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An intracellular P2X receptor required for osmoregulation in Dictyostelium discoideum

机译:盘基网柄菌渗透调节所需的细胞内P2X受体

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P2X receptors are membrane ion channels gated by extracellular ATP that are found widely in vertebrates, but not previously in microbes. Here we identify a weakly related gene in the genome of the social amoeba Dictyostelium discoideum, and show, with the use of heterologous expression in human embryonic kidney cells, that it encodes a membrane ion channel activated by ATP (30-100 μM). Site-directed mutagenesis revealed essential conservation of structure-function relations with P2X receptors of higher organisms. The receptor was insensitive to the usual P2X antagonists but was blocked by nanomolar concentrations of Cu~(2+) ions. In D. discoideum, the receptor was found on intracellular membranes, with prominent localization to an osmoregu-latory organelle, the contractile vacuole. Targeted disruption of the gene in D. discoideum resulted in cells that were unable to regulate cell volume in hypotonic conditions. Cell swelling in these mutant cells was accompanied by a marked inhibition of contractile vacuole emptying. These findings demonstrate a new functional role for P2X receptors on intracellular organdies, in this case in osmoregulation.
机译:P2X受体是由细胞外ATP控制的膜离子通道,广泛存在于脊椎动物中,但以前在微生物中未发现。在这里,我们在社交变形虫盘基网柄菌盘状基因组的基因组中发现了一个弱相关的基因,并通过在人类胚胎肾细胞中使用异源表达,显示了它编码由ATP(30-100μM)激活的膜离子通道。定点诱变显示与高等生物的P2X受体的结构-功能关系至关重要。该受体对常用的P2X拮抗剂不敏感,但被纳摩尔浓度的Cu〜(2+)离子阻断。在D. discoideum中,该受体存在于细胞内膜上,主要定位于渗透压细胞器,即收缩液泡。 D. Discoideum中基因的定向破坏导致细胞在低渗条件下无法调节细胞体积。这些突变细胞中的细胞肿胀伴随着明显的收缩性液泡排空抑制。这些发现证明了在这种情况下渗透调节中细胞内器官上P2X受体的新功能作用。

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