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一个富含白血病的cDNA微阵列平台鉴定出与儿童急性淋巴细胞白血病生物学相关的新转录本。

A leukemia-enriched cDNA microarray platform identifies new transcripts with relevance to the biology of pediatric acute lymphoblastic leukemia.

作者信息

De Pittà Cristiano, Tombolan Lucia, Campo Dell'Orto Marta, Accordi Benedetta, te Kronnie Geertruy, Romualdi Chiara, Vitulo Nicola, Basso Giuseppe, Lanfranchi Gerolamo

机构信息

CRIBI Biotechnology Centre and Dipartimento di Biologia, Università degli Studi di Padova, Padova, Italy.

出版信息

Haematologica. 2005 Jul;90(7):890-8.

Abstract

BACKGROUND AND OBJECTIVES

Microarray gene expression profiling has been widely applied to characterize hematologic malignancies, has attributed a molecular signature to leukemia subclasses and has allowed new subclasses to be distinguished. We set out to use microarray technology to identify novel genes relevant for leukemogenesis. To this end we used a unique leukemia-enriched cDNA microarray platform.

DESIGN AND METHODS

The systematic sequencing of cDNA libraries of normal and leukemic bone marrow allowed us to increase the number of genes to yield a new release of a previously generated cDNA microarray. Using this platform we analyzed the expression profiles of 4,670 genes in bone marrow samples from 18 pediatric patients with acute lymphoblastic leukemia (ALL).

RESULTS

Expression profiling consistently distinguished the leukemia patients into three groups, those with T-ALL, B-ALL and B-ALL with MLL/AF4 rearrangement, in agreement with the clinical classification. Our platform identified 30 genes that best discriminate these three subtypes. Using mini-array technology these 30 genes were validated in another cohort of 17 patients. In particular we identified two novel genes not previously reported: endomucin (EMCN) and ubiquitin specific protease 33 (USP33) that appear to be over-expressed in B-ALL relative to their expression in T-ALL.

INTERPRETATION AND CONCLUSIONS

Microarray technology not only allows the distinction between disease subclasses but also offers a chance to identify new genes involved in leukemogenesis. Our approach of using a unique platform has proven to be fruitful in identifying new genes and we suggest exploration of other malignancies using this approach.

摘要

背景与目的

基因芯片基因表达谱分析已广泛应用于血液系统恶性肿瘤的特征描述,赋予白血病亚类分子特征,并使新的亚类得以区分。我们着手利用基因芯片技术鉴定与白血病发生相关的新基因。为此,我们使用了一个独特的富含白血病基因的cDNA芯片平台。

设计与方法

对正常和白血病骨髓的cDNA文库进行系统测序,使我们能够增加基因数量,从而产生先前生成的cDNA芯片的新版本。利用该平台,我们分析了18例儿童急性淋巴细胞白血病(ALL)患者骨髓样本中4670个基因的表达谱。

结果

表达谱分析始终将白血病患者分为三组,即T-ALL、B-ALL和伴有MLL/AF4重排的B-ALL,与临床分类一致。我们的平台鉴定出30个最能区分这三种亚型的基因。利用微阵列技术,在另一组17例患者中对这30个基因进行了验证。特别是,我们鉴定出两个以前未报道的新基因:内黏液素(EMCN)和泛素特异性蛋白酶33(USP33),相对于它们在T-ALL中的表达,它们在B-ALL中似乎过度表达。

解读与结论

基因芯片技术不仅能区分疾病亚类,还为鉴定参与白血病发生的新基因提供了机会。我们使用独特平台的方法已被证明在鉴定新基因方面卓有成效,我们建议用这种方法探索其他恶性肿瘤。

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