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首页> 外文期刊>Molecular and Cellular Endocrinology >Reciprocal mutagenesis between human alpha(L349, M528) and rainbow trout (M317, I496) estrogen receptor residues demonstrates their importance in ligand binding and gene expression at different temperatures.
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Reciprocal mutagenesis between human alpha(L349, M528) and rainbow trout (M317, I496) estrogen receptor residues demonstrates their importance in ligand binding and gene expression at different temperatures.

机译:人类α(L349,M528)和虹鳟鱼(M317,I496)雌激素受体残基之间的相互诱变证明了它们在不同温度下对配体结合和基因表达的重要性。

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摘要

Several fish proteins exhibit compromised function at temperatures outside of their normal physiological range. In this study, the effect of temperature on the ligand binding and the transactivation abilities of the rainbow trout estrogen receptor (rtER) and human estrogen receptor alpha (hER alpha) were examined. Saturation analysis and gene expression assays, using GST-ER and Gal4-ER fusion proteins consisting of the D, E and F domains of human (hER alpha def) and rainbow trout (rtERdef) receptors, show that GST-rtERdef E2 binding affinity and transactivation ability decrease with increasing temperature. A comparison of the amino acid sequence differences between their ligand binding pockets identified two conservative amino acid residue substitutions in rtER (M317, I496) and hER alpha (L349, M528). The effect of these substitutions on ligand binding and transactivation were examined by constructing reciprocal mutants, which effectively exchanged the binding pockets between rtER and hER alpha. The rtERdef M317L:I496M double mutant exhibited increased E2 binding affinity and transactivation ability at higher temperatures, and displayed hER alpha phenotypic behavior for the phytoestrogen, coumestrol. The hER alpha def L349M:M528I double mutant also exhibited a modest trend towards adopting the rtER phenotype. These studies demonstrate that conservative changes in residue hydrophobicity and volume can significantly affect ER ligand binding and transactivation ability in a temperature-dependent manner. The lack of a complete exchange of phenotypes between rtER and hER alpha indicates that factors outside of the ligand binding pocket are also involved.
机译:几种鱼类蛋白在其正常生理范围之外的温度下表现出受损的功能。在这项研究中,研究了温度对虹鳟雌激素受体(rtER)和人雌激素受体α(hER alpha)的配体结合和反式激活能力的影响。使用由人(hER alpha def)和虹鳟(rtERdef)受体的D,E和F结构域组成的GST-ER和Gal4-ER融合蛋白进行的饱和度分析和基因表达测定表明,GST-rtERdef E2的结合亲和力和随着温度的升高,反式激活能力降低。比较它们的配体结合口袋之间的氨基酸序列差异,确定了rtER(M317,I496)和hER alpha(L349,M528)中的两个保守氨基酸残基取代。通过构建相互的突变体,检查了这些取代对配体结合和反式激活的影响,该突变体有效地交换了rtER和hERα之间的结合口袋。 rtERdef M317L:I496M双重突变体在较高温度下表现出增加的E2结合亲和力和反式激活能力,并显示了植物雌激素香豆酚的hERα表型行为。 hER alpha def L349M:M528I双突变体也表现出适度采用rtER表型的趋势。这些研究表明,残基疏水性和体积的保守变化可以以温度依赖性方式显着影响ER配体的结合和反式激活能力。 rtER和hERα之间缺乏表型的完全交换,表明配体结合口袋以外的因子也参与其中。

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