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Article

Differential CMS-Related Expression of Cell Surface Carbonic Anhydrases IX and XII in Colorectal Cancer Models—Implications for Therapy

1
Department of Internal Medicine IV (Hematology/Oncology), Medical Faculty, Martin Luther University Halle-Wittenberg, 06120 Halle, Germany
2
Department of Surgical and Conservative Pediatrics and Adolescent Medicine, Medical Faculty, Martin Luther University Halle-Wittenberg, 06120 Halle, Germany
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2023, 24(6), 5797; https://doi.org/10.3390/ijms24065797
Submission received: 22 February 2023 / Revised: 14 March 2023 / Accepted: 16 March 2023 / Published: 18 March 2023

Abstract

Tumor-associated carbonic anhydrases IX (CAIX) and XII (CAXII) have long been in the spotlight as potential new targets for anti-cancer therapy. Recently, CAIX/CAXII specific inhibitor SLC-0111 has passed clinical phase I study and showed differential response among patients with colorectal cancer (CRC). CRC can be classified into four different consensus molecular subgroups (CMS) showing unique expression patterns and molecular traits. We questioned whether there is a CMS-related CAIX/CAXII expression pattern in CRC predicting response. As such, we analyzed transcriptomic data of tumor samples for CA9/CA12 expression using Cancertool. Protein expression pattern was examined in preclinical models comprising cell lines, spheroids and xenograft tumors representing the CMS groups. Impact of CAIX/CAXII knockdown and SLC-0111 treatment was investigated in 2D and 3D cell culture. The transcriptomic data revealed a characteristic CMS-related CA9/CA12 expression pattern with pronounced co-expression of both CAs as a typical feature of CMS3 tumors. Protein expression in spheroid- and xenograft tumor tissue clearly differed, ranging from close to none (CMS1) to strong CAIX/CAXII co-expression in CMS3 models (HT29, LS174T). Accordingly, response to SLC-0111 analyzed in the spheroid model ranged from no (CMS1) to clear (CMS3), with moderate in CMS2 and mixed in CMS4. Furthermore, SLC-0111 positively affected impact of single and combined chemotherapeutic treatment of CMS3 spheroids. In addition, combined CAIX/CAXII knockdown and more effective treatment with SLC-0111 reduced clonogenic survival of CMS3 modelling single cells. In conclusion, the preclinical data support the clinical approach of targeted CAIX/CAXII inhibition by showing linkage of expression with response and suggest that patients with CMS3-classified tumors would most benefit from such treatment.
Keywords: carbonic anhydrases; colorectal cancer; consensus molecular subtypes; CMS; SLC-0111; targeted inhibition of carbonic anhydrases; chemotherapy carbonic anhydrases; colorectal cancer; consensus molecular subtypes; CMS; SLC-0111; targeted inhibition of carbonic anhydrases; chemotherapy

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MDPI and ACS Style

Rotermund, A.; Brandt, S.; Staege, M.S.; Luetzkendorf, J.; Mueller, L.P.; Mueller, T. Differential CMS-Related Expression of Cell Surface Carbonic Anhydrases IX and XII in Colorectal Cancer Models—Implications for Therapy. Int. J. Mol. Sci. 2023, 24, 5797. https://doi.org/10.3390/ijms24065797

AMA Style

Rotermund A, Brandt S, Staege MS, Luetzkendorf J, Mueller LP, Mueller T. Differential CMS-Related Expression of Cell Surface Carbonic Anhydrases IX and XII in Colorectal Cancer Models—Implications for Therapy. International Journal of Molecular Sciences. 2023; 24(6):5797. https://doi.org/10.3390/ijms24065797

Chicago/Turabian Style

Rotermund, Arne, Sarah Brandt, Martin S. Staege, Jana Luetzkendorf, Lutz P. Mueller, and Thomas Mueller. 2023. "Differential CMS-Related Expression of Cell Surface Carbonic Anhydrases IX and XII in Colorectal Cancer Models—Implications for Therapy" International Journal of Molecular Sciences 24, no. 6: 5797. https://doi.org/10.3390/ijms24065797

APA Style

Rotermund, A., Brandt, S., Staege, M. S., Luetzkendorf, J., Mueller, L. P., & Mueller, T. (2023). Differential CMS-Related Expression of Cell Surface Carbonic Anhydrases IX and XII in Colorectal Cancer Models—Implications for Therapy. International Journal of Molecular Sciences, 24(6), 5797. https://doi.org/10.3390/ijms24065797

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