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Regulation of SpoIVFB activity during sporulation in Bacillus subtilis, and, Regulation of myosin-VI recruitment to endocytic compartments.

机译:调节枯草芽孢杆菌孢子形成过程中SpoIVFB的活性,调节肌球蛋白VI募集到内吞区室。

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摘要

Regulation of SpoIVFB activity during sporulation in Bacillus subtilis In response to stressful conditions, such as overcrowding or nutrient depletion, Bacilli initiate an alternate developmental pathway leading to the formation of an endospore, a hard, resistant structure able to survive extreme conditions including head, desiccation, and exposure to toxins. Sporulation involves division of a cell into a smaller forespore, which will become the spore, and a larger mother cell, which will ultimately lyse, releasing the spore. During this process a defined series of transcription factors are activated in turn. The final transcription factor to be activated is sigmaK, which regulates genes for the final stages of sporulation including production of the spore coat. The transcription factor sigmaK is activated by SpoIVFB, which is found in the membrane between the mother cell and forespore. SpoIVFB is produced early in sporulation, but is held inactive until later. I show that SpoIVFB is regulated by two separable checkpoints, the activation of sigmaG in the forespore and the completion of forespore engulfment by the mother cell. I also present evidence suggesting that spoIVFB translation is influenced by the translation of the upstream gene spoIVFA.; Regulation of myosin-VI recruitment to endocytic compartments During clathrin-mediated endocytosis, the unconventional myosin myosin-VI acts on two separate organelles: clathrin-coated pits and vesicles, and uncoated vesicles. The targeting of myosin-VI to one or the other vesicle was thought to be mediated by alternative splicing in the cargo-binding tail domain. I show that, while the tail alone is not regulated by splicing, a larger myosin-VI fragment including a portion of the upstream coiled-coil domain is regulated by the presence or absence of a large (32 amino acids) insert. The insert allows targeting to clathrin-coated structures, while myosin-VI lacking the insert is recruited to uncoated vesicles. Myosin-VI recruitment is only mediated by splicing in some cell types; in other cell types, myosin-VI is only recruited to the uncoated vesicles. Overexpression of the myosin-VI adaptor protein Dab2 is sufficient to reroute myosin-VI to the clathrin-coated pits in cell lines where myosin-VI is normally only found on uncoated vesicles.
机译:枯草芽孢杆菌孢子形成过程中SpoIVFB活性的调节为应对压力条件,例如人满为患或营养缺乏,芽孢杆菌会启动一条替代的发育途径,导致形成内生孢子,这是一种坚硬的抗性结构,能够在极端条件下生存,包括头部,干燥,并接触毒素。孢子形成涉及将细胞分裂成较小的前孢子(将成为孢子)和较大的母细胞,将最终裂解,释放孢子。在此过程中,依次激活定义的一系列转录因子。要激活的最终转录因子是sigmaK,它调节孢子形成的最终阶段的基因,包括孢子衣的产生。转录因子sigmaK由SpoIVFB激活,该蛋白存在于母细胞和前孢子之间的膜中。 SpoIVFB在孢子形成的早期产生,但一直保持不活动状态直到后来。我表明SpoIVFB受两个可分离检查点的调节,即前孢子中sigmaG的激活和母细胞对前孢子的吞噬的完成。我也提供证据表明spoIVFB的翻译受上游基因spoIVFA的翻译影响。肌球蛋白VI募集到胞吞区的过程在网格蛋白介导的胞吞过程中,非常规的肌球蛋白肌球蛋白VI作用于两个单独的细胞器:网格蛋白包被的小窝和囊泡,以及未包被的囊泡。肌球蛋白-VI靶向一个或另一个囊泡被认为是由货物绑定尾域中的选择性剪接介导的。我表明,虽然尾部本身不受剪接调控,但较大的肌球蛋白-VI片段(包括上游卷曲螺旋结构域的一部分)受是否存在大(32个氨基酸)插入片段调控。该插入物允许靶向网格蛋白包被的结构,而缺乏插入物的肌球蛋白-VI被募集至未包被的囊泡。肌球蛋白-VI募集仅通过剪接某些细胞类型来介导。在其他细胞类型中,肌球蛋白-VI仅募集至未包被的囊泡。肌球蛋白-VI衔接蛋白Dab2的过表达足以将肌球蛋白-VI重新路由至通常仅在未包被的囊泡上发现的肌球蛋白-VI的细胞系中的网格蛋白包被的凹坑。

著录项

  • 作者

    Dance, Amber Lynn.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Biology Cell.; Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 277 p.
  • 总页数 277
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;微生物学;
  • 关键词

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