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Structural basis of Vps4 function and regulation in the multivesicular body pathway.

机译:Vps4功能的结构基础和多囊体途径中的调节。

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摘要

The multivesicular body (MVB) pathway is an important biological process that functions in a number of different physiological and pathological settings in the eukaryotic cells, including down-regulation of cell surface receptor signaling, enveloped virus budding and abscission during cytokinesis. The AAA ATPase Vps4 plays a pivotal role in this pathway by catalyzing structural remodeling of the membrane-associated Endosomal Sorting Complexes Required for Transport (ESCRT) machinery. This activity leads to the recycling of the ESCRT machinery and may also be linked to membrane fission.;The active form of Vps4 is a double-ring dodecameric structure in the presence of ATP. The crystal structure of S. cerevisiae Vps4 shows the protein contains a canonical AAA domain fold and undergoes conformational change upon nucleotide binding, providing a possible mechanism of oligomerization. Positive regulators Vta1, Vps60 and Did2 and negative regulator Ist1 further modulate the activity of Vps4 in the cell. Structural and biochemical analyses of these proteins and their interactions with Vps4 provide further insights into their mechanisms of action. Vta1 is organized into two well-folded domains connected by a flexible linker region. The dimeric C-terminal domain is responsible for Vps4 binding. It stimulates the ATPase activity of Vps4 by stabilizing the double-ring structure. The N-terminal domain contains two tandem MIT domains previously seen in the N-terminal ESCRT-III-binding domain of Vps4. The second MIT domain contains Vps60 and Did2 binding activity, and these interactions further stimulate the Vps4 activity in a Vta1-dependent manner. Ist1 contains a well-folded N-terminal domain and a C-terminal MIT-interacting motif. The crystal structure of the N-terminal domain of Ist1 reveals it resembles the fold of an ESCRT-III protein, suggesting that Ist1 might inhibit Vps4 activity by acting as a substrate mimic. Ist1 also interacts with Did2 via a novel binding mechanism and this interaction is important for both yeast vacuolar sorting and mammalian cytokinesis. Taken together, these results enable us to better understand the molecular mechanism of Vps4 function and its regulation in the MVB pathway.
机译:多囊泡体(MVB)途径是一个重要的生物学过程,在真核细胞的许多不同生理和病理环境中起作用,包括细胞表面受体信号传导下调,包膜病毒出芽和胞质分裂过程中的脱落。 AAA ATPase Vps4通过催化运输所需的膜相关内体分选复合物的结构重塑,在该途径中起关键作用。这种活性导致ESCRT机械的回收,也可能与膜裂变有关。Vps4的活性形式是在ATP存在下的双环十二聚体结构。酿酒酵母Vps4的晶体结构显示该蛋白质包含一个规范的AAA结构域折叠,并在核苷酸结合后发生构象变化,从而提供了可能的寡聚机制。正调节器Vta1,Vps60和Did2和负调节器Ist1进一步调节细胞中Vps4的活性。这些蛋白质的结构和生化分析及其与Vps4的相互作用为它们的作用机理提供了进一步的见解。 Vta1被组织成两个通过柔性连接器区域连接的折叠区域。二聚体C末端结构域负责Vps4结合。它通过稳定双环结构来刺激Vps4的ATPase活性。 N末端域包含两个串联的MIT域,先前在Vps4的N末端ESCRT-III结合域中可见。第二个MIT域包含Vps60和Did2结合活性,并且这些相互作用进一步以Vta1依赖的方式刺激Vps4活性。 Ist1包含一个折叠良好的N端结构域和一个C端MIT相互作用基序。 Ist1的N末端结构域的晶体结构表明它类似于ESCRT-III蛋白的折叠,表明Ist1可能通过充当底物模拟物来抑制Vps4活性。 Ist1还通过一种新型的结合机制与Did2相互作用,这种相互作用对于酵母液泡分选和哺乳动物胞质分裂都是重要的。综上所述,这些结果使我们能够更好地了解Vps4功能的分子机制及其在MVB途径中的调控。

著录项

  • 作者

    Xiao, Junyu.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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