International Journal of Molecular Sciences (May 2021)

Establishment and Characterization of a Cell Line (S-RMS1) Derived from an Infantile Spindle Cell Rhabdomyosarcoma with <i>SRF-NCOA2</i> Fusion Transcript

  • Marta Colletti,
  • Angela Galardi,
  • Evelina Miele,
  • Virginia Di Paolo,
  • Ida Russo,
  • Cristiano De Stefanis,
  • Rita De Vito,
  • Martina Rinelli,
  • Andrea Ciolfi,
  • Biagio De Angelis,
  • Angelica Zin,
  • Alessandro Guffanti,
  • Maria Cristina Digilio,
  • Antonio Novelli,
  • Rita Alaggio,
  • Giuseppe Maria Milano,
  • Angela Di Giannatale

DOI
https://doi.org/10.3390/ijms22115484
Journal volume & issue
Vol. 22, no. 11
p. 5484

Abstract

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Background: Spindle cell rhabdomyosarcoma (S-RMS) is a rare tumor that was previously considered as an uncommon variant of embryonal RMS (ERMS) and recently reclassified as a distinct RMS subtype with NCOA2, NCOA1, and VGLL2 fusion genes. In this study, we established a cell line (S-RMS1) derived from a four-month-old boy with infantile spindle cell RMS harboring SRF-NCOA2 gene fusion. Methods: Morphological and molecular characteristics of S-RMS1 were analyzed and compared with two RMS cell lines, RH30 and RD18. Whole genome sequencing of S-RMS1 and clinical exome sequencing of genomic DNA were performed. Results: S-RMS1 showed cells small in size, with a fibroblast-like morphology and positivity for MyoD-1, myogenin, desmin, and smooth muscle actin. The population doubling time was 3.7 days. Whole genome sequencing demonstrated that S-RMS1 retained the same genetic profile of the tumor at diagnosis. A Western blot analysis showed downregulation of AKT-p and YAP-p while RT-qPCR showed upregulation of endoglin and GATA6 as well as downregulation of TGFßR1 and Mef2C transcripts. Conclusion: This is the first report of the establishment of a cell line from an infantile spindle cell RMS with SRF-NCOA2 gene fusion. S-RMS1 should represent a useful tool for the molecular characterization of this rare and almost unknown tumor.

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