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FXYD3 functionally demarcates an ancestral breast cancer stem cell subpopulation with features of drug-tolerant persisters.


ABSTRACT: The heterogeneity of cancer stem cells (CSCs) within tumors presents a challenge in therapeutic targeting. To decipher the cellular plasticity that fuels phenotypic heterogeneity, we undertook single-cell transcriptomics analysis in triple-negative breast cancer (TNBC) to identify subpopulations in CSCs. We found a subpopulation of CSCs with ancestral features that is marked by FXYD domain-containing ion transport regulator 3 (FXYD3), a component of the Na+/K+ pump. Accordingly, FXYD3+ CSCs evolve and proliferate, while displaying traits of alveolar progenitors that are normally induced during pregnancy. Clinically, FXYD3+ CSCs were persistent during neoadjuvant chemotherapy, hence linking them to drug-tolerant persisters (DTPs) and identifying them as crucial therapeutic targets. Importantly, FXYD3+ CSCs were sensitive to senolytic Na+/K+ pump inhibitors, such as cardiac glycosides. Together, our data indicate that FXYD3+ CSCs with ancestral features are drivers of plasticity and chemoresistance in TNBC. Targeting the Na+/K+ pump could be an effective strategy to eliminate CSCs with ancestral and DTP features that could improve TNBC prognosis.

SUBMITTER: Li M 

PROVIDER: S-EPMC10645391 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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FXYD3 functionally demarcates an ancestral breast cancer stem cell subpopulation with features of drug-tolerant persisters.

Li Mengjiao M   Nishimura Tatsunori T   Takeuchi Yasuto Y   Hongu Tsunaki T   Wang Yuming Y   Shiokawa Daisuke D   Wang Kang K   Hirose Haruka H   Sasahara Asako A   Yano Masao M   Ishikawa Satoko S   Inokuchi Masafumi M   Ota Tetsuo T   Tanabe Masahiko M   Tada Kei-Ichiro KI   Akiyama Tetsu T   Cheng Xi X   Liu Chia-Chi CC   Yamashita Toshinari T   Sugano Sumio S   Uchida Yutaro Y   Chiba Tomoki T   Asahara Hiroshi H   Nakagawa Masahiro M   Sato Shinya S   Miyagi Yohei Y   Shimamura Teppei T   Nagai Luis Augusto E LAE   Kanai Akinori A   Katoh Manami M   Nomura Seitaro S   Nakato Ryuichiro R   Suzuki Yutaka Y   Tojo Arinobu A   Voon Dominic C DC   Ogawa Seishi S   Okamoto Koji K   Foukakis Theodoros T   Gotoh Noriko N  

The Journal of clinical investigation 20231115 22


The heterogeneity of cancer stem cells (CSCs) within tumors presents a challenge in therapeutic targeting. To decipher the cellular plasticity that fuels phenotypic heterogeneity, we undertook single-cell transcriptomics analysis in triple-negative breast cancer (TNBC) to identify subpopulations in CSCs. We found a subpopulation of CSCs with ancestral features that is marked by FXYD domain-containing ion transport regulator 3 (FXYD3), a component of the Na+/K+ pump. Accordingly, FXYD3+ CSCs evol  ...[more]

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