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具有改变的核苷酸结合能力的突变型ras编码蛋白发挥显性生物学效应。

Mutant ras-encoded proteins with altered nucleotide binding exert dominant biological effects.

作者信息

Sigal I S, Gibbs J B, D'Alonzo J S, Temeles G L, Wolanski B S, Socher S H, Scolnick E M

出版信息

Proc Natl Acad Sci U S A. 1986 Feb;83(4):952-6. doi: 10.1073/pnas.83.4.952.

Abstract

We report that residues Lys-16 and Asp-119 play critical roles in the guanine nucleotide binding and, consequently, the biological function of the Ha-ras-encoded protein (Ha). Substitution of an asparagine residue for Lys-16 reduces the affinity of Ha for GDP and GTP by a factor of 100 but does not alter the specificity of nucleotide binding. The replacement of Asp-119 with an alanine residue reduces the affinity of Ha for GDP and GTP by a factor of 20 and reduces the relative affinity of Ha for GDP over IDP from 200-500 to 10. Based on these observations, a structural model for the GDP/GTP-binding site of Ha is proposed. By microinjecting purified proteins into NIH 3T3 cells, we observed that the ability of [Ala119]Ha to induce changes characteristic of cellular transformation was much greater than that of normal Ha and similar to that of the oncogenic [Val12, Thr59]Ha. In this assay, [Asn16]Ha and [Val12, Asn16, Thr59]Ha were similar in potency to normal Ha. In yeast cells, Ha proteins with reduced nucleotide affinity exert a dominant temperature-dependent lethality that is avoided by the coexpression of the activated yeast ras gene [Ala18, Val19]RAS2. We interpret the biological consequences of reducing the nucleotide affinity of ras proteins in terms of two opposing factors: a growth-promoting effect, resulting from an increase in the GDP-GTP exchange rate, and a growth-limiting effect, resulting from an increase in the nucleotide-free ras protein species.

摘要

我们报告称,赖氨酸-16(Lys-16)和天冬氨酸-119(Asp-119)残基在鸟嘌呤核苷酸结合中起关键作用,因此对Ha-ras编码蛋白(Ha)的生物学功能也至关重要。用天冬酰胺残基取代赖氨酸-16会使Ha对GDP和GTP的亲和力降低100倍,但不会改变核苷酸结合的特异性。用丙氨酸残基取代天冬氨酸-119会使Ha对GDP和GTP的亲和力降低20倍,并使Ha对GDP相对于IDP的相对亲和力从200 - 500降至10。基于这些观察结果,提出了Ha的GDP/GTP结合位点的结构模型。通过将纯化的蛋白显微注射到NIH 3T3细胞中,我们观察到,[丙氨酸119]Ha([Ala119]Ha)诱导细胞转化特征性变化的能力远大于正常Ha,与致癌性的[缬氨酸12,苏氨酸59]Ha([Val12, Thr59]Ha)相似。在该检测中,[天冬酰胺16]Ha([Asn16]Ha)和[缬氨酸12,天冬酰胺16,苏氨酸59]Ha([Val12, Asn16, Thr59]Ha)在效力上与正常Ha相似。在酵母细胞中,核苷酸亲和力降低的Ha蛋白会产生显性的温度依赖性致死性,而活化的酵母ras基因[丙氨酸18,缬氨酸19]RAS2([Ala18, Val19]RAS2)的共表达可避免这种致死性。我们从两个相反的因素来解释降低ras蛋白核苷酸亲和力的生物学后果:一种是由GDP - GTP交换率增加导致的促生长效应,另一种是由无核苷酸ras蛋白种类增加导致的生长限制效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1980/322988/d8621b0ce43b/pnas00308-0128-a.jpg

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