与 Hsp90 结合的免疫嗜血蛋白--环嗜血蛋白 40 是由 GA 结合蛋白(GABP)的多个位点介导的。

P Kumar, B K Ward, R F Minchin, T Ratajczak
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引用次数: 17

摘要

在类固醇受体异质复合体中,含有大型四肽重复的免疫嗜蛋白--环嗜蛋白 40(CyP40)、FKBP51 和 FKBP52--以热休克蛋白 90(Hsp90)中的一个共同相互作用位点为目标,并与 Hsp90 协调作用以调节受体的活性。免疫嗜蛋白与 Hsp90 之间相互作用的可逆性表明,细胞的相对丰度可能是决定类固醇受体复合物中免疫嗜蛋白成分的关键因素。为了研究 CyP40 基因的调控,我们分离了人类基因的一个 5 千碱基(kb)的 5'-flanking 区域,并证明与转录起始位点相邻的约 50 碱基对(bp)序列对于 CyP40 的基础表达至关重要。在这一关键区域内的三个串联排列的 Ets 位点被确定为多聚 Ets 相关转录因子 GA 结合蛋白(GABP)的结合元件。对该近端启动子序列的功能研究以及突变分析证实,这些位点对基础启动子的功能至关重要。此外,在 Cos1 细胞中过量表达 GABP α 和 GABP β 亚基会导致内源性 CyP40 mRNA 水平升高。值得注意的是,没有观察到 FKBP52 mRNA 表达的平行增加,这突显了 CyP40 和 FKBP52 基因调控模式的重要差异。我们的研究结果确定 GABP 是 CyP40 表达的关键调控因子。GABP 是有丝分裂原和应激激活途径的共同靶标,可能整合了这些不同的细胞外信号来调控 CyP40 基因的表达。
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Regulation of the Hsp90-binding immunophilin, cyclophilin 40, is mediated by multiple sites for GA-binding protein (GABP).

Within steroid receptor heterocomplexes the large tetratricopeptide repeat-containing immunophilins, cyclophilin 40 (CyP40), FKBP51, and FKBP52, target a common interaction site in heat shock protein 90 (Hsp90) and act coordinately with Hsp90 to modulate receptor activity. The reversible nature of the interaction between the immunophilins and Hsp90 suggests that relative cellular abundance might be a key determinant of the immunophilin component within steroid receptor complexes. To investigate CyP40 gene regulation, we have isolated a 5-kilobase (kb) 5'-flanking region of the human gene and demonstrated that a approximately 50 base pair (bp) sequence adjacent to the transcription start site is essential for CyP40 basal expression. Three tandemly arranged Ets sites within this critical region were identified as binding elements for the multimeric Ets-related transcription factor, GA binding protein (GABP). Functional studies of this proximal promoter sequence, in combination with mutational analysis, confirmed these sites to be crucial for basal promoter function. Furthermore, overexpression of both GABP alpha and GABP beta subunits in Cos1 cells resulted in increased endogenous CyP40 mRNA levels. Significantly, a parallel increase in FKBP52 mRNA expression was not observed, highlighting an important difference in the mode of regulation of the CyP40 and FKBP52 genes. Our results identify GABP as a key regulator of CyP40 expression. GABP is a common target of mitogen and stress-activated pathways and may integrate these diverse extracellular signals to regulate CyP40 gene expression.

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