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脑胶质瘤中支链氨基酸氧化增加的体内评估。

In vivo assessment of increased oxidation of branched-chain amino acids in glioblastoma.

机构信息

Advanced Imaging Research Center, UT Southwestern Medical Center, Dallas, TX, USA.

Department of Biochemistry, UT Southwestern Medical Center, Dallas, TX, USA.

出版信息

Sci Rep. 2019 Jan 23;9(1):340. doi: 10.1038/s41598-018-37390-0.

Abstract

Altered branched-chain amino acids (BCAAs) metabolism is a distinctive feature of various cancers and plays an important role in sustaining tumor proliferation and aggressiveness. Despite the therapeutic and diagnostic potentials, the role of BCAA metabolism in cancer and the activities of associated enzymes remain unclear. Due to its pivotal role in BCAA metabolism and rapid cellular transport, hyperpolarized C-labeled α-ketoisocaproate (KIC), the α-keto acid corresponding to leucine, can assess both BCAA aminotransferase (BCAT) and branched-chain α-keto acid dehydrogenase complex (BCKDC) activities via production of [1-C]leucine or CO (and thus HCO), respectively. Here, we investigated BCAA metabolism of F98 rat glioma model in vivo using hyperpolarized C-KIC. In tumor regions, we observed a decrease in C-leucine production from injected hyperpolarized C-KIC via BCAT compared to the contralateral normal-appearing brain, and an increase in HCO, a catabolic product of KIC through the mitochondrial BCKDC. A parallel ex vivo C NMR isotopomer analysis following steady-state infusion of [U-C]leucine to glioma-bearing rats verified the increased oxidation of leucine in glioma tissue. Both the in vivo hyperpolarized KIC imaging and the leucine infusion study indicate that KIC catabolism is upregulated through BCAT/BCKDC and further oxidized via the citric acid cycle in F98 glioma.

摘要

支链氨基酸(BCAA)代谢的改变是各种癌症的一个显著特征,在维持肿瘤增殖和侵袭性方面发挥着重要作用。尽管具有治疗和诊断潜力,但 BCAA 代谢在癌症中的作用和相关酶的活性仍不清楚。由于其在 BCAA 代谢和快速细胞转运中的关键作用,超极化 13C 标记的α-酮异己酸(KIC),即亮氨酸的α-酮酸,可以通过产生 [1-C]亮氨酸或 CO(和 HCO3-)来分别评估支链氨基酸转氨酶(BCAT)和支链α-酮酸脱氢酶复合物(BCKDC)的活性。在这里,我们使用超极化 13C-KIC 研究了 F98 大鼠神经胶质瘤模型的体内 BCAA 代谢。在肿瘤区域,我们观察到与对侧正常脑组织相比,通过 BCAT 从注射的超极化 13C-KIC 产生的 C-亮氨酸减少,而 KIC 的代谢产物 HCO3-增加,这是通过线粒体 BCKDC 产生的。对荷瘤大鼠进行 [U-13C]亮氨酸稳态输注后的平行离体 13C NMR 同位素质谱分析证实了胶质瘤组织中亮氨酸的氧化增加。体内超极化 KIC 成像和亮氨酸输注研究均表明,KIC 分解代谢通过 BCAT/BCKDC 上调,并在 F98 神经胶质瘤中进一步通过柠檬酸循环氧化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f493/6344513/f78550df2ff6/41598_2018_37390_Fig1_HTML.jpg

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