4.8 Article

Exome sequencing identifies somatic mutations of DDX3X in natural killer/T-cell lymphoma

期刊

NATURE GENETICS
卷 47, 期 9, 页码 1061-+

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/ng.3358

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资金

  1. Chinese National Key Basic Research Project 973 [2013CB966800]
  2. Chinese Ministry of Health [201202003]
  3. Mega-projects of Scientific Research for the 12th Five-Year Plan [2013ZX09303302]
  4. State Key Laboratories Project of Excellence [81123005]
  5. National Natural Science Foundation of China [81325003, 81172254]
  6. Shanghai Commission of Science and Technology [11JC1407300]
  7. Program of Shanghai Subject Chief Scientist [13XD1402700]
  8. Doctoral Innovation Fund Projects from SJTU School of Medicine [BXJ201312]
  9. Samuel Waxman Cancer Research Foundation Co-PI Program
  10. Multi-center Hematology-Oncology Protocols Evaluation System (M-HOPES)

向作者/读者索取更多资源

Natural killer/T-cell lymphoma (NKTCL) is a malignant proliferation of CD56(+) and cytoCD3(+) lymphocytes with aggressive clinical course, which is prevalent in Asian and South American populations(1). The molecular pathogenesis of NKTCL has largely remained elusive. We identified somatic gene mutations in 25 people with NKTCL by whole-exome sequencing and confirmed them in an extended validation group of 80 people by targeted sequencing. Recurrent mutations were most frequently located in the RNA helicase gene DDX3X (21/105 subjects, 20.0%), tumor suppressors (TP53 and MGA), JAK-STAT-pathway molecules (STAT3 and STAT5B) and epigenetic modifiers (MLL2, ARID1A, EP300 and ASXL3). As compared to wild-type protein, DDX3X mutants exhibited decreased RNA-unwinding activity, loss of suppressive effects on cell-cycle progression in NK cells and transcriptional activation of NF-kappa B and MAPK pathways. Clinically, patients with DDX3X mutations presented a poor prognosis. Our work thus contributes to the understanding of the disease mechanism of NKTCL.

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