒酵母,我们最近表明,SC的形成是通过将小分子泛素样修饰剂(SUMO)的多个分子连接到TF装配的调控因子来控制的。有趣的是,这种SUMOylation被TF激活,这牵涉到正反馈回路参与SC组件的控制。我们讨论了这一发现的含义以及类似机制可能参与调节其他过程。

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