4.7 Article

Post-transcriptional Modifications Contribute to the Upregulation of Cyclin D2 in Multiple Myeloma

Journal

CLINICAL CANCER RESEARCH
Volume 22, Issue 1, Pages 207-217

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1078-0432.CCR-14-2796

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Funding

  1. Instituto de Salud Carlos III (Fondo de Investigaciones Sanitarias) [PI08/0568, PI13/00111]
  2. Asociacion Espanola Contra el Cancer (AECC) [GCB120981SAN]
  3. Gerencia Regional de Salud, Junta de Castilla y Leon [GRS 702/A/11, BIO/SA57/13, BIO/SA35/14]
  4. Spanish Myeloma Network Program [RD12/0036/0058]
  5. INNOCAMPUS Program [CEI10-1-0010]
  6. Instituto de Salud Carlos III [PS09/01897, PIE14/00066]
  7. Contrato Miguel Servet [CP13/00080]
  8. FEDER
  9. MINECO [SAF2012-32810]
  10. NIH [R01 CA109335-04A1]
  11. Junta de Castilla y Leon [BIO/SA32/14, CSI001U14]
  12. Fundacion Inocente Inocente
  13. German Carreras Foundation [DJCLS R13/26]
  14. ARIMMORA project (European Union's Seventh Framework Programme (FP7)) [282891]
  15. Instituto de Salud Carlos III (Ministerio de Economia y Competitividad) [CP14/00082 AES 2013-2016]
  16. MINECO (Red de Excelencia Consolider OncoBIO) [SAF2014-57791-REDC]
  17. NATIONAL CANCER INSTITUTE [R01CA109335] Funding Source: NIH RePORTER

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Purpose: Dysregulation of one of the three D-cyclin genes has been observed in virtually all multiple myeloma tumors. The mechanisms by which CCND2 is upregulated in a set of multiple myeloma are not completely deciphered. We investigated the role of post-transcriptional regulation through the interaction between miRNAs and their binding sites at 3'UTR in CCND2 overexpression in multiple myeloma. Experimental Design: Eleven myeloma cell lines and 45 primary myeloma samples were included in the study. Interactions between miRNAs deregulated in multiple myeloma and mRNA targets were analyzed by 3'UTR-luciferase plasmid assay. The presence of CCND2 mRNA isoforms different in length was explored using qRT-PCR, Northern blot, mRNA FISH, and 3' rapid amplification of cDNA ends (RACE)-PCR. Results: We detected the presence of short CCND2 mRNA, both in the multiple myeloma cell lines and primary cells. The results obtained by 3' RACE experiments revealed that changes in CCND2 3'UTR length are explained by alternative polyadenylation. The luciferase assays using plasmids harboring the truncated CCND2 mRNA strongly confirmed the loss of miRNA sites in the shorter CCND2 mRNA isoform. Those multiple myelomas with greater abundance of the shorter 3'UTR isoform were associated with significant higher level of total CCND2 mRNA expression. Furthermore, functional analysis showed significant CCND2 mRNA shortening after CCND1 silencing and an increased relative expression of longer isoform after CCND1 and CCND3 overexpression, suggesting that cyclin D1 and D3 could regulate CCND2 levels through modifications in polyadenylation-cleavage reaction. Conclusions: Overall, these results highlight the impact of CCND2 3'UTR shortening on miRNA-dependent regulation of CCND2 in multiple myeloma. (C)2015 AACR.

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