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癌细胞中葡萄糖-6-磷酸异构酶和丙酮酸激酶M2与甘油醛-3-磷酸脱氢酶的分子关联

Molecular association of glucose-6-phosphate isomerase and pyruvate kinase M2 with glyceraldehyde-3-phosphate dehydrogenase in cancer cells.

作者信息

Das Mahua R, Bag Arup K, Saha Shekhar, Ghosh Alok, Dey Sumit K, Das Provas, Mandal Chitra, Ray Subhankar, Chakrabarti Saikat, Ray Manju, Jana Siddhartha S

机构信息

Department of Biological Chemistry, Indian Association for the Cultivation of Science, Kolkata, 700032, India.

Cancer Biology and Inflammatory Disorder Division, Indian Institute of Chemical Biology, Kolkata, 700032, India.

出版信息

BMC Cancer. 2016 Feb 24;16:152. doi: 10.1186/s12885-016-2172-x.

Abstract

BACKGROUND

For a long time cancer cells are known for increased uptake of glucose and its metabolization through glycolysis. Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is a key regulatory enzyme of this pathway and can produce ATP through oxidative level of phosphorylation. Previously, we reported that GAPDH purified from a variety of malignant tissues, but not from normal tissues, was strongly inactivated by a normal metabolite, methylglyoxal (MG). Molecular mechanism behind MG mediated GAPDH inhibition in cancer cells is not well understood.

METHODS

GAPDH was purified from Ehrlich ascites carcinoma (EAC) cells based on its enzymatic activity. GAPDH associated proteins in EAC cells and 3-methylcholanthrene (3MC) induced mouse tumor tissue were detected by mass spectrometry analysis and immunoprecipitation (IP) experiment, respectively. Interacting domains of GAPDH and its associated proteins were assessed by in silico molecular docking analysis. Mechanism of MG mediated GAPDH inactivation in cancer cells was evaluated by measuring enzyme activity, Circular dichroism (CD) spectroscopy, IP and mass spectrometry analyses.

RESULT

Here, we report that GAPDH is associated with glucose-6-phosphate isomerase (GPI) and pyruvate kinase M2 (PKM2) in Ehrlich ascites carcinoma (EAC) cells and also in 3-methylcholanthrene (3MC) induced mouse tumor tissue. Molecular docking analyses suggest C-terminal domain preference for the interaction between GAPDH and GPI. However, both C and N termini of PKM2 might be interacting with the C terminal domain of GAPDH. Expression of both PKM2 and GPI is increased in 3MC induced tumor compared with the normal tissue. In presence of 1 mM MG, association of GAPDH with PKM2 or GPI is not perturbed, but the enzymatic activity of GAPDH is reduced to 26.8 ± 5 % in 3MC induced tumor and 57.8 ± 2.3 % in EAC cells. Treatment of MG to purified GAPDH complex leads to glycation at R399 residue of PKM2 only, and changes the secondary structure of the protein complex.

CONCLUSION

PKM2 may regulate the enzymatic activity of GAPDH. Increased enzymatic activity of GAPDH in tumor cells may be attributed to its association with PKM2 and GPI. Association of GAPDH with PKM2 and GPI could be a signature for cancer cells. Glycation at R399 of PKM2 and changes in the secondary structure of GAPDH complex could be one of the mechanisms by which GAPDH activity is inhibited in tumor cells by MG.

摘要

背景

长期以来,癌细胞因对葡萄糖摄取增加及其通过糖酵解进行代谢而为人所知。甘油醛-3-磷酸脱氢酶(GAPDH)是该途径的关键调节酶,可通过氧化磷酸化水平产生ATP。此前,我们报道从多种恶性组织而非正常组织中纯化的GAPDH被一种正常代谢物甲基乙二醛(MG)强烈失活。MG介导的癌细胞中GAPDH抑制背后的分子机制尚不清楚。

方法

基于其酶活性从艾氏腹水癌细胞(EAC)中纯化GAPDH。分别通过质谱分析和免疫沉淀(IP)实验检测EAC细胞和3-甲基胆蒽(3MC)诱导的小鼠肿瘤组织中与GAPDH相关的蛋白质。通过计算机辅助分子对接分析评估GAPDH与其相关蛋白质的相互作用结构域。通过测量酶活性、圆二色性(CD)光谱、IP和质谱分析评估MG介导的癌细胞中GAPDH失活的机制。

结果

在此,我们报道在艾氏腹水癌细胞(EAC)以及3-甲基胆蒽(3MC)诱导的小鼠肿瘤组织中,GAPDH与葡萄糖-6-磷酸异构酶(GPI)和丙酮酸激酶M2(PKM2)相关。分子对接分析表明GAPDH与GPI之间的相互作用偏好C末端结构域。然而,PKM2的C末端和N末端可能都与GAPDH的C末端结构域相互作用。与正常组织相比,3MC诱导的肿瘤中PKM2和GPI的表达均增加。在1 mM MG存在的情况下,GAPDH与PKM2或GPI的结合未受干扰,但在3MC诱导的肿瘤中GAPDH的酶活性降至26.8±5%,在EAC细胞中降至57.8±2.3%。用MG处理纯化的GAPDH复合物仅导致PKM2的R399残基糖基化,并改变蛋白质复合物的二级结构。

结论

PKM2可能调节GAPDH的酶活性。肿瘤细胞中GAPDH酶活性增加可能归因于其与PKM2和GPI的结合。GAPDH与PKM2和GPI的结合可能是癌细胞的一个特征。PKM2的R399糖基化以及GAPDH复合物二级结构的改变可能是MG在肿瘤细胞中抑制GAPDH活性的机制之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b34c/4766697/4c161cf7f639/12885_2016_2172_Fig1_HTML.jpg

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