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Analysis of Bni4: Revealing new roles for Glc7 at the bud neck in Saccharomyces cerevisiae.

机译:Bni4的分析:揭示酿酒酵母芽颈中Glc7的新作用。

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摘要

Many proteins bind asymmetrically to the septin scaffold at the bud neck of Saccharomyces cerevisiae. Yeast chitin synthase III (CSIII) is targeted to the mother side of the bud neck, where it is thought to be tethered by the septin-associated protein Bni4. Bni4 also associates with the yeast protein phosphatase 1 (PP1) catalytic subunit, Glc7. To identify regions of Bni4 necessary for its functions we created a collection of 23 deletion mutants throughout the length of Bni4. Among the deletion variants that retain the ability to associate with the bud neck, only those deficient in Glc7 binding fail to target CSIII to the neck. A chimeric protein composed of the septin Cdc10 and the C-terminal Glc7-binding domain of Bni4 complements the defects of a bni4Delta mutant, indicating that the C-terminus of Bni4 is necessary and sufficient to target Glc7 and CSIII to the bud neck. A Cdc10-Glc7 chimera fails to target CSIII to the bud neck but is functional in the presence of the C-terminal Glc7-binding domain of Bni4. The conserved C-terminal PP1-binding domain of mammalian Phactr-1 can functionally substitute for the C-terminus of Bni4. These results suggest that the essential role of Bni4 is to target Glc7 to the neck and activate it towards substrates necessary for CSIII recruitment and synthesis of chitin at the bud neck. The asymmetric localization of Bni4 is a robust feature and is retained even in mutants that disrupt septin architecture. However, Bni4 asymmetry is lost under different types of cellular stress, including glucose starvation or activation of cell cycle checkpoints. Our data indicate that loss of Bni4 asymmetry can occur via at least two distinct mechanisms, and may regulate cell cycle checkpoints.
机译:许多蛋白质与酿酒酵母芽颈处的Septin支架不对称结合。酵母几丁质合酶III(CSIII)的靶标是芽颈的母亲侧,据信它是由Septin相关蛋白Bni4束缚的。 Bni4还与酵母蛋白磷酸酶1(PP1)催化亚基Glc7相关。为了鉴定Bni4对其功能必需的区域,我们在整个Bni4的长度上创建了23个缺失突变体的集合。在保留与芽颈结合能力的缺失变体中,只有那些缺乏Glc7结合的突变体无法将CSIII靶向颈部。由Septin Cdc10和Bni4的C末端Glc7结合结构域组成的嵌合蛋白弥补了bni4Delta突变体的缺陷,表明Bni4的C末端对于将Glc7和CSIII靶向芽颈是必要和充分的。 Cdc10-Glc7嵌合体无法将CSIII靶向芽颈,但在Bni4的C端Glc7结合结构域存在时起作用。哺乳动物Phactr-1的保守的C端PP1结合域可以在功能上替代Bni4的C端。这些结果表明,Bni4的基本作用是将Glc7靶向颈部,并将其激活为CSIII募集和芽颈处甲壳质合成所必需的底物。 Bni4的不对称定位是一个强大的功能,即使在破坏septin结构的突变体中也得以保留。但是,Bni4不对称性在不同类型的细胞应激(包括葡萄糖饥饿或细胞周期检查点激活)下会丢失。我们的数据表明Bni4不对称性的丧失可能通过至少两种不同的机制发生,并且可能调节细胞周期检查点。

著录项

  • 作者

    Larson, Jennifer Rae.;

  • 作者单位

    Louisiana State University Health Sciences Center - Shreveport.;

  • 授予单位 Louisiana State University Health Sciences Center - Shreveport.;
  • 学科 Biology Molecular.;Biology Cell.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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