CTCF-associated chromatin changes between HOXD1 and HOXD8 contribute to TNBC progression

Abstract Homeobox (HOX) genes and their encoded DNA-binding homeoproteins are important regulators of developmental processes and have been implicated in cancer pathogenesis. Here, we investigated the roles of HOXD1 and HOXD8 across different molecular subtypes of human breast cancer (BC) using a combination of in silico analyses of large-scale patient datasets, in vitro RNA interference (RNAi) phenotyping, and in vivo validation studies. Expression levels of HOXD1 and HOXD8 were differentially altered across BC subtypes and were specifically reduced in the aggressive triple-negative breast cancer (TNBC) subtype. Functional analyses demonstrated that reduced HOXD1 and HOXD8 expression was linked to enhanced invasive, migratory, and proliferative phenotypes. In addition, our molecular analyses suggest that CCCTC-binding factor (CTCF)-associated chromatin changes and DNA methylation status at the HOXD locus contribute to coordinated regulation of HOXD1 and HOXD8 expression in BC cells. Collectively, our findings support a potential tumor-suppressive role for HOXD1 and HOXD8 in TNBC and suggest that the HOXD1 / HOXD8 regulatory axis has biological and therapeutic relevance in aggressive BC.

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Publication Details

Journal
Experimental & Molecular Medicine
Published
2026-10-06
DOI
https://doi.org/10.1038/s12276-026-01861-6
Primary Topic
Breast Cancer Treatment Studies
Type
article
Field-Weighted Citation Impact
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article

CTCF-associated chromatin changes between HOXD1 and HOXD8 contribute to TNBC progression

Ji Hoon Oh, Clara Yuri Kim, Da Som Jeong
Experimental & Molecular Medicine
Breast Cancer Treatment Studies
article

CTCF-associated chromatin changes between HOXD1 and HOXD8 contribute to TNBC progression

Ji Hoon Oh, Clara Yuri Kim, Da Som Jeong
article en

Abstract

Abstract Homeobox (HOX) genes and their encoded DNA-binding homeoproteins are important regulators of developmental processes and have been implicated in cancer pathogenesis. Here, we investigated the roles of HOXD1 and HOXD8 across different molecular subtypes of human breast cancer (BC) using a combination of in silico analyses of large-scale patient datasets, in vitro RNA interference (RNAi) phenotyping, and in vivo validation studies. Expression levels of HOXD1 and HOXD8 were differentially altered across BC subtypes and were specifically reduced in the aggressive triple-negative breast cancer (TNBC) subtype. Functional analyses demonstrated that reduced HOXD1 and HOXD8 expression was linked to enhanced invasive, migratory, and proliferative phenotypes. In addition, our molecular analyses suggest that CCCTC-binding factor (CTCF)-associated chromatin changes and DNA methylation status at the HOXD locus contribute to coordinated regulation of HOXD1 and HOXD8 expression in BC cells. Collectively, our findings support a potential tumor-suppressive role for HOXD1 and HOXD8 in TNBC and suggest that the HOXD1 / HOXD8 regulatory axis has biological and therapeutic relevance in aggressive BC.

Experimental & Molecular Medicine
Yonsei University (KR), Keimyung College University (KR), Yonsei University Health System (KR), Keimyung University (KR), University of Pennsylvania (US)
Openalex Percentile: Top 17%
Breast Cancer Treatment Studies
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