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一种保守的分子内离子对在单胺转运体的二聚化和转运功能调节中起着关键但不同的作用。

A Conserved Intramolecular Ion-Pair Plays a Critical but Divergent Role in Regulation of Dimerization and Transport Function among the Monoamine Transporters.

机构信息

School of Life Sciences, Guangzhou University, Guangzhou 510006, China.

出版信息

Int J Mol Sci. 2024 Apr 4;25(7):4032. doi: 10.3390/ijms25074032.

Abstract

The monoamine transporters, including the serotonin transporter (SERT), dopamine transporter (DAT), and norepinephrine transporter (NET), are the therapeutic targets for the treatment of many neuropsychiatric disorders. Despite significant progress in characterizing the structures and transport mechanisms of these transporters, the regulation of their transport functions through dimerization or oligomerization remains to be understood. In the present study, we identified a conserved intramolecular ion-pair at the third extracellular loop (EL3) connecting TM5 and TM6 that plays a critical but divergent role in the modulation of dimerization and transport functions among the monoamine transporters. The disruption of the ion-pair interactions by mutations induced a significant spontaneous cross-linking of a cysteine mutant of SERT and an increase in cell surface expression but with an impaired specific transport activity. On the other hand, similar mutations of the corresponding ion-pair residues in both DAT and NET resulted in an opposite effect on their oxidation-induced dimerization, cell surface expression, and transport function. Reversible biotinylation experiments indicated that the ion-pair mutations slowed down the internalization of SERT but stimulated the internalization of DAT. In addition, cysteine accessibility measurements for monitoring SERT conformational changes indicated that substitution of the ion-pair residues resulted in profound effects on the rate constants for cysteine modification in both the extracellular and cytoplasmatic substrate permeation pathways. Furthermore, molecular dynamics simulations showed that the ion-pair mutations increased the interfacial interactions in a SERT dimer but decreased it in a DAT dimer. Taken together, we propose that the transport function is modulated by the equilibrium between monomers and dimers on the cell surface, which is regulated by a potential compensatory mechanism but with different molecular solutions among the monoamine transporters. The present study provided new insights into the structural elements regulating the transport function of the monoamine transporters through their dimerization.

摘要

单胺转运体,包括 5-羟色胺转运体(SERT)、多巴胺转运体(DAT)和去甲肾上腺素转运体(NET),是治疗许多神经精神疾病的治疗靶点。尽管在表征这些转运体的结构和转运机制方面取得了重大进展,但它们的转运功能通过二聚化或寡聚化的调节仍有待了解。在本研究中,我们在连接 TM5 和 TM6 的第三细胞外环(EL3)中鉴定出一个保守的分子内离子对,该离子对在调节单胺转运体的二聚化和转运功能方面起着关键但不同的作用。通过突变破坏离子对相互作用会导致 SERT 的半胱氨酸突变体发生显著的自发交联,并增加细胞表面表达,但特异性转运活性受损。另一方面,DAT 和 NET 中相应的离子对残基的类似突变对其氧化诱导的二聚化、细胞表面表达和转运功能产生相反的影响。可还原生物素化实验表明,离子对突变会减缓 SERT 的内化,但会刺激 DAT 的内化。此外,用于监测 SERT 构象变化的半胱氨酸可及性测量表明,取代离子对残基会对细胞外和细胞质基质渗透途径中半胱氨酸修饰的速率常数产生深远影响。此外,分子动力学模拟表明,离子对突变会增加 SERT 二聚体中的界面相互作用,但会降低 DAT 二聚体中的界面相互作用。总之,我们提出转运功能是通过细胞表面上单体和二聚体之间的平衡来调节的,这种平衡受潜在的补偿机制调节,但在单胺转运体中具有不同的分子解决方案。本研究为通过二聚化调节单胺转运体的转运功能的结构元件提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d0c/11011927/aec71a4ffe0b/ijms-25-04032-g001.jpg

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