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分支less 调控 MFS2 以内分泌方式控制果蝇肾小管磷酸盐排泄和结石形成。

Endocrine regulation of MFS2 by branchless controls phosphate excretion and stone formation in Drosophila renal tubules.

机构信息

Section Endocrinology, Yale School of Medicine, New Haven, CT, USA.

Endocrine Unit, Massachusetts General Hospital, Boston, MA, USA.

出版信息

Sci Rep. 2019 Jun 19;9(1):8798. doi: 10.1038/s41598-019-45269-x.

Abstract

How inorganic phosphate (Pi) homeostasis is regulated in Drosophila is currently unknown. We here identify MFS2 as a key Pi transporter in fly renal (Malpighian) tubules. Consistent with its role in Pi excretion, we found that dietary Pi induces MFS2 expression. This results in the formation of Malpighian calcium-Pi stones, while RNAi-mediated knockdown of MFS2 increases blood (hemolymph) Pi and decreases formation of Malpighian tubule stones in flies cultured on high Pi medium. Conversely, microinjection of adults with the phosphaturic human hormone fibroblast growth factor 23 (FGF23) induces tubule expression of MFS2 and decreases blood Pi. This action of FGF23 is blocked by genetic ablation of MFS2. Furthermore, genetic overexpression of the fly FGF branchless (bnl) in the tubules induces expression of MFS2 and increases Malpighian tubule stones suggesting that bnl is the endogenous phosphaturic hormone in adult flies. Finally, genetic ablation of MFS2 increased fly life span, suggesting that Malpighian tubule stones are a key element whereby high Pi diet reduces fly longevity previously reported by us. In conclusion, MFS2 mediates excretion of Pi in Drosophila, which is as in higher species under the hormonal control of FGF-signaling.

摘要

目前尚不清楚果蝇体内无机磷酸盐(Pi)稳态是如何调节的。在这里,我们鉴定出 MFS2 是果蝇肾脏(马氏管)小管中 Pi 的关键转运蛋白。与它在 Pi 排泄中的作用一致,我们发现膳食 Pi 诱导了 MFS2 的表达。这导致了马氏管钙-Pi 结石的形成,而 RNAi 介导的 MFS2 敲低增加了血液(血淋巴)中的 Pi,并减少了在高 Pi 培养基中培养的果蝇中马氏管结石的形成。相反,向成年果蝇注射磷酸尿激素成纤维细胞生长因子 23(FGF23)可诱导小管表达 MFS2,并降低血液中的 Pi。FGF23 的这种作用被 MFS2 的基因缺失所阻断。此外,在小管中过表达果蝇 FGF 分支less(bnl)会诱导 MFS2 的表达并增加马氏管结石,这表明 bnl 是成年果蝇中的内源性排磷激素。最后,MFS2 的基因缺失增加了果蝇的寿命,这表明马氏管结石是高 Pi 饮食降低我们之前报道的果蝇寿命的一个关键因素。总之,MFS2 介导了果蝇 Pi 的排泄,这与在高等生物中由 FGF 信号转导控制的情况相同。

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