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通过质谱对细菌表达的大鼠雌激素受体β配体结合域进行表征:与雌激素受体α的结构比较。

Characterization of bacterially expressed rat estrogen receptor beta ligand binding domain by mass spectrometry: structural comparison with estrogen receptor alpha.

作者信息

Witkowska H E, Carlquist M, Engström O, Carlsson B, Bonn T, Gustafsson J A, Shackleton C H

机构信息

Children's Hospital Oakland Research Institute, CA 94609, USA.

出版信息

Steroids. 1997 Aug-Sep;62(8-9):621-31. doi: 10.1016/s0039-128x(97)00047-0.

Abstract

Functional rat estrogen receptor beta ligand binding domain (rER beta LBD, aa 210-485) and human estrogen receptor alpha ligand binding domain (hER alpha LBD, aa 301-553) were expressed in Escherichia coli. Hormone binding assays revealed that both ER beta and ER alpha LBDs bound the natural ligand estradiol (E2) with similar affinity (Kd approximately 100 pM). Competitive binding experiments were carried out with ICI 164384, 4-hydroxytamoxifen, 16 alpha-bromo-estradiol, and genistein employing [3H]E2 as a tracer. No significant differences in responses of ER alpha and ER beta LBDs to ICI 164384 and 4-hydroxytamoxifen were observed, 16 alpha-Bromo-estradiol and genistein discriminated between the ER subtypes and acted as ER alpha and ER beta selective ligands, respectively. Final purification of recombinant proteins was achieved on an E2 affinity column, where they were subjected to in situ carboxymethylation. The partially carboxymethylated proteins actively bound E2. The carboxymethylated rER beta LBD had a molecular mass of 32251.6 Da, equivalent to the calculated mass with the addition of three carboxymethyl groups. No other proteins (of lower or higher molecular mass) were detected, so the LBD was considered structurally authentic and pure. By using a combination of intact protein mass spectrometric fragmentation and trypsin proteolysis (98% sequence coverage), it was established that rER beta cysteine-289 and -354 were not carboxymethylated on the affinity column, suggesting that they were shielded from alkylation in the E2-bound conformational state. Concurrent analysis of hER alpha LBD showed that under the same experimental conditions, the two equivalent ER alpha cysteines were not alkylated (alpha C381 and alpha C447). These data support close structural relationship between the E2-bound ER alpha LBD and ER beta LBD proteins.

摘要

功能性大鼠雌激素受体β配体结合域(rERβ LBD,氨基酸210 - 485)和人雌激素受体α配体结合域(hERα LBD,氨基酸301 - 553)在大肠杆菌中表达。激素结合试验表明,ERβ和ERα LBD均以相似的亲和力(解离常数Kd约为100 pM)结合天然配体雌二醇(E2)。以[3H]E2为示踪剂,用ICI 164384、4 - 羟基他莫昔芬、16α - 溴雌二醇和染料木黄酮进行竞争性结合实验。未观察到ERα和ERβ LBD对ICI 164384和4 - 羟基他莫昔芬的反应有显著差异,16α - 溴雌二醇和染料木黄酮可区分这两种雌激素受体亚型,分别作为ERα和ERβ的选择性配体。重组蛋白在E2亲和柱上进行最终纯化,并在柱上进行原位羧甲基化。部分羧甲基化的蛋白能有效结合E2。羧甲基化的rERβ LBD分子量为32251.6 Da,相当于添加三个羧甲基基团后的计算质量。未检测到其他蛋白质(分子量更高或更低),因此该LBD被认为在结构上是真实且纯净的。通过完整蛋白质质谱裂解和胰蛋白酶消化相结合的方法(序列覆盖率98%),确定rERβ的半胱氨酸 - 289和 - 354在亲和柱上未发生羧甲基化,这表明它们在与E2结合的构象状态下被屏蔽而不发生烷基化。对hERα LBD的同步分析表明,在相同实验条件下,两个等效的ERα半胱氨酸(αC381和αC447)未发生烷基化。这些数据支持了与E2结合的ERα LBD和ERβ LBD蛋白之间紧密的结构关系。

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