4.7 Article

Inactivation of ribosomal protein L22 promotes transformation by induction of the stemness factor, Lin28B

Journal

BLOOD
Volume 120, Issue 18, Pages 3764-3773

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2012-03-415349

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Funding

  1. National Institutes of Health [R01-AI073920, R01-CA77429, R21-CA141194, P01CA06927, T32 CA009035, 5K08CA133103]
  2. Center grant [P30-DK-50306]
  3. Commonwealth of Pennsylvania
  4. Blood Cell Development and Cancer Keystone
  5. Greenwald and Plain & Fancy Fellowships
  6. American Society of Hematology-Amos Faculty Development Program
  7. [U10 CA98543]
  8. [U10 CA98413]
  9. [U24 CA114766]
  10. [5P01CA068484]

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Ribosomal protein (RP) mutations in diseases such as 5q- syndrome both disrupt hematopoiesis and increase the risk of developing hematologic malignancy. However, the mechanism by which RP mutations increase cancer risk has remained an important unanswered question. We show here that monoallelic, germline inactivation of the ribosomal protein L22 (Rpl22) predisposes T-lineage progenitors to transformation. Indeed, RPL22 was found to be inactivated in similar to 10% of human T-acute lymphoblastic lweukemias. Moreover, monoallelic loss of Rpl22 accelerates development of thymic lymphoma in both a mouse model of T-cell malignancy and in acute transformation assays in vitro. We show that Rpl22 inactivation enhances transformation potential through induction of the stemness factor, Lin28B. Our finding that Rpl22 inactivation promotes transformation by inducing expression of Lin28B provides the first insight into the mechanistic basis by which mutations in Rpl22, and perhaps some other RP genes, increases cancer risk. (Blood.2012;120(18):3764-3773)

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