首页> 外文学位 >Drosophila Wnt-1/Wingless undergoes a hydrophobic modification and is targeted to lipid rafts for secretion, a process that requires Porcupine.
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Drosophila Wnt-1/Wingless undergoes a hydrophobic modification and is targeted to lipid rafts for secretion, a process that requires Porcupine.

机译:果蝇Wnt-1 / Wingless经过疏水修饰,靶向脂质筏进行分泌,该过程需要豪猪。

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摘要

Wnt ligands are a family of highly conserved glycoproteins that act as morphogens to regulate development in many organisms. Drosophila Wnt-1 (Wingless) is involved in directing cell fate decisions and pattern formation during differentiation. Wnt signaling are of high interest of many developmental biologists due to their important functions, yet little is known about how these ligands function on a biochemical level. Previously it was found that Porcupine, an ER-membrane-bound acyltransferase is required for Wingless secretion. But it is unclear how a secreted morphogen requires an acyltransferase to function. Studies reported here demonstrated that Wingless undergoes a hydrophobic modification, in which a lipid moiety containing a palmitate group is covalently attached to the polypeptide through an ester linkage. And it partitions with the specialized detergent insoluble lipid raft microdomains in the plasma membrane. Porcupine is required for the modification and the raft targeting of Wingless. Blocking Wingless modification with a specific inhibitor results in the loss of rafts-association as well as loss of protein secretion. Disrupting raft microstructures by cholesterol depletion reagents also impaired Wingless secretion, indicating that the ligand secretion is dependent on its specific association with the plasma membrane. This work provided the first insight on the function of Porcupine and the important biochemical evidence on the role of specialized membrane microdomains in Wnt signaling.
机译:Wnt配体是一类高度保守的糖蛋白,可作为形态发生素来调节许多生物体的发育。果蝇Wnt-1(无翅)参与指导分化过程中细胞命运的决定和模式的形成。 Wnt信号由于其重要功能而受到许多发育生物学家的高度关注,但对这些配体如何在生化水平上起作用的了解却很少。以前发现无翅分泌需要豪猪(一种ER-膜结合的酰基转移酶)。但是尚不清楚分泌的吗啡原如何需要酰基转移酶起作用。此处报道的研究表明Wingless经历了疏水修饰,其中含有棕榈酸酯基团的脂质部分通过酯键共价附于多肽。并且在质膜中与专门的去污剂不溶性脂筏微区隔开。豪猪是Wingless的改型和筏定目标所必需的。用特定的抑制剂阻止无翅修饰导致木筏缔合的丧失以及蛋白质分泌的丧失。胆固醇消耗试剂破坏筏的微结构也损害了Wingless分泌,表明配体分泌取决于其与质膜的特异性结合。这项工作提供了关于豪猪的功能的第一个见识,以及有关专门的膜微区在Wnt信号传导中的作用的重要生化证据。

著录项

  • 作者

    Hill, Xiaoling.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Biology Cell.;Biology Molecular.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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