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The role of Arg445 and Asp498 in the human thyroid hormone transporter MCT8

机译:Arg445和Asp498在人类甲状腺激素转运蛋白MCT8中的作用

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Monocarboxylate transporter 8 (MCT8) facilitates cellular influx and efflux of the thyroid hormones (THs) T4 and T3. Mutations in MCT8 lead to severe psychomotor retardation. Here, we studied the importance of 2 highly conserved residues (Arg445 in transmembrane domain 8 and Asp498 in transmembrane domain 10) for substrate recognition and helix interactions. We introduced single and double mutations (R445A, R445C, R445D, R445K, D498A, D498E, D498N, D498R, R445A+D498A, R445D+D498R, and R445K+D498E) in human MCT8 cDNA and studied the effects on MCT8-mediated TH uptake and metabolism in transfected cells. The impact of these mutations on MCT8 protein expression, dimerization capacity, and subcellular localization was studied by Western blottingandconfocal microscopy.Wefound that mutations in Arg445 or Asp498 that alter the local charge resulted in a near-complete loss of TH uptake capacity, whereas the expression, stability, and subcellular localization of these mutant proteins was similar to those for wild-type MCT8. Given the impaired TH uptake, TH efflux could not be adequately studied. The importance of opposite charges at Arg445 and Asp498 was studied by exchanging these residues (R445D+D498R). In particular, T4 uptake was less severely reduced by the exchange mutation than by the single mutations. Mutations of Arg445 and Asp498 to equally charged residues (R445K and/or D498E) resulted in TH uptake levels similar to wild-type MCT8. The presence of 2 oppositely charged residues at positions Arg445 and Asp498 that are predicted in close structural proximity is crucial for efficient TH uptake, which may indicate the presence of an, at least transient, charge pair between these residues.
机译:单羧酸盐转运蛋白8(MCT8)促进甲状腺激素(THs)T4和T3的细胞流入和流出。 MCT8中的突变会导致严重的精神运动发育迟缓。在这里,我们研究了2个高度保守的残基(跨膜结构域8中的Arg445和跨膜结构域10中的Asp498)对于底物识别和螺旋相互作用的重要性。我们在人MCT8 cDNA中引入了单突变和双突变(R445A,R445C,R445D,R445K,D498A,D498E,D498N,D498R,R445A + D498A,R445D + D498R和R445K + D498E)并研究了对MCT8介导的TH摄取的影响和转染细胞中的新陈代谢。通过Western blotting和锥孔显微镜研究了这些突变对MCT8蛋白表达,二聚能力和亚细胞定位的影响。我们发现Arg445或Asp498中的突变改变了局部电荷,导致TH吸收能力几乎完全丧失,而表达这些突变蛋白的稳定性,稳定性和亚细胞定位与野生型MCT8相似。由于TH吸收受损,因此无法充分研究TH外流。通过交换这些残基(R445D + D498R),研究了Arg445和Asp498上相反电荷的重要性。尤其是,交换突变比单突变对T4吸收的降低幅度较小。 Arg445和Asp498突变为等电荷残基(R445K和/或D498E)导致TH摄取水平与野生型MCT8相似。预测在结构紧密接近的位置Arg445和Asp498上存在2个带相反电荷的残基对有效吸收TH至关重要,这可能表明这些残基之间存在至少一个瞬时电荷对。

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