甘油醛3-磷酸脱氢酶中NAD(+)结合位点的破坏影响其核内相互作用。

Manali Phadke, N. Krynetskaia, A. Mishra, C. Barrero, S. Merali, S. Gothe, Evgeny Krynetskiy
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引用次数: 8

摘要

目的:研究人甘油醛3-磷酸脱氢酶(GAPDH)在化疗药物作用下的磷酸化及癌细胞中GAPDH的迁移。方法采用蛋白质组学方法检测和表征人GAPDH的磷酸化位点。然后进行位点特异性诱变和丙氨酸扫描,以评估GAPDH多肽链中磷酸化位点的功能意义。利用动力学研究评估突变GAPDH变体的酶学特性。利用光漂白后荧光恢复(FRAP)实验和共聚焦显微镜估计核内动力学参数(扩散系数和不动分数)。通过分子模拟实验估计突变对NAD(+)辅因子结合的影响。结果通过MALDI-TOF分析,我们在GAPDH的NAD(+)结合中心Y94、S98和T99处发现了新的磷酸化位点。利用GAPDH中含有phospho- t99的多肽特异性多克隆抗体,我们证实在细胞毒性应激后,A549、HCT116和SW48癌细胞的核部分中积累了phospho-T99-GAPDH。我们进行了位点诱变,并估计了GAPDH突变变体的酶特性、核内分布和核内迁移性。在NAD(+)结合中心的S98和T99位点突变降低了GAPDH对NAD(+)的亲和力(Km = 741±257 μmol/L,而野生型GAPDH为57±11.1 μmol/L),从而降低了酶活性。分子模拟实验揭示了突变对NAD(+)与GAPDH结合的影响。FRAP(光漂白后荧光恢复)分析显示,GAPDH的NAD(+)结合中心突变使其核内相互作用失效。结论在GAPDH与其核内伙伴相互作用中,磷酸化氨基酸在NAD(+)结合中心发挥重要的功能作用。
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Disruption of NAD(+) binding site in glyceraldehyde 3-phosphate dehydrogenase affects its intranuclear interactions.
AIM To characterize phosphorylation of human glyceraldehyde 3-phosphate dehydrogenase (GAPDH), and mobility of GAPDH in cancer cells treated with chemotherapeutic agents. METHODS We used proteomics analysis to detect and characterize phosphorylation sites within human GAPDH. Site-specific mutagenesis and alanine scanning was then performed to evaluate functional significance of phosphorylation sites in the GAPDH polypeptide chain. Enzymatic properties of mutated GAPDH variants were assessed using kinetic studies. Intranuclear dynamics parameters (diffusion coefficient and the immobile fraction) were estimated using fluorescence recovery after photobleaching (FRAP) experiments and confocal microscopy. Molecular modeling experiments were performed to estimate the effects of mutations on NAD(+) cofactor binding. RESULTS Using MALDI-TOF analysis, we identified novel phosphorylation sites within the NAD(+) binding center of GAPDH at Y94, S98, and T99. Using polyclonal antibody specific to phospho-T99-containing peptide within GAPDH, we demonstrated accumulation of phospho-T99-GAPDH in the nuclear fractions of A549, HCT116, and SW48 cancer cells after cytotoxic stress. We performed site-mutagenesis, and estimated enzymatic properties, intranuclear distribution, and intranuclear mobility of GAPDH mutated variants. Site-mutagenesis at positions S98 and T99 in the NAD(+) binding center reduced enzymatic activity of GAPDH due to decreased affinity to NAD(+) (Km = 741 ± 257 μmol/L in T99I vs 57 ± 11.1 µmol/L in wild type GAPDH. Molecular modeling experiments revealed the effect of mutations on NAD(+) binding with GAPDH. FRAP (fluorescence recovery after photo bleaching) analysis showed that mutations in NAD(+) binding center of GAPDH abrogated its intranuclear interactions. CONCLUSION Our results suggest an important functional role of phosphorylated amino acids in the NAD(+) binding center in GAPDH interactions with its intranuclear partners.
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