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在B细胞急性淋巴细胞白血病中鉴定出的一种新型PAX5-ELN融合蛋白对野生型PAX5起显性负性作用。

A novel PAX5-ELN fusion protein identified in B-cell acute lymphoblastic leukemia acts as a dominant negative on wild-type PAX5.

作者信息

Bousquet Marina, Broccardo Cyril, Quelen Cathy, Meggetto Fabienne, Kuhlein Emilienne, Delsol Georges, Dastugue Nicole, Brousset Pierre

机构信息

INSERM U563, Centre de Physiopathologie de Toulouse Purpan, Place Baylac, 31059 Toulouse Cedex, France.

出版信息

Blood. 2007 Apr 15;109(8):3417-23. doi: 10.1182/blood-2006-05-025221. Epub 2006 Dec 19.

Abstract

We report a novel t(7;9)(q11;p13) translocation in 2 patients with B-cell acute lymphoblastic leukemia (B-ALL). By fluorescent in situ hybridization and 3' rapid amplification of cDNA ends, we showed that the paired box domain of PAX5 was fused with the elastin (ELN) gene. After cloning the full-length cDNA of the chimeric gene, confocal microscopy of transfected NIH3T3 cells and Burkitt lymphoma cells (DG75) demonstrated that PAX5-ELN was localized in the nucleus. Chromatin immunoprecipitation clearly indicated that PAX5-ELN retained the capability to bind CD19 and BLK promoter sequences. To analyze the functions of the chimeric protein, HeLa cells were cotransfected with a luc-CD19 construct, pcDNA3-PAX5, and with increasing amounts of pcDNA3-PAX5-ELN. Thus, in vitro, PAX5-ELN was able to block CD19 transcription. Furthermore, real-time quantitative polymerase chain reaction (RQ-PCR) experiments showed that PAX5-ELN was able to affect the transcription of endogenous PAX5 target genes. Since PAX5 is essential for B-cell differentiation, this translocation may account for the blockage of leukemic cells at the pre-B-cell stage. The mechanism involved in this process appears to be, at least in part, through a dominant-negative effect of PAX5-ELN on the wild-type PAX5 in a setting ofPAX5 haploinsufficiency.

摘要

我们报告了2例B细胞急性淋巴细胞白血病(B-ALL)患者中一种新的t(7;9)(q11;p13)易位。通过荧光原位杂交和cDNA末端的3'快速扩增,我们发现PAX5的配对盒结构域与弹性蛋白(ELN)基因融合。克隆嵌合基因的全长cDNA后,对转染的NIH3T3细胞和伯基特淋巴瘤细胞(DG75)进行共聚焦显微镜观察,结果显示PAX5-ELN定位于细胞核。染色质免疫沉淀明确表明PAX5-ELN保留了结合CD19和BLK启动子序列的能力。为了分析嵌合蛋白的功能,将luc-CD19构建体、pcDNA3-PAX5以及越来越多的pcDNA3-PAX5-ELN共转染HeLa细胞。因此,在体外,PAX5-ELN能够阻断CD19转录。此外,实时定量聚合酶链反应(RQ-PCR)实验表明PAX5-ELN能够影响内源性PAX5靶基因的转录。由于PAX5对B细胞分化至关重要,这种易位可能是白血病细胞在前B细胞阶段受阻的原因。这一过程涉及的机制似乎至少部分是通过PAX5-ELN在PAX5单倍体不足的情况下对野生型PAX5的显性负效应。

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