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A novel case of glial transdifferentiation in renal medullary carcinoma brain metastasis

  • Maria A. Gubbiotti*
  • , Ian E. McCutcheon
  • , Priya Rao
  • , Giannicola Genovese
  • , Linghua Wang
  • , Artem Tarasov
  • , Vladislav Putintsev
  • , Amber Berlinski
  • , Danil Stupichev
  • , Kirill Kriukov
  • , Suren Davitavyan
  • , Basim Salem
  • , Alexander Sarachakov
  • , Dmitry Lebedev
  • , Michael Hensley
  • , Alexander Bagaev
  • , Francesca Paradiso
  • , Vladimir Kushnarev
  • , Gleb Khegai
  • , Nizar M. Tannir* (Co-last Author)
  • Pavlos Msaouel* (Co-last Author)
*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Renal medullary carcinoma is a rare undifferentiated tumor of the kidney associated with sickle cell trait and characterized by INI1 (SMARCB1) loss. Although metastasis to lungs, lymph nodes, and bone is commonly reported, distant spread to the central nervous system almost never occurs. Here we present an unusual case of a patient with renal medullary carcinoma with metastasis to the brain following treatment which included tazemetostat, an EZH2 inhibitor. The metastatic brain lesion harbored morphologic, immunohistochemical, and methylation profile supportive of a primary CNS phenotype with loss of the trimethylated lysine 27 residue of histone 3 while maintaining INI1 loss and a specific gene fusion shared with the patient’s tumor prior to initiation of tazemetostat therapy. Therefore, given the common genetic signatures in the brain metastasis and the patient’s prior tumor, this case represents a rare event of glial transdifferentiation in a brain metastasis of renal medullary carcinoma following the use of an epigenetic modulator. As renal medullary carcinoma has been known to cleverly utilize adaptive mechanisms for survival, we propose that such cell plasticity seen in this case may have been provoked by the use of a drug that alters the epigenetic signature of the tumor cells. Thus, careful assessment of tumor biology following novel therapeutic treatment options must be performed in order to note such unexpected consequences of treatment. © The Author(s) 2025.
Original languageEnglish
Article number12
JournalActa Neuropathologica Communications
Volume13
Issue number1
Online published20 Jan 2025
DOIs
Publication statusPublished - Dec 2025
Externally publishedYes

Bibliographical note

Publisher Copyright:
© The Author(s) 2025.

Funding

This work was supported in part by the Cancer Center Support Grant to MDACC (grant P30 CA016672) from the National Cancer Institute by MD Anderson’s Prometheus informatics system and by the Department of Genitourinary Medical Oncology’s Eckstein and Alexander Laboratories. P. Msaouel was supported by the National Cancer Institute R37CA288448 and R01CA285454, the Andrew Sabin Family Foundation Fellowship, Gateway for Cancer Research, a Translational Research Partnership Award (KC200096P1) and an Idea Development Award (RA230062) by the United States Department of Defense, an Advanced Discovery Award by the Kidney Cancer Association, a Translational Research Award by the V Foundation, the MD Anderson Physician-Scientist Award, the Finneran Family Endowment, as well as philanthropic donations by the Chris “CJ” Johnson Foundation, and by the family of Mike and Mary Allen.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Research Keywords

  • Renal medullary carcinoma
  • INI1
  • SMARCB1
  • Glial transdifferentiation
  • Tazemetostat
  • EZH2
  • H3K27me3

Publisher's Copyright Statement

  • This full text is made available under CC-BY 4.0. https://creativecommons.org/licenses/by/4.0/

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