首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Two Independent Histidines One in Human Prolactin and One in Its Receptor Are Critical for pH-dependent Receptor Recognition and Activation
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Two Independent Histidines One in Human Prolactin and One in Its Receptor Are Critical for pH-dependent Receptor Recognition and Activation

机译:两种独立的组氨酸一种在人催乳素中一种在其催乳激素中对于依赖pH的受体识别和激活至关重要

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摘要

Human prolactin (hPRL), a member of the family of hematopoietic cytokines, functions as both an endocrine hormone and autocrine/paracrine growth factor. We have previously demonstrated that recognition of the hPRL·receptor depends strongly on solution acidity over the physiologic range from pH 6 to pH 8. The hPRL·receptor binding interface contains four histidines whose protonation is hypothesized to regulate pH-dependent receptor recognition. Here, we systematically dissect its molecular origin by characterizing the consequences of His to Ala mutations on pH-dependent receptor binding kinetics, site-specific histidine protonation, and high resolution structures of the intermolecular interface. Thermodynamic modeling of the pH dependence to receptor binding affinity reveals large changes in site-specific protonation constants for a majority of interface histidines upon complexation. Removal of individual His imidazoles reduces these perturbations in protonation constants, which is most likely explained by the introduction of solvent-filled, buried cavities in the crystallographic structures without inducing significant conformational rearrangements.
机译:人催乳素(hPRL)是造血细胞因子家族的成员,既可作为内分泌激素,又可作为自分泌/旁分泌生长因子。先前我们已经证明,hPRL·受体的识别在很大程度上取决于溶液在pH 6至pH 8的生理范围内的酸度。hPRL·受体结合界面包含四个组氨酸,据推测它们的质子化可调节pH依赖性受体的识别。在这里,我们通过表征His到Ala突变对pH依赖性受体结合动力学,位点特异性组氨酸质子化和分子间界面的高分辨率结构的影响,系统地剖析其分子起源。 pH对受体结合亲和力的依赖关系的热力学模型揭示了络合后大多数界面组氨酸的位点特异性质子化常数发生了很大变化。单个His咪唑的去除减少了质子化常数的这些扰动,这很可能是由于在晶体结构中引入了溶剂填充的,埋藏的腔而没有引起显着的构象重排。

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