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贴壁细胞中对L-天冬酰胺酶的氨基酸反应的靶向代谢组学分析

Targeted metabolomic analysis of amino acid response to L-asparaginase in adherent cells.

作者信息

Purwaha Preeti, Lorenzi Philip L, Silva Leslie P, Hawke David H, Weinstein John N

机构信息

Department of Bioinformatics and Computational Biology, MD Anderson Cancer Center, University of Texas, Houston, TX 77054 USA.

Proteomics Facility, Department of Pathology, MD Anderson Cancer Center, University of Texas, Houston, TX 77054 USA.

出版信息

Metabolomics. 2014;10(5):909-919. doi: 10.1007/s11306-014-0634-1. Epub 2014 Feb 7.

Abstract

L-asparaginase (L-ASP) is a therapeutic enzyme used clinically for the treatment of childhood acute lymphoblastic leukemia. L-ASP's anticancer activity is believed to be associated primarily with depletion of asparagine, but secondary glutaminase activity has also been implicated in its anticancer mechanism of action. To investigate the effects of L-ASP on amino acid metabolism, we have developed an LC-MS/MS metabolomics platform for high-throughput quantitation of 29 metabolites, including all 20 proteinogenic amino acids, 6 metabolically related amino acid derivatives (ornithine, citrulline, sarcosine, taurine, hypotaurine, and cystine), and 3 polyamines (putrescince, spermidine, and spermine) in adherent cultured cells. When we examined the response of OVCAR-8 ovarian cancer cells in culture to L-ASP, asparagine was depleted from the medium within seconds. Interestingly, intracellular asparagine was also depleted rapidly, and the mechanism was suggested to involve rapid export of intracellular asparagine followed by rapid conversion to aspartic acid by L-ASP. We also found that L-ASP-induced cell death was more closely associated with glutamine concentration than with asparagine concentration. Time-course analysis revealed the dynamics of amino acid metabolism after feeding cells with fresh medium. Overall, this study provides new insight into L-ASP's mechanism of action, and the optimized analytical method can be extended, with only slight modification, to other metabolically active amino acids, related compounds, and a range of cultured cell types.

摘要

L-天冬酰胺酶(L-ASP)是一种临床上用于治疗儿童急性淋巴细胞白血病的治疗性酶。L-ASP的抗癌活性被认为主要与天冬酰胺的消耗有关,但其次级谷氨酰胺酶活性也涉及其抗癌作用机制。为了研究L-ASP对氨基酸代谢的影响,我们开发了一种液相色谱-串联质谱(LC-MS/MS)代谢组学平台,用于高通量定量分析贴壁培养细胞中的29种代谢物,包括所有20种蛋白质氨基酸、6种与代谢相关的氨基酸衍生物(鸟氨酸、瓜氨酸、肌氨酸、牛磺酸、亚牛磺酸和胱氨酸)以及3种多胺(腐胺、亚精胺和精胺)。当我们检测培养的OVCAR-8卵巢癌细胞对L-ASP的反应时,培养基中的天冬酰胺在数秒内就被耗尽。有趣的是,细胞内的天冬酰胺也迅速耗尽,其机制被认为是细胞内天冬酰胺快速输出,随后被L-ASP快速转化为天冬氨酸。我们还发现,L-ASP诱导的细胞死亡与谷氨酰胺浓度的关系比与天冬酰胺浓度的关系更密切。时间进程分析揭示了用新鲜培养基培养细胞后氨基酸代谢的动态变化。总体而言,本研究为L-ASP的作用机制提供了新的见解,并且这种优化的分析方法只需稍加修改,就可以扩展到其他具有代谢活性的氨基酸、相关化合物以及一系列培养的细胞类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/922a/4145215/55fe2778e832/11306_2014_634_Fig1_HTML.jpg

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