4.7 Article

Deficiency of sphingomyelin synthase 2 prolongs survival by the inhibition of lymphoma infiltration through ICAM-1 reduction

Journal

FASEB JOURNAL
Volume 34, Issue 3, Pages 3838-3854

Publisher

WILEY
DOI: 10.1096/fj.201901783RR

Keywords

ICAM-1; infiltration; malignant lymphoma; SMS2; sphingomyelin

Funding

  1. Kanazawa Medical University
  2. JSPS KAKENHI [17K18205, 18H02697]
  3. Takeda Science Foundation
  4. Shalome Co., Ltd
  5. ONO Pharmaceutical Co., Ltd
  6. Strategic Research Foundation [S1201004, H2012-16]
  7. Grants-in-Aid for Scientific Research [17K18205, 18H02697] Funding Source: KAKEN

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The tumor microenvironment (TME) formation involving host cells and cancer cells through cell adhesion molecules (CAMs) is essential for the multiple steps of cancer metastasis and growth. Sphingomyelin synthase 2 (SMS2) is involved in inflammatory diseases such as obesity and diabetes mellitus by regulation of the SM/ceramide balance. However, the involvement of SMS2 in TME formation and metastasis is largely unknown. Here, we report that SMS2-deficient (SMS2-KO) mice show suppressed the EL4 cell infiltration to liver and prolonged survival time. ICAM-1 was identified as a candidate for the inhibition of TME formation in immortalized mouse embryonic fibroblasts (tMEFs) from mRNA array analysis for CAMs. Reduced SM/ceramide balance in SMS2-KO tMEFs suppressed the attachment of EL4 cells through transcriptional reduction of ICAM-1 by the inhibition of NF-kappa B activation. TNF-alpha-induced NF-kappa B activation and subsequent induction of ICAM-1 were suppressed in SMS2-KO tMEFs but restored by SMS2 re-introduction. In the EL4 cell infiltration mouse model, EL4 injection increased ICAM-1 expression in WT liver but not in SMS2-KO mouse liver. Therefore, inhibition of SMS2 may be a therapeutic target to suppress the infiltration of malignant lymphoma.

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