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L-2-羟戊二酸脱氢酶在肾脏中的靶向作用。

Teleological role of L-2-hydroxyglutarate dehydrogenase in the kidney.

机构信息

Department of Urology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Dis Model Mech. 2020 Nov 27;13(11):dmm045898. doi: 10.1242/dmm.045898.

Abstract

L-2-hydroxyglutarate (L-2HG) is an oncometabolite found elevated in renal tumors. However, this molecule might have physiological roles that extend beyond its association with cancer, as L-2HG levels are elevated in response to hypoxia and during larval development. L-2HG is known to be metabolized by L-2HG dehydrogenase (L2HGDH), and loss of L2HGDH leads to elevated L-2HG levels. Despite L2HGDH being highly expressed in the kidney, its role in renal metabolism has not been explored. Here, we report our findings utilizing a novel CRISPR/Cas9 murine knockout model, with a specific focus on the role of L2HGDH in the kidney. Histologically, knockout kidneys have no demonstrable histologic abnormalities. However, GC-MS metabolomics demonstrates significantly reduced levels of the TCA cycle intermediate succinate in multiple tissues. Isotope labeling studies with [U-C] glucose demonstrate that restoration of L2HGDH in renal cancer cells (which lowers L-2HG) leads to enhanced incorporation of label into TCA cycle intermediates. Subsequent biochemical studies demonstrate that L-2HG can inhibit the TCA cycle enzyme α-ketoglutarate dehydrogenase. Bioinformatic analysis of mRNA expression data from renal tumors demonstrates that L2HGDH is co-expressed with genes encoding TCA cycle enzymes as well as the gene encoding the transcription factor PGC-1α, which is known to regulate mitochondrial metabolism. Restoration of PGC-1α in renal tumor cells results in increased L2HGDH expression with a concomitant reduction in L-2HG levels. Collectively, our analyses provide new insight into the physiological role of L2HGDH as well as mechanisms that promote L-2HG accumulation in disease states.

摘要

L-2-羟戊二酸(L-2HG)是一种在肾肿瘤中升高的致癌代谢物。然而,这种分子可能具有超出其与癌症关联的生理作用,因为 L-2HG 水平在缺氧和幼虫发育过程中升高。L-2HG 已知由 L-2HG 脱氢酶(L2HGDH)代谢,L2HGDH 的缺失会导致 L-2HG 水平升高。尽管 L2HGDH 在肾脏中高度表达,但它在肾脏代谢中的作用尚未得到探索。在这里,我们利用一种新型的 CRISPR/Cas9 小鼠敲除模型报告了我们的发现,特别关注 L2HGDH 在肾脏中的作用。组织学上, 敲除肾脏没有明显的组织学异常。然而,GC-MS 代谢组学表明,多种组织中 TCA 循环中间产物琥珀酸的水平显著降低。用 [U-C] 葡萄糖进行同位素标记研究表明,在肾癌细胞中恢复 L2HGDH(降低 L-2HG)会导致标记物更多地掺入 TCA 循环中间产物。随后的生化研究表明,L-2HG 可以抑制 TCA 循环酶 α-酮戊二酸脱氢酶。来自肾肿瘤的 mRNA 表达数据的生物信息学分析表明,L2HGDH 与编码 TCA 循环酶的基因以及编码转录因子 PGC-1α 的基因共同表达,PGC-1α 已知调节线粒体代谢。在肾肿瘤细胞中恢复 PGC-1α 会导致 L2HGDH 表达增加,同时 L-2HG 水平降低。总的来说,我们的分析为 L2HGDH 的生理作用以及在疾病状态下促进 L-2HG 积累的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbfa/7710027/29a5bd6ff07b/dmm-13-045898-g1.jpg

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