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Regulation of oncogenic transcription factor hTAFII68-TEC activity by human glyceraldehyde-3-phosphate dehydrogenase (GAPDH)

机译:人甘油-3-磷酸甘油脱氢酶(GAPDH)对致癌转录因子hTAFII68-TEC活性的调节

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摘要

Tumour-specific chromosomal rearrangements are known to create chimaeric products with the ability to generate many human cancers. hTAFII68-TEC (where hTAFII68 is human TATA-binding protein-associated factor II 68 and TEC is translocated in extraskeletal chondrosarcoma) is such a fusion product, resulting from a t(9;17) chromosomal translocation found in extraskeletal myxoid chondrosarcomas, where the hTAFII68 NTD (N-terminal domain) is fused to TEC protein. To identify proteins that control hTAFII68-TEC function, we used affinity chromatography on immobilized hTAFII68 (NTD) and MALDI-TOF (matrix-assisted laser-desorption ionization–time-of-flight) MS and isolated a novel hTAFII68-TEC-interacting protein, GAPDH (glyceraldehyde-3-phosphate dehydrogenase). GAPDH is a glycolytic enzyme that is also involved in the early steps of apoptosis, nuclear tRNA export, DNA replication, DNA repair and transcription. hTAFII68-TEC and GAPDH were co-immunoprecipitated from cell extracts, and glutathione S-transferase pull-down assays revealed that the C-terminus of hTAFII68 (NTD) was required for interaction with GAPDH. In addition, three independent regions of GAPDH (amino acids 1–66, 67–160 and 160–248) were involved in binding to hTAFII68 (NTD). hTAFII68-TEC-dependent transcription was enhanced by GAPDH, but not by a GAPDH mutant defective in hTAFII68-TEC binding. Moreover, a fusion of GAPDH with the GAL4 DNA-binding domain increased the promoter activity of a reporter containing GAL4 DNA-binding sites, demonstrating the presence of a transactivation domain(s) in GAPDH. The results of the present study suggest that the transactivation potential of the hTAFII68-TEC oncogene product is positively modulated by GAPDH.
机译:已知特定于肿瘤的染色体重排会产生能够产生许多人类癌症的嵌合产物。 hTAFII68-TEC(其中hTAFII68是人类TATA结合蛋白相关因子II 68,而TEC易位在骨骼外软骨肉瘤中)是这样的融合产物,是由于在骨骼外粘液性软骨肉瘤中发现的at(9; 17)染色体易位而产生的NTD(N末端域)与TEC蛋白融合。为了鉴定控制hTAFII68-TEC功能的蛋白质,我们在固定的hTAFII68(NTD)和MALDI-TOF(基质辅助激光解吸电离飞行时间)MS上进行了亲和层析,并分离了一种新型的hTAFII68-TEC相互作用蛋白,GAPDH(3-磷酸甘油醛脱氢酶)。 GAPDH是一种糖酵解酶,也参与细胞凋亡,核tRNA输出,DNA复制,DNA修复和转录的早期步骤。从细胞提取物中共免疫沉淀了hTAFII68-TEC和GAPDH,谷胱甘肽S-转移酶下拉分析表明,hTAFII68(NTD)的C末端是与GAPDH相互作用所必需的。此外,GAPDH的三个独立区域(氨基酸1–66、67–160和160–248)参与了与hTAFII68(NTD)的结合。 GAPDH增强了hTAFII68-TEC依赖性转录,但hTAFII68-TEC结合缺陷的GAPDH突变体却没有。此外,GAPDH与GAL4 DNA结合域的融合增加了含有GAL4 DNA结合位点的报告基因的启动子活性,表明GAPDH中存在反式激活域。本研究结果表明,hTAFII68-TEC致癌基因产物的反式激活潜能受到GAPDH的正调控。

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