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Vesicular nucleotide transporter (VNUT): appearance of an actress on the stage of purinergic signaling

机译:水泡核苷酸转运蛋白(VNUT):在嘌呤能信号传导阶段出现一名女演员

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摘要

Vesicular storage of ATP is one of the processes initiating purinergic chemical transmission. Although an active transport mechanism was postulated to be involved in the processes, a transporter(s) responsible for the vesicular storage of ATP remained unidentified for some time. In 2008, SLC17A9, the last identified member of the solute carrier 17 type I inorganic phosphate transporter family, was found to encode the vesicular nucleotide transporter (VNUT) that is responsible for the vesicular storage of ATP. VNUT transports various nucleotides in a membrane potential-dependent fashion and is expressed in the various ATP-secreting cells. Mice with knockout of the VNUT gene lose vesicular storage and release of ATP from neurons and neuroendocrine cells, resulting in blockage of the initiation of purinergic chemical transmission. Thus, VNUT plays an essential role in the vesicular storage and release of ATP. The VNUT knockout mice exhibit resistance for neuropathic pain and a therapeutic effect against diabetes by way of increased insulin sensitivity. Thus, VNUT inhibitors and suppression of VNUT gene expression may be used for therapeutic purposes through suppression of purinergic chemical transmission. This review summarizes the studies to date on VNUT and discusses what we have learned about the relevance of vesicular ATP release as a potential drug target.
机译:ATP的囊泡贮存是引发嘌呤能化学传递的过程之一。尽管假定主动转运机制参与该过程,但在一段时间内仍未确定负责ATP囊泡贮藏的转运蛋白。在2008年,SLC17A9是溶质载体17 I型无机磷酸盐转运蛋白家族的最后一个成员,被发现编码负责ATP囊泡贮存的囊泡核苷酸转运蛋白(VNUT)。 VNUT以膜电位依赖性方式运输各种核苷酸,并在各种ATP分泌细胞中表达。敲除VNUT基因的小鼠失去了囊泡贮藏,并从神经元和神经内分泌细胞中释放出ATP,从而导致嘌呤能化学传递的启动受阻。因此,VNUT在ATP的囊泡储存和释放中起着至关重要的作用。通过增加胰岛素敏感性,VNUT基因敲除小鼠表现出对神经性疼痛的抵抗力和对糖尿病的治疗作用。因此,VNUT抑制剂和VNUT基因表达的抑制可通过抑制嘌呤能化学传递而用于治疗目的。这篇综述总结了迄今为止有关VNUT的研究,并讨论了我们所了解的有关囊泡ATP释放作为潜在药物靶标的相关性的知识。

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