首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Functional characterization and immunolocalization of the transporter encoded by the life-extending gene Indy
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Functional characterization and immunolocalization of the transporter encoded by the life-extending gene Indy

机译:寿命延长基因Indy编码的转运蛋白的功能表征和免疫定位

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摘要

Caloric restriction extends life span in a variety of species, highlighting the importance of energy balance in aging. A new longevity gene, Indy (for I'm not dead yet), which doubles the average life span of flies without a loss of fertility or physical activity, was postulated to extend life by affecting intermediary metabolism. We report that functional studies in Xenopus oocytes show INDY is a metabolite transporter that mediates the high-affinity, disul-fonic stilbene-sensitive flux of dicarboxylates and citrate across the plasma membrane by a mechanism that is not coupled to Na~+, K~+, or Cl~-. Immunocytochemical studies localize INDY to the plasma membrane with most prominent expression in adult fat body, oenocytes, and the basolateral region of midgut cells and show that life-extending mutations in Indy reduce INDY expression. We conclude that INDY functions as a novel sodium-independent mechanism for transporting Krebs and citric acid cycle intermediates through the epithelium of the gut and across the plasma membranes of organs involved in intermediary metabolism and storage. The life-extending effect of mutations in Indy is likely caused by an alteration in energy balance caused by a decrease in INDY transport function.
机译:热量限制延长了各种物种的寿命,突显了能量平衡在衰老中的重要性。据推测,一个新的长寿基因Indy(因为我还没死)使苍蝇的平均寿命翻了一番,而没有丧失生育力或体育活动,因此可以通过影响中间代谢来延长寿命。我们报道在非洲爪蟾卵母细胞中进行的功能研究表明,INDY是一种代谢物转运蛋白,其通过不与Na〜+,K〜偶联的机制介导跨膜质膜的二羧酸和柠檬酸的高亲和力,二硫的敏感通量。 +或Cl〜-。免疫细胞化学研究将INDY定位于成膜细胞,在成年脂肪,中性粒细胞,中肠细胞的基底外侧区域中最突出表达,并表明Indy中延长生命的突变降低了INDY的表达。我们得出结论,INDY作为一种新型的钠依赖性机制,用于通过肠的上皮细胞和跨过参与中间代谢和存储的器官的质膜转运Krebs和柠檬酸循环中间体。 Indy突变的延寿作用很可能是由INDY转运功能降低引起的能量平衡改变引起的。

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