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来自GTP酶激活蛋白(GAP)和七号染色体失活蛋白(SOS)ras特异性鸟嘌呤核苷酸交换蛋白的肽对ras-p21信号转导的抑制特异性

Specificity of inhibition of ras-p21 signal transduction by peptides from GTPase activating protein (GAP) and the son-of sevenless (SOS) ras-specific guanine nucleotide exchange protein.

作者信息

Chie Lyndon, Chung Denise, Pincus Matthew R

机构信息

Departments of Biology and Chemistry, Long Island University, 1 University Plaza, Brooklyn, NY, 11201, USA.

出版信息

Protein J. 2005 May;24(4):253-8. doi: 10.1007/s10930-005-6723-2.

Abstract

In previous studies, involving molecular modeling of wild-type and oncogenic forms of the ras-p21 protein bound to GTPase activating protein GAP and the ras-specific guanine nucleotide exchange-promoting protein, SOS, we identified specific domains of GAP and SOS proteins that differ in conformation when the computed average structures of the corresponding wild-type and oncogenic complexes are superimposed. Additionally, in these previous studies, we have synthesized peptides corresponding to these domains and found that all of them inhibit either or both oncogenic (Val 12-containing) p21- and insulin-activated wild-type p21-induced oocyte maturation. To document further the specificity of the inhibition of these peptides for the ras signal transduction pathway, we have now tested their effects on progesterone-induced maturation that occurs by a ras-independent pathway. None of these peptides, including a peptide corresponding to residues 980-989 of SOS that completely blocks oncogenic p21-induced maturation and also causes extensive inhibition of insulin-induced maturation, affects progesterone-induced maturation, suggesting that all of these peptides are specific for the ras pathway. Since our approach to the design of peptides that can inhibit oncogenic ras-p21 selectively is based on identifying domains that differ in conformation between oncogenic and wild-type complexes, we have now further synthesized peptides that correspond to domains of GAP (residues 903-910) and SOS (residues 792-804) that do not differ in conformation when the average structures are superimposed. These peptides do not inhibit either oncogenic p21- or insulin-induced oocyte maturation, supporting the overall strategy of using peptides from domains that change conformation as the ones most likely to inhibit oncogenic and/or wild-type ras-p21. These results further support the specificity of inhibition of the GAP and SOS peptides from the conformationally distinct domains of both proteins.

摘要

在先前的研究中,我们对与GTP酶激活蛋白GAP及ras特异性鸟嘌呤核苷酸交换促进蛋白SOS结合的野生型和致癌型ras - p21蛋白进行了分子建模,当将相应野生型和致癌型复合物的计算平均结构进行叠加时,我们确定了GAP和SOS蛋白的特定结构域,它们的构象有所不同。此外,在这些先前的研究中,我们合成了与这些结构域对应的肽段,发现它们全部都能抑制致癌型(含Val 12)p21诱导的以及胰岛素激活的野生型p21诱导的卵母细胞成熟。为了进一步证明这些肽段对ras信号转导途径抑制作用的特异性,我们现在测试了它们对通过ras非依赖途径发生的孕酮诱导的成熟的影响。这些肽段,包括对应于SOS的980 - 989位残基的肽段(该肽段能完全阻断致癌型p21诱导的成熟并且也能对胰岛素诱导的成熟产生广泛抑制),均不影响孕酮诱导的成熟,这表明所有这些肽段对ras途径具有特异性。由于我们设计能够选择性抑制致癌型ras - p21的肽段的方法是基于识别致癌型和野生型复合物之间构象不同的结构域,我们现在进一步合成了与GAP(903 - 910位残基)和SOS(792 - 804位残基)的结构域对应的肽段,当平均结构叠加时,这些结构域的构象没有差异。这些肽段既不抑制致癌型p21诱导的也不抑制胰岛素诱导的卵母细胞成熟,这支持了使用来自构象发生变化的结构域的肽段作为最有可能抑制致癌型和/或野生型ras - p21的肽段的总体策略。这些结果进一步支持了来自这两种蛋白质构象不同结构域的GAP和SOS肽段抑制作用的特异性。

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