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Updated: Dec 18, 2025

Isolation and Characterization of a Head and Neck Squamous Cell Carcinoma Subpopulation Having Stem Cell Characteristics
Published on: May 11, 2016
HDAC10 Regulates Cancer Stem-Like Cell Properties in KRAS-Driven Lung Adenocarcinoma
Yixuan Li1, Xiangyang Zhang2, Shaoqi Zhu3
1Department of Biochemistry & Molecular Medicine, George Washington Cancer Center, George Washington University School of Medicine & Health Sciences, Washington, D.C.
Abstract:
Activation of oncogenic KRAS is the most common driving event in lung adenocarcinoma development. Despite the existing rationale for targeting activated KRAS and its downstream effectors, the failure of clinical trials to date indicates that the mechanism of KRAS-driven malignancy remains poorly understood. Here we report that histone deacetylase 10 (HDAC10) might function as a putative tumor suppressor in mice carrying a spontaneously activated oncogenic Kras allele. Hdac10 deletion accelerated KRAS-driven early-onset lung adenocarcinomas, increased macrophage infiltration in the tumor microenvironment, and shortened survival time in mice. Highly tumorigenic and stem-like lung adenocarcinoma cells were increased in Hdac10-deleted tumors compared with Hdac10 wild-type tumors. HDAC10 regulated the stem-like properties of KRAS-expressing tumor cells by targeting SOX9. Expression of SOX9 was significantly increased in Hdac10-deleted tumor cells and depletion of SOX9 in Hdac10 knockout (KO) lung adenocarcinoma cells inhibited growth of tumorspheres. The genes associated with TGFβ pathway were enriched in Hdac10 KO tumor cells, and activation of TGFβ signaling contributed to SOX9 induction in Hdac10 KO lung adenocarcinoma cells. Overall, our study evaluates the functions and mechanisms of action of HDAC10 in lung carcinogenesis that will inform the rationale for targeting its related regulatory signaling as an anticancer strategy. SIGNIFICANCE: These findings linking HDAC10 and lung tumorigenesis identify potential novel strategies for targeting HDAC10 as a treatment for lung cancer.
Insights
Histone deacetylase 10 (HDAC10) acts as a tumor suppressor in lung cancer. Its absence accelerates KRAS-driven lung adenocarcinoma by increasing SOX9 and TGFβ signaling, highlighting HDAC10 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Activating mutations in KRAS are key drivers of lung adenocarcinoma.
- Current KRAS-targeted therapies face challenges due to incomplete understanding of KRAS-driven malignancy.
- Histone deacetylase 10 (HDAC10) is investigated for its role in lung cancer development.
Purpose of the Study:
- To investigate the function of HDAC10 in KRAS-driven lung adenocarcinoma.
- To elucidate the molecular mechanisms by which HDAC10 influences tumor progression.
- To identify potential therapeutic strategies targeting HDAC10 signaling in lung cancer.
Main Methods:
- Utilized a mouse model with spontaneously activated oncogenic Kras.
- Assessed the impact of Hdac10 deletion on tumor development, macrophage infiltration, and survival.
- Analyzed the role of HDAC10 in regulating stem-like properties of lung adenocarcinoma cells via SOX9 and TGFβ signaling.
Main Results:
- Hdac10 deletion accelerated lung adenocarcinoma, increased macrophage infiltration, and reduced survival in mice.
- Loss of HDAC10 led to an increase in highly tumorigenic and stem-like lung adenocarcinoma cells.
- HDAC10 loss elevated SOX9 expression and activated TGFβ signaling, promoting tumor growth.
Conclusions:
- HDAC10 functions as a tumor suppressor in KRAS-driven lung carcinogenesis.
- HDAC10 regulates cancer stem cell properties through SOX9 and TGFβ pathways.
- Targeting HDAC10 or its associated signaling pathways presents a potential anticancer strategy for lung cancer.
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