ADAMTS3 Promotes Hepatocellular Carcinoma Cell Growth and Migration Through TGF-β:TGFBR2 Signaling

Early diagnosis of hepatocellular carcinoma (HCC) still represents a significant challenge, particularly in the context of etiological shift toward obesity and non-viral liver disease-associated HCC. Through intersection-based analysis of independent transcriptomic datasets comprising healthy controls, individuals with obesity or NAFLD, and HCC patients with viral or non-viral etiologies, we prioritized ADAMTS3, a secreted protein, for further investigation of its functional and mechanistic relevance to HCC. ADAMTS3 was upregulated in HCC and demonstrated transcriptomic discrimination between HCC and non-HCC populations. Notably, in the validation cohort, ADAMTS3 retained discriminative capacity in clinically defined alpha-fetoprotein-negative HCC patients. Functionally, ADAMTS3 knockdown impaired cell proliferation, clonogenicity, and migration, while inducing apoptosis and cell-cycle arrest. Reintroduction of ADAMTS3 partially rescued these cellular effects. Mechanistically, ADAMTS3 promotes HCC cell growth and migration through TGF-β:TGFBR2 signaling. ADAMTS3 knockdown increased extracellular TGF-β and downstream SMAD phosphorylation. Neutralization of extracellular TGF-β alleviated growth inhibition caused by ADAMTS3 knockdown. Consistently, TGFBR2 knockdown partially restored the cell growth and migration suppressed by ADAMTS3 knockdown. We also developed a DNA origami-based SERS aptasensor targeting ADAMTS3, achieving highly sensitive detection of ADAMTS3 down to 10−12 M with strong quantitative capability (R2 = 0.914). Together, our findings support a role for ADAMTS3 in promoting HCC cell growth and migration and provide a basis for further investigation of its relevance to HCC biomarker development. The DNA origami-based SERS aptasensor provides a sensitive analytical approach for future studies of circulating or serum ADAMTS3.

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Journal
Cells
Published
2026-09-30
DOI
https://doi.org/10.3390/cells15191784
Primary Topic
Ferroptosis and cancer prognosis
Type
article
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0.00
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article

ADAMTS3 Promotes Hepatocellular Carcinoma Cell Growth and Migration Through TGF-β:TGFBR2 Signaling

Yaosen Wang, Nicolò Maccaferri, Huaizhou Jin, Denis Garoli et al.
Cells
Ferroptosis and cancer prognosis
article

ADAMTS3 Promotes Hepatocellular Carcinoma Cell Growth and Migration Through TGF-β:TGFBR2 Signaling

Yaosen Wang, Nicolò Maccaferri, Huaizhou Jin, Denis Garoli, Ali Douaki, Shangzhong Jin, Chen Wang, Yanqiu Zou, Jianguo Feng, Qijie Zhang
article en

Abstract

Early diagnosis of hepatocellular carcinoma (HCC) still represents a significant challenge, particularly in the context of etiological shift toward obesity and non-viral liver disease-associated HCC. Through intersection-based analysis of independent transcriptomic datasets comprising healthy controls, individuals with obesity or NAFLD, and HCC patients with viral or non-viral etiologies, we prioritized ADAMTS3, a secreted protein, for further investigation of its functional and mechanistic relevance to HCC. ADAMTS3 was upregulated in HCC and demonstrated transcriptomic discrimination between HCC and non-HCC populations. Notably, in the validation cohort, ADAMTS3 retained discriminative capacity in clinically defined alpha-fetoprotein-negative HCC patients. Functionally, ADAMTS3 knockdown impaired cell proliferation, clonogenicity, and migration, while inducing apoptosis and cell-cycle arrest. Reintroduction of ADAMTS3 partially rescued these cellular effects. Mechanistically, ADAMTS3 promotes HCC cell growth and migration through TGF-β:TGFBR2 signaling. ADAMTS3 knockdown increased extracellular TGF-β and downstream SMAD phosphorylation. Neutralization of extracellular TGF-β alleviated growth inhibition caused by ADAMTS3 knockdown. Consistently, TGFBR2 knockdown partially restored the cell growth and migration suppressed by ADAMTS3 knockdown. We also developed a DNA origami-based SERS aptasensor targeting ADAMTS3, achieving highly sensitive detection of ADAMTS3 down to 10−12 M with strong quantitative capability (R2 = 0.914). Together, our findings support a role for ADAMTS3 in promoting HCC cell growth and migration and provide a basis for further investigation of its relevance to HCC biomarker development. The DNA origami-based SERS aptasensor provides a sensitive analytical approach for future studies of circulating or serum ADAMTS3.

CellsVol. 15(19)
University of Modena and Reggio Emilia (IT), Italian Institute of Technology (IT), Zhejiang Cancer Hospital (CN), Second Affiliated Hospital of Zhejiang University (CN), China Jiliang University (CN), Zhejiang University of Technology (CN), Zhejiang University (CN), Umeå University (SE)
Reduced inequalities
Openalex Percentile: Top 12%
Ferroptosis and cancer prognosis
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