4.7 Article

Smc3 dosage regulates B cell transit through germinal centers and restricts their malignant transformation

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NATURE IMMUNOLOGY
卷 22, 期 2, 页码 240-U278

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41590-020-00827-8

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资金

  1. NCI/NIH [R35 CA220499, P01 CA229086-01A1]
  2. Samuel Waxman Cancer Research Foundation
  3. Follicular Lymphoma Consortium
  4. Chemotherapy Foundation
  5. Lymphoma Research Foundation
  6. NHLBI [5 T32 HL135465-3]
  7. NIH [UL1TR002384, R01 CA194547, R01 CA249054, R01 AI151059, P01 CA214274, R01 AI125416-03, R21 AI129851-02]
  8. NCI [P30 CA008748, R35 CA197594-01A1, R01 CA216421, PS-OC U54 CA143869-05, K08 CA215317]
  9. Damon Runyon Cancer Research Foundation [DRG 117-15]
  10. Edward P. Evans Foundation
  11. Starr Cancer Consortium [I7-A765, I9-A9-071, I13-0052]
  12. WorldQuant Foundation
  13. Pershing Square Sohn Cancer Research Alliance
  14. Leukemia and Lymphoma Society [LLS 9238-16, LLS MCL-982]
  15. American Cancer Society [RSG-15-189-01-RMC]
  16. St. Baldrick's Scholar Award
  17. NCI/NIH Cancer Center Support Grant [P30 CA016087.]
  18. LLS-SCOR [180078-02, 7021-20, 7012-16]
  19. LLS-TRP [6572-19]

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The study reveals that the cohesin ATPase subunit Smc3 plays a critical role in GC formation and B cell differentiation in the germinal center reaction. Haploinsufficiency of Smc3 results in GC hyperplasia, impaired PC differentiation, and accelerated lymphomagenesis by affecting the expression of lymphoma tumor suppressor genes.
During the germinal center (GC) reaction, B cells undergo extensive redistribution of cohesin complex and three-dimensional reorganization of their genomes. Yet, the significance of cohesin and architectural programming in the humoral immune response is unknown. Herein we report that homozygous deletion of Smc3, encoding the cohesin ATPase subunit, abrogated GC formation, while, in marked contrast, Smc3 haploinsufficiency resulted in GC hyperplasia, skewing of GC polarity and impaired plasma cell (PC) differentiation. Genome-wide chromosomal conformation and transcriptional profiling revealed defects in GC B cell terminal differentiation programs controlled by the lymphoma epigenetic tumor suppressors Tet2 and Kmt2d and failure of Smc3-haploinsufficient GC B cells to switch from B cell- to PC-defining transcription factors. Smc3 haploinsufficiency preferentially impaired the connectivity of enhancer elements controlling various lymphoma tumor suppressor genes, and, accordingly, Smc3 haploinsufficiency accelerated lymphomagenesis in mice with constitutive Bcl6 expression. Collectively, our data indicate a dose-dependent function for cohesin in humoral immunity to facilitate the B cell to PC phenotypic switch while restricting malignant transformation.

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