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豚鼠糖皮质激素受体中皮质醇抵抗的结构决定因素。

Structural determinants of cortisol resistance in the guinea pig glucocorticoid receptor.

作者信息

Keightley M C, Curtis A J, Chu S, Fuller P J

机构信息

Prince Henry's Institute of Medical Research, Clayton, Victoria, Australia.

出版信息

Endocrinology. 1998 May;139(5):2479-85. doi: 10.1210/endo.139.5.5982.

DOI:10.1210/endo.139.5.5982
PMID:9564861
Abstract

The guinea pig exhibits resistance to glucocorticoids in vivo which results from the guinea pig glucocorticoid receptor (GR) having a lower affinity for cortisol than the human GR. Cloning of the guinea pig GR has revealed that the amino acid sequence of the ligand-binding domain (LBD) differs from the human GR at 24 residues. The present study confirms that the decreased sensitivity and binding affinity of the guinea pig GR are conferred in vitro by the LBD. Further, the substitutions in the LBD do not confer altered relative steroid sensitivity or selectivity compared with the human GR. The altered sensitivity and binding of dexamethasone are confined to the first third of the LBD, which contains 5 nonconservative substitutions in a region that is otherwise highly conserved across several species of GR. These residues, either alone or in combination, were targeted for site-directed mutagenesis in both the human and guinea pig LBD. Trans-activation studies with these mutant GR failed to exclusively implicate or exclude any of the residues in the observed resistance. Rather, the changes, with 1 exception, caused a decrease in sensitivity, suggesting that critical intramolecular interactions involving at least 4 of these residues determine the correct conformation of this region. Recent molecular modeling of the GR LBD structure suggests that although the above region is not part of the core ligand-binding pocket, it is required to maintain the conformation of the binding pocket.

摘要

豚鼠在体内对糖皮质激素表现出抗性,这是由于豚鼠糖皮质激素受体(GR)对皮质醇的亲和力低于人类GR。豚鼠GR的克隆显示,配体结合域(LBD)的氨基酸序列与人类GR在24个残基处不同。本研究证实,豚鼠GR敏感性和结合亲和力的降低在体外是由LBD赋予的。此外,与人类GR相比,LBD中的取代并未导致相对类固醇敏感性或选择性的改变。地塞米松敏感性和结合的改变局限于LBD的前三分之一,该区域在几种GR物种中高度保守,但含有5个非保守取代。这些残基单独或组合在人类和豚鼠LBD中进行定点诱变。对这些突变GR的反式激活研究未能明确指出或排除观察到的抗性中的任何残基。相反,除了1个例外,这些变化导致敏感性降低,表明涉及至少4个这些残基的关键分子内相互作用决定了该区域的正确构象。最近GR LBD结构的分子建模表明,尽管上述区域不是核心配体结合口袋的一部分,但它是维持结合口袋构象所必需的。

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