4.7 Article

piRNA-30473 contributes to tumorigenesis and poor prognosis by regulating m6A RNA methylation in DLBCL

Journal

BLOOD
Volume 137, Issue 12, Pages 1603-1614

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood.2019003764

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Funding

  1. Science and Technology Development Project of Suzhou City [SS201856]
  2. National Clinical Research Center for Hematologic Diseases
  3. National Natural Science Foundation of China [81670191, 81673448]
  4. Jiangsu Social Development Project New Clinical Diagnosis and Treatment Technology [SBE2019740362]
  5. Clinical Key Diagnosis and Treatment Technologies in Suzhou City [LCZX201805]
  6. Fifth Phase of 333 High-level Talents Training Project in Jiangsu Province [BRA2018138]

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The study demonstrates that piRNA-30473 plays an oncogenic role in promoting the aggressive phenotype of DLBCL, and its depletion can reduce proliferation and induce cell cycle arrest. Through regulating m6A RNA methylation, the piRNA-30473/WTAP/HK2 axis contributes to the progression of DLBCL.
The initiation and progression of diffuse large B-cell lymphoma (DLBCL) is governed by genetic and epigenetic aberrations. As the most abundant eukaryotic messenger RNA (mRNA) modification, N6-methyladenosine (m6A) is known to influence various fundamental bioprocesses by regulating the target gene; however, the function of m6A modifications in DLBCL is unclear. PIWI-interacting RNAs (piRNAs) have been indicated to be epigenetic effectors in cancer. Here, we show that high expression of piRNA-30473 supports the aggressive phenotype of DLBCL, and piRNA-30473 depletion decreases proliferation and induces cell cycle arrest in DLBCL cells. In xenograft DLBCL models, piRNA-30473 inhibition reduces tumor growth. Moreover, piRNA-30473 is significantly associated with overall survival in a univariate analysis and is statistically significant after adjusting for the National Comprehensive Cancer Network-International Prognostic Index in the multivariate analysis. Additional studies demonstrate that piRNA-30473 exerts its oncogenic role through a mechanism involving the upregulation of WTAP, an m6A mRNA methylase, and thus enhances the global m6A level. Integrating transcriptome and m6Asequencing analyses reveals that WTAP increases the expression of its critical target gene, hexokinase 2 (HK2), by enhancing the HK2 m6A level, thereby promoting the progression of DLBCL. Together, the piRNA-30473/WTAP/HK2 axis contributes to tumorigenesis by regulating m6A RNA methylation in DLBCL. Furthermore, by comprehensively analyzing our clinical data and data sets, we discover that the m6A regulatory genes piRNA-30473 and WTAP improve survival prediction in DLBCL patients. Our study highlights the functional importance of the m6A modification in DLBCL and might assist in the development of a prognostic stratification and therapeutic approach for DLBCL.

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