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首页> 外文期刊>The Journal of biological chemistry >Essential Molecular Determinants for Thyroid Hormone Transport and First Structural Implications for Monocarboxylate Transporter 8
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Essential Molecular Determinants for Thyroid Hormone Transport and First Structural Implications for Monocarboxylate Transporter 8

机译:甲状腺激素运输的基本分子决定因素及其对单羧酸盐转运蛋白转运蛋白8的第一种结构影响

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Monocarboxylate transporter 8 (MCT8, SLC16A2) is a thyroid hormone (TH) transmembrane transport protein mutated in Allan-Herndon-Dudley syndrome, a severe X-linked psychomotor retardation. The neurological and endocrine phenotypes of patients deficient in MCT8 function underscore the physiological significance of carrier-mediated TH transmembrane transport. MCT8 belongs to the major facilitator superfamily of 12 transmembrane-spanning proteins and mediates energy-independent bidirectional transport of iodothyronines across the plasma membrane. Structural information is lacking for all TH transmembrane transporters. To gain insight into structure-function relations in TH transport, we chose human MCT8 as a paradigm. We systematically performed conventional and liquid chromatography-tandem mass spectrometry-based uptake measurements into MCT8-transfected cells using a large number of compounds structurally related to iodothyronines. We found that human MCT8 is specific for l-iodothyronines and requires at least one iodine atom per aromatic ring. Neither thyronamines, decarboxylated metabolites of iodothyronines, nor triiodothyroacetic acid and tetraiodothyroacetic acid, TH derivatives lacking both chiral center and amino group, are substrates for MCT8. The polyphenolic flavonoids naringenin and F21388, potent competitors for TH binding at transthyretin, did not inhibit T3 transport, suggesting that MCT8 can discriminate its ligand better than transthyretin. Bioinformatic studies and a first molecular homology model of MCT8 suggested amino acids potentially involved in substrate interaction. Indeed, alanine mutation of either Arg445 (helix 8) or Asp498 (helix 10) abrogated T3 transport activity of MCT8, supporting their predicted role in substrate recognition. The MCT8 model allows us to rationalize potential interactions of amino acids including those mutated in patients with Allan-Herndon-Dudley syndrome.
机译:单羧酸转运蛋白8(MCT8,SLC16A2)是甲状腺激素(TH)跨膜转运蛋白,在Allan-Herndon-Dudley综合征中突变,是严重的X-Linked精神术迟缓。 MCT8函数缺乏患者的神经和内分泌表型下划线介绍了载体介导的跨膜运输的生理意义。 MCT8属于12个跨膜 - 跨越蛋白质的主要促进剂超家族,并在血浆膜上介导碘滴鼻松的能量无关双向转运。所有TH跨膜运输司缺乏结构信息。要深入了解运输的结构功能关系,我们将人类MCT8作为范例选择。我们使用大量与碘噻吩结构化的化合物系统地将基于MCT8转染的细胞的常规和液相色谱 - 串联质谱的摄取测量进行了系统地进行了基于MCT8转染的细胞。我们发现人体MCT8特异于L-碘吡喃啶,并且每芳环需要至少一种碘原子。碘胺的甲基胺,碘萘氨酸的脱羧代谢物,也不是三碘乙酸和四碘脱乙酸,缺乏手性中心和氨基的衍生物是MCT8的基质。多酚类黄酮芽孢菌素和F21388,在Transthyretin的Th结合有效竞争者,不抑制T3运输,表明MCT8可以比Transthyretin更好地区分其配体。生物信息研究和MCT8建议氨基酸的第一分子同源性模型可能参与底物相互作用。实际上,Arg445(Helix 8)或Asp498(螺旋10)的丙氨酸突变删除了MCT8的T3传输活性,支持它们在衬底识别中的预测作用。 MCT8模型使我们能够合理化氨基酸的潜在相互作用,包括艾伦 - 埃德顿达德利综合征患者突变的潜在相互作用。

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