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CXCL12 和 MYC 控制能量代谢以支持肾损伤后的适应性反应。

CXCL12 and MYC control energy metabolism to support adaptive responses after kidney injury.

机构信息

Renal Division, University Freiburg Medical Center, Faculty of Medicine, University of Freiburg, Hugstetter Strasse 55, 79106, Freiburg, Germany.

Max-Planck-Institute of Neurobiology, Am Klopferspitz 18, 82152, Martinsried, Germany.

出版信息

Nat Commun. 2018 Sep 10;9(1):3660. doi: 10.1038/s41467-018-06094-4.

Abstract

Kidney injury is a common complication of severe disease. Here, we report that injuries of the zebrafish embryonal kidney are rapidly repaired by a migratory response in 2-, but not in 1-day-old embryos. Gene expression profiles between these two developmental stages identify cxcl12a and myca as candidates involved in the repair process. Zebrafish embryos with cxcl12a, cxcr4b, or myca deficiency display repair abnormalities, confirming their role in response to injury. In mice with a kidney-specific knockout, Cxcl12 and Myc gene deletions suppress mitochondrial metabolism and glycolysis, and delay the recovery after ischemia/reperfusion injury. Probing these observations in zebrafish reveal that inhibition of glycolysis slows fast migrating cells and delays the repair after injury, but does not affect the slow cell movements during kidney development. Our findings demonstrate that Cxcl12 and Myc facilitate glycolysis to promote fast migratory responses during development and repair, and potentially also during tumor invasion and metastasis.

摘要

肾脏损伤是严重疾病的常见并发症。在这里,我们报告称,斑马鱼胚胎肾脏的损伤可通过 2 日龄而非 1 日龄胚胎的迁移反应迅速修复。这两个发育阶段之间的基因表达谱将 cxcl12a 和 myca 鉴定为参与修复过程的候选物。cxcl12a、cxcr4b 或 myca 缺失的斑马鱼胚胎显示出修复异常,证实了它们在应对损伤中的作用。在肾脏特异性敲除的小鼠中,Cxcl12 和 Myc 基因缺失抑制线粒体代谢和糖酵解,并延迟缺血/再灌注损伤后的恢复。在斑马鱼中探测这些观察结果表明,抑制糖酵解会减缓快速迁移的细胞,并延迟损伤后的修复,但不会影响肾脏发育过程中的缓慢细胞运动。我们的发现表明,Cxcl12 和 Myc 促进糖酵解,以促进发育和修复过程中的快速迁移反应,并且在肿瘤侵袭和转移过程中也可能如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5088/6131511/265f0e1d571f/41467_2018_6094_Fig1_HTML.jpg

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