首页> 外文期刊>Biochemistry >Altered ligand binding properties and enhanced stability of a constitutively active estrogen receptor: evidence that an open pocket conformation is required for ligand interaction
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Altered ligand binding properties and enhanced stability of a constitutively active estrogen receptor: evidence that an open pocket conformation is required for ligand interaction

机译:组成性活性雌激素受体的配体结合特性改变和稳定性增强:证据表明配体相互作用需要开放的口袋构象

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摘要

To elucidate the ligand binding properties of the estrogen receptor (ER) and how ligand access to and release from the ligand binding pocket is affected by the conformational state of the receptor, we have measured the rates of estradiol association and dissociation, the equilibrium binding, and the stability of estradiol binding to denaturants, comparing wild-type human ER and a point mutant (Y537S ER) that shows full constitutive activity, i.e., the same full transcriptional activity in the absence or presence of estrogen. Ligand binding kinetics and affinity were measured with the full-length (1-595) ERs and with truncated forms of both receptors containing domains C through F (including the DNA binding, hinge, and ligand binding domains, amino acids 175-595) or domains E and F (the ligand binding domain; amino acids 304-595). With all ERs, the rates of ligand association and dissociation were considerably slower with the Y537S mutant ER than with wild-type ER (6-fold and 3-4-fold, respectively). These marked differences in ligand on and off rates for the wild-type and Y537S receptors result in a predicted (k-1/k+1) and measured Kd that is 2-fold lower for Y537S ER compared to wild-type ER. The binding of estradiol by wild-type ER was disrupted by high concentrations of urea (above 2 M), whereas the Y537S ER was distinctly more resistant to this disruption. These results are consistent with a model in which wild-type ER in the absence of ligand adopts a transcriptionally inactive collapsed pocket conformation, stabilized by specific interactions of Y537 with nearby regions of ER. When estradiol is bound, the wild-type ER adopts a transcriptionally active, closed pocket (ligand occupied) conformation. By contrast, the Y537S mutant ER favors the transcriptionally active closed pocket conformation, whether occupied by ligand or not, the latter state (closed pocket but unoccupied) accounting for its constitutive activity. Our findings suggest that the entry or exit of ligand from the binding pocket requires that ER adopt an open pocket conformation. The reduced rates of ligand association and dissociation in the constitutively active form of the ER, as well as its greater resistance to disruption of ligand binding by urea, support the supposition that the rate at which this open pocket conformation can be accessed from the unoccupied or ligand-occupied Y537S ER is slower than from the unoccupied or occupied forms of wild-type ER. Thus, the binding and release of ligand by ER require that the receptor access an open pocket state, and the ease with which this state can be accessed is affected by mutations that alter receptor conformation.
机译:为了阐明雌激素受体(ER)的配体结合特性,以及配体进入和从配体结合袋中释放的方式如何受受体的构象状态影响,我们测量了雌二醇缔合和解离的速率,平衡结合,以及雌二醇与变性剂结合的稳定性,比较了野生型人ER和点突变体(Y537S ER),该突变体具有完整的组成活性,即在不存在或存在雌激素的情况下具有相同的完整转录活性。配体结合动力学和亲和力用全长(1-595)ER以及包含结构域C至F(包括DNA结合,铰链和配体结合结构域,氨基酸175-595)或结构域的两个受体的截短形式进行测定。结构域E和F(配体结合结构域;氨基酸304-595)。对于所有ER,Y537S突变体ER的配体缔合和解离速率要比野生型ER慢得多(分别为6倍和3-4倍)。野生型和Y537S受体配体打开和关闭速率的这些显着差异导致预测的(k-1 / k + 1)和测得的Kd与野生型ER相比降低了2倍。高浓度的尿素(高于2 M)破坏了野生型雌激素与雌二醇的结合,而Y537S ER明显更能抵抗这种破坏。这些结果与这样的模型一致,在该模型中,在没有配体的情况下野生型ER采用转录失活的折叠口袋构象,并通过Y537与ER附近区域的特异性相互作用使其稳定。结合雌二醇时,野生型ER具有转录活性,封闭的口袋(配体占据)构象。相比之下,Y537S突变体ER有利于转录活性的封闭口袋构象,无论是否被配体占据,后者状态(封闭口袋但未被占据)说明了其组成活性。我们的发现表明,配体从结合袋的进入或退出需要ER采用开放袋构象。 ER的组成型活性形式中配体缔合和解离的速率降低,以及其对尿素破坏配体结合的更大抵抗力,支持以下假设:可以从空位或空位获得该开放口袋构象的速率配体占据的Y537S ER慢于未占据或占据的野生型ER。因此,通过ER结合和释放配体需要受体进入开放口袋状态,并且可接近该状态的容易性受到改变受体构象的突变的影响。

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