Literature DB >> 21801145

Targeting the IL-6 pathway in multiple myeloma and its implications in cancer-associated gene hypermethylation.

Susan Blaydes Ingersoll1, Sarfraz Ahmad, Natalie D Thoni, Farhana H Ahmed, Kimberly A Monahan, John R Edwards.   

Abstract

Aberrant methylation of tumor suppressor genes (TSG) is an important epigenetic event in cancer, including multiple myeloma (MM). Interleukin-6 (IL-6), which plays a significant role in the pathogenesis of MM, also regulates DNA methylation. However, attempts to bring IL-6 blockade to the clinic have had limited success. We hypothesize that IL-6 regulation of hypermethylation may be an important pathway leading to rational chemotherapeutic/anti-IL-6 combinations. We first studied the correlation of IL-6 expression and dependence in MM cell lines: U266B1, RPMI8226, and KAS6/1. We confirmed that KAS6/1 is IL-6-dependent whereas U266B1 and RPMI8226 cells are IL-6-independent and that blocking IL-6 inhibited the growth of U266B1 (36% inhibition; p<0.05) and KAS6/1 (68% inhibition; p<0.01), but not the RPMI8226 cells. Using RT-PCR, we showed that U266B1 cells express IL-6, but RPMI8226 and KAS6/1 cells do not. This IL-6 expression pattern correlates with the anti-IL-6 inhibition findings. To correlate IL-6 sensitivity with hypermethylation of TSG, we investigated promoter methylation of CDH1 and DcR1. We found that the promoter of DcR1 and CDH1 is methylated in U266B1 cells and un-methylated in RPMI8226 cells. Furthermore, the DcR1 promoter was un-methylated in KAS6/1 cells. These data support our hypothesis that an IL-6-dependent pathway may regulate hypermethylation of TSG in MM. Newer chemotherapeutic agents that affect methylation are being studied in combination with IL-6 blockade.

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Year:  2011        PMID: 21801145

Source DB:  PubMed          Journal:  Med Chem        ISSN: 1573-4064            Impact factor:   2.745


  2 in total

1.  Integrative network analysis identifies novel drivers of pathogenesis and progression in newly diagnosed multiple myeloma.

Authors:  A Laganà; D Perumal; D Melnekoff; B Readhead; B A Kidd; V Leshchenko; P-Y Kuo; J Keats; M DeRome; J Yesil; D Auclair; S Lonial; A Chari; H J Cho; B Barlogie; S Jagannath; J T Dudley; S Parekh
Journal:  Leukemia       Date:  2017-06-23       Impact factor: 11.528

2.  The epigenetic impact of suberohydroxamic acid and 5‑Aza‑2'‑deoxycytidine on DNMT3B expression in myeloma cell lines differing in IL‑6 expression.

Authors:  Katerina Smesny Trtkova; Petra Luzna; Denisa Weiser Drozdkova; Katerina Cizkova; Lucie Janovska; Jan Gursky; Dana Prukova; Ivo Frydrych; Marian Hajduch; Jiri Minarik
Journal:  Mol Med Rep       Date:  2022-08-31       Impact factor: 3.423

  2 in total

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