Pingoud A, Wehrmann M, Pieper U, Gast F U, Urbanke C, Alves J, Feuerstein J, Wittinghofer A
Zentrum Biochemie, Medizinische Hochschule Hannover, West Germany.
Biochemistry. 1988 Jun 28;27(13):4735-40. doi: 10.1021/bi00413a023.
We have recorded the circular dichroism spectra of the cellular and the viral H-ras gene products both in the absence and in the presence of guanine nucleotides and analyzed these spectra in terms of the secondary structure composition of these proteins. It is shown that the GTP complex of the ras proteins has a different secondary structure composition than the GDP complex and, furthermore, that there are differences in the secondary structure of the viral ras protein and the cellular ras protein. We have also recorded and analyzed the circular dichroism spectrum of the isolated guanine nucleotide binding domain of the Escherichia coli elongation factor Tu (EF-Tu), which has been considered as a model for the tertiary structure of the ras proteins [McCormick, F., Clark, B. F. C., LaCour, T. F. M., Kjeldgaard, M., Norskov-Lauritsen, L., & Nyborg, J. (1985) Science (Washington, D.C.) 230, 78-82]. Our data show that the guanine nucleotide binding domain of EF-Tu (30% alpha-helix and 16% beta-pleated sheet for the GDP complex) has quite a different secondary structure composition than the ras proteins (e.g., the cellular ras protein has 47% alpha-helix and 22% beta-pleated sheet for the GDP complex), indicating that the protein core comprising the guanine nucleotide binding site might be similar but that major structural differences must exist at the portion outside this core. Normal and transforming ras proteins also differ slightly in their hydrodynamic properties as shown by sedimentation velocity runs in the analytical ultracentrifuge.(ABSTRACT TRUNCATED AT 250 WORDS)
我们记录了细胞和病毒H-ras基因产物在不存在和存在鸟嘌呤核苷酸情况下的圆二色光谱,并根据这些蛋白质的二级结构组成对这些光谱进行了分析。结果表明,ras蛋白的GTP复合物与GDP复合物具有不同的二级结构组成,此外,病毒ras蛋白和细胞ras蛋白的二级结构也存在差异。我们还记录并分析了大肠杆菌延伸因子Tu(EF-Tu)分离的鸟嘌呤核苷酸结合结构域的圆二色光谱,该结构域被视为ras蛋白三级结构的模型[麦科密克,F.,克拉克,B.F.C.,拉库尔,T.F.M.,基耶尔加德,M.,诺斯科夫-劳里森,L.,& 尼博尔,J.(1985年)《科学》(华盛顿特区)230,78 - 82]。我们的数据表明,EF-Tu的鸟嘌呤核苷酸结合结构域(GDP复合物为30%的α-螺旋和16%的β-折叠片层)与ras蛋白具有相当不同的二级结构组成(例如,细胞ras蛋白的GDP复合物为47%的α-螺旋和22%的β-折叠片层),这表明包含鸟嘌呤核苷酸结合位点的蛋白质核心可能相似,但在该核心之外的部分必定存在主要的结构差异。如在分析超速离心机中进行的沉降速度实验所示,正常和转化的ras蛋白在流体动力学性质上也略有不同。(摘要截断于250字)