首页> 美国卫生研究院文献>Molecular and Cellular Biology >The AD1 and AD2 Transactivation Domains of E2A Are Essential for the Antiapoptotic Activity of the Chimeric Oncoprotein E2A-HLF
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The AD1 and AD2 Transactivation Domains of E2A Are Essential for the Antiapoptotic Activity of the Chimeric Oncoprotein E2A-HLF

机译:E2A的AD1和AD2反式激活域对于嵌合癌蛋白E2A-HLF的抗凋亡活性至关重要

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摘要

The chimeric oncoprotein E2A-HLF, generated by the t(17;19) chromosomal translocation in pro-B-cell acute lymphoblastic leukemia, incorporates the transactivation domains of E2A and the basic leucine zipper (bZIP) DNA-binding and protein dimerization domain of HLF (hepatic leukemic factor). The ability of E2A-HLF to prolong the survival of interleukin-3 (IL-3)-dependent murine pro-B cells after IL-3 withdrawal suggests that it disrupts signaling pathways normally responsible for cell suicide, allowing the cells to accumulate as transformed lymphoblasts. To determine the structural motifs that contribute to this antiapoptotic effect, we constructed a panel of E2A-HLF mutants and programmed their expression in IL-3-dependent murine pro-B cells (FL5.12 line), using a zinc-inducible vector. Neither the E12 nor the E47 product of the E2A gene nor the wild-type HLF protein was able to protect the cells from apoptosis induced by IL-3 deprivation. Surprisingly, different combinations of disabling mutations within the HLF bZIP domain had little effect on the antiapoptotic property of the chimeric protein, so long as the amino-terminal portion of E2A remained intact. In the context of a bZIP domain defective in DNA binding, mutants retaining either of the two transactivation domains of E2A were able to extend cell survival after growth factor deprivation. Thus, the block of apoptosis imposed by E2A-HLF in pro-B lymphocytes depends critically on the transactivating regions of E2A. Since neither DNA binding nor protein dimerization through the bZIP domain of HLF is required for this effect, we propose mechanisms whereby protein-protein interactions with the amino-terminal region of E2A allow the chimera to act as a transcriptional cofactor to alter the expression of genes regulating the apoptotic machinery in pro-B cells.
机译:由前B细胞急性淋巴细胞白血病中t(17; 19)染色体易位产生的嵌合癌蛋白E2A-HLF结合了E2A的反式激活域和碱性亮氨酸拉链(bZIP)DNA结合以及蛋白的二聚化域HLF(肝性白血病因子)。撤出IL-3后,E2A-HLF能够延长白介素3(IL-3)依赖性鼠pro-B细胞的存活能力,这表明它破坏了通常导致细胞自杀的信号通路,从而使细胞在转化后得以积累淋巴母细胞。为了确定有助于这种抗凋亡作用的结构基序,我们构建了一组E2A-HLF突变体,并使用锌诱导型载体对它们在IL-3依赖性鼠pro-B细胞(FL5.12系)中的表达进行了编程。 E2A基因的E12或E47产物或野生型HLF蛋白均不能保护细胞免受IL-3剥夺诱导的凋亡。出人意料的是,只要E2A的氨基末端部分保持完整,HLF bZIP结构域内致残突变的不同组合对嵌合蛋白的抗凋亡特性影响很小。在DNA结合缺陷的bZIP结构域的情况下,保留E2A的两个反式激活结构域之一的突变体能够在剥夺生长因子后延长细胞存活。因此,由E2A-HLF在前B淋巴细胞中施加的凋亡的阻滞主要取决于E2A的反式激活区域。由于这种作用既不需要通过HLF的bZIP域进行的DNA结合也不需要蛋白质二聚化,因此我们提出了蛋白质与蛋白质与E2A氨基末端区域相互作用的机制,使嵌合体充当转录辅因子来改变基因的表达。调节pro-B细胞的凋亡机制。

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