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Membrane-permeable C-terminal dopamine transporter peptides attenuate amphetamine-evoked dopamine release

机译:膜可渗透的C-末端多巴胺转运蛋白肽减弱苯丙胺诱发的多巴胺释放

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摘要

The dopamine transporter (DAT) is responsible for sequestration of extracellular dopamine (DA). The psychostimulant amphetamine (AMPH) is a DAT substrate, which is actively transported into the nerve terminal, eliciting vesicular depletion and reversal of DA transport via DAT. Here, we investigate the role of the DAT C terminus in AMPH-evoked DA efflux using cell-permeant dominant-negative peptides. A peptide, which corresponded to the last 24 C-terminal residues of DAT (TAT-C24 DAT) and thereby contained the Ca2+-calmodulin-dependent protein kinase IIα (CaMKIIα) binding domain and the PSD-95/Discs-large/ZO-1 (PDZ)-binding sequence of DAT, was made membrane-permeable by fusing it to the cell membrane transduction domain of the HIV-1 Tat protein (TAT-C24WT). The ability of TAT-C24WT but not a scrambled peptide (TAT-C24Scr) to block the CaMKIIα-DAT interaction was supported by co-immunoprecipitation experiments in heterologous cells. In heterologous cells, we also found that TAT-C24WT, but not TAT-C24Scr, decreased AMPH-evoked 1-methyl-4-phenylpyridinium efflux. Moreover, chronoamperometric recordings in striatum revealed diminished AMPH-evoked DA efflux in mice preinjected with TAT-C24WT. Both in heterologous cells and in striatum, the peptide did not further inhibit efflux upon KN-93-mediated inhibition of CaMKIIα activity, consistent with a dominant-negative action preventing binding of CaMKIIα to the DAT C terminus. This was further supported by the ability of a peptide with perturbed PDZ-binding sequence, but preserved CaMKIIα binding (TAT-C24AAA), to diminish AMPH-evoked DA efflux in vivo to the same extent as TAT-C24WT. Finally, AMPH-induced locomotor hyperactivity was attenuated following systemic administration of TAT-C24WT but not TAT-C24Scr. Summarized, our findings substantiate that DAT C-terminal protein-protein interactions are critical for AMPH-evoked DA efflux and suggest that it may be possible to target protein-protein interactions to modulate transporter function and interfere with psychostimulant effects.
机译:多巴胺转运蛋白(DAT)负责隔离细胞外多巴胺(DA)。精神兴奋剂苯丙胺(AMPH)是DAT底物,可被主动转运到神经末梢,引起囊泡耗竭并通过DAT逆转DA转运。在这里,我们使用细胞渗透性显性负肽研究DAT C末端在AMPH诱发的DA外排中的作用。一种肽,对应于DAT的最后24个C末端残基(TAT-C24 DAT),因此包含Ca2 +-钙调蛋白依赖性蛋白激酶IIα(CaMKIIα)结合域和PSD-95 / Discs-large / ZO-通过将DAT的1(PDZ)结合序列融合到HIV-1 Tat蛋白(TAT-C24WT)的细胞膜转导域,使其具有膜渗透性。异源细胞中的共免疫沉淀实验支持TAT-C24WT而非加扰肽(TAT-C24Scr)阻断CaMKIIα-DAT相互作用的能力。在异源细胞中,我们还发现TAT-C24WT而不是TAT-C24Scr降低了AMPH引起的1-甲基-4-苯基吡啶鎓外排。此外,纹状体中的计时电流记录显示,在预先注射TAT-C24WT的小鼠中,AMPH诱发的DA外排减少。在异源细胞和纹状体中,该肽都不会进一步抑制KN-93介导的CaMKIIα活性抑制,这与阻止CaMKIIα与DAT C末端结合的显性负作用一致。具有受干扰的PDZ结合序列但保留了CaMKIIα结合的肽(TAT-C24AAA)能够在体内将AMPH诱发的DA外排减少到与TAT-C24WT相同的程度,进一步证明了这一点。最后,在全身性施用TAT-C24WT而不是TAT-C24Scr后,AMPH诱导的运动亢进减弱。综上所述,我们的发现证实了DAT C端蛋白-蛋白相互作用对AMPH引起的DA外流至关重要,并暗示可能靶向蛋白-蛋白相互作用来调节转运蛋白功能并干扰心理刺激作用。

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