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MEMBRANE TARGETING OF FATTY ACYLATED PROTOONCOPROTEINS

MEMBRANE TARGETING OF FATTY ACYLATED PROTOONCOPROTEINS
脂肪酰化原蛋白的膜靶向
批准号:
6019462
负责人:
MARILYN D RESH
金额:
$22.44万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-08-01 至 2002-06-30

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中文摘要
翻译
这项研究的总体目标是了解蛋白质的作用。 脂肪酰化在指导亚细胞定位和功能中的作用 正常和致癌信号蛋白。的Src家族成员 酪氨酸蛋白激酶将被用作模型系统。膜 这些蛋白质的附着对它们的功能至关重要,而 膜靶向机制涉及共价 用棕榈酸酯和/或肉豆蔻酸改性。建议进行的实验 旨在解决3个关键问题:1)如何 针对特定膜亚结构域的脂肪酰化蛋白?这个 双酰化的Src家族激酶Fyn定位于非 离子洗涤剂抗性膜结构域将在 体外培养。非酰化、肉豆蔻酰化和肉豆蔻酰化+的结合 棕榈酰化Fyn制备具有特定磷脂组成的脂质体 将被量化;将小窝蛋白-1掺入 将对脂质体进行评估。2)信号蛋白能发挥功能吗 通过附着不同类型的膜靶向基序而改变? 编码不同脂肪酰化/戊烯基化信号的序列将 与c-Raf-1融合,并将构建物放置在诱导物 推动者。修饰后的RAF启动下行的能力 通过MAP激酶通路的信号将被确定。3)什么 Fyn及其脂肪酰化在正常细胞功能中的作用?我们 最近确定了少突胶质细胞,即产生髓鞘的细胞 依赖于Fyn的上调进行分化。 我们将测试wt、显性负离子和脂肪酰化能力。 Fyn突变体促进少突胶质细胞分化过程。
英文摘要
The overall goal of this research is to understand the role of protein fatty acylation in directing subcellular localization and function of normal and oncogenic signaling proteins. Members of the Src family of tyrosine protein kinases will be used as model systems. Membrane attachment of these proteins is critical for their function, and the mechanism responsible for membrane targeting involves covalent modification with palmitate and/or myristate. The experiments proposed in this application are designed to address 3 key questions: 1) How are fatty acylated proteins targeted to specific membrane subdomains? The ability of the dually acylated Src family kinase Fyn to localize to non- ionic detergent-resistant membrane domains will be reconstituted in vitro. Binding of non-acylated, myristoylated, and myristoylated + palmitoylated Fyn to liposomes with specific phospholipid compositions will be quantitated; the effect of incorporating caveolin-1 into the liposomes will be assessed. 2) Can signaling protein function be altered by attachment of different types of membrane targeting motifs? Sequences encoding different fatty acylation/prenylation signals will be fused to c-Raf-1 and the constructs placed under an inducible promoter. The ability of the modified Raf to initiate downstream signaling through the MAP kinase pathway will be determined. 3) What is the role of Fyn and its fatty acylation in normal cell function? We recently determined that oligodendrocytes, the myelin producing cells of the CNS, are dependent on upregulation of Fyn for differentiation. We will test the abilities of wt, dominant negative and fatty acylation mutants of Fyn to promote the oligodendrocyte differentiation process.
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