4.7 Article

A highly heterogeneous mutational pattern in POEMS syndrome

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LEUKEMIA
卷 35, 期 4, 页码 1100-1107

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SPRINGERNATURE
DOI: 10.1038/s41375-020-01101-4

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资金

  1. National Natural Science Foundation of China [81974011]
  2. Beijing Natural Science Foundation [7182128]
  3. Capital Health Research and Development of Special Fund
  4. CAMS Innovation Fund for Medical Sciences [2016-12M-1-002]
  5. National Key Research and Development Program of China [2016YFC0901503]

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POEMS syndrome, a rare plasma cell dyscrasia, has limited understanding of its pathogenesis and genetic features. Study revealed heterogeneous genomic profiles of bone marrow plasma cells in POEMS syndrome, showing some similarity to that of other plasma cell diseases.
POEMS syndrome is a rare plasma cell dyscrasia. Little is known about its pathogenesis and genetic features. We analyzed the mutational features of purified bone marrow plasma cells from 42 patients newly diagnosed with POEMS syndrome using a two-step strategy. Whole exome sequencing of ten patients showed a total of 170 somatic mutations in exonic regions and splicing sites, with paired peripheral blood mononuclear cells as a control. Three significantly mutated genes-LILRB1 (10%), HEATR9 (20%), and FMNL2 (10%)-and eight mutated known driver genes (MYD88, NFKB2, CHD4, SH2B3, POLE, STAT3, CHD3, and CUX1) were identified. Target region sequencing of 77 genes were then analyzed to validate the mutations in an additional 32 patients. A total of 32 mutated genes were identified, and genes recurrently mutated in more than three patients included CUX1 (19%), DNAH5 (16%), USH2A (16%), KMT2D (16%), and RYR1 (12%). Driver genes of multiple myeloma (BIRC3, LRP1B, KDM6A, and ATM) and eleven genes reported in light-chain amyloidosis were also identified in target region sequencing. Notably, VEGFA mutations were detected in one patient. Our study revealed heterogeneous genomic profiles of bone marrow plasma cells in POEMS syndrome, which might share some similarity to that of other plasma cell diseases.

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