Abstract

Chromosomal translocations play a crucial role in tumorigenesis, often resulting in the formation of chimeric genes or in gene deregulation through position effects. T-cell acute lymphoblastic leukemia (T-ALL) is associated with a large number of such rearrangements. We report the ectopic expression of the 3' portion of EST DA926692 in the bone marrow of a childhood T-ALL case showing a t(2;11)(q11.2;p15.1) translocation as the sole chromosome abnormality. The breakpoints, defined at the sequence level, mapped within HPS5 (Hermansky Pudlak syndrome 5) intron 1 at 11p15.1, and DA926692 exon 2 at 2q11.2. The translocation was accompanied by a submicroscopic inversion that brought the two genes into the same transcriptional orientation. No chimeric trancript was detected. Interestingly, Real-Time Quantitative (RQ)-PCR detected, in the patient's bone marrow, expression of a 173 bp product corresponding to the 3' portion of DA926692. Samples from four T-ALL cases with a normal karyotype and normal bone marrow used as controls were negative. It might be speculated that the juxtaposition of this genomic segment to the CpG island located upstream HPS5 activated DA92669 expression. RQ-PCR analysis showed expression positivity in 6 of 23 human tissues examined. Bioinformatic analysis excluded that this small non-coding RNA is a precursor of micro-RNA, although it is conceivable that it has a different, yet unknown, functional role. To the best of our knowledge, this is the first report, in cancer, of the activation of a small non-coding RNA as a result of a chromosomal translocation.

Highlights

  • Further Real-Time Quantitative (RQ)-PCR analyses aiming at quantifying the expression levels of genes flanking the breakpoints, i.e. HPS5 (Fig. 2A) and GTF2H1 on chromosome 11, and ANKRD36, FAHD2B, KIAA1641, ZAP70 on chromosome 2, revealed no misexpression in the present case compared to other T-cell acute lymphoblastic leukemia (T-ALL) cases without the t(2;11) translocation

  • A) The results showed no statistically significant change in HPS5 expression level with primers for exon1 (HPS5ex119F+HPS5ex1-96R) and exons 20-21 (HPS5ex20-3216F and HPS5ex21-3255R), if compared with the mean Ct value of the childhood T-ALL controls

  • C) RT-PCR results obtained with DA926692ex2anewF and DA926692ex2anewR (Table 1), showing a band of 173 bp only in the patient's bone marrow and normal genomic DNA

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Summary

Introduction

T-ALL, as other hematological malignancies, is associated with a number of chromosomal abnormalities, resulting either in a position effect or in a gene fusion [6]. That the chromosome 11 breakpoint was encompassed by the BAC clone RP11-320K10 (chr11:18,229,291– 18,413,758) and the fosmid G248P8335B2 (Fig. 1B), harboring the 5' UTR regions of two genes, HPS5 and GTF2H1, located 422 bp apart and in opposite transcriptional orientation (Fig. 1F).

Results
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