Knockdown of TRIM35 suppresses cell proliferation and metastasis by modulating the PPAR signalling pathway in papillary thyroid cancer cells
Liubing Zhang, Aiping Peng, Yue Qin
Journal:Translational Cancer Research
IF:2.1
DOI:10.21037/tcr-2025-1-2769
PMID:
Published:2026-04-28
research field:肿瘤学分子生物学癌症研究内分泌学信号转导
Abstract
Background Although patients with papillary thyroid cancer (PTC) generally have a favourable prognosis, they still face the possibility of recurrence after surgery. Identifying biomarkers related to PTC initiation and progression is crucial. The role and regulatory mechanisms of tripartite motif containing 35 (TRIM35) in PTC remain unclear. This study aimed to investigate the expression, biological functions, and underlying mechanisms of TRIM35 in PTC. Methods The expression of TRIM35 was evaluated via immunohistochemistry, and its association with patient clinicopathological features was examined with Fisher’s exact test. In PTC cell lines, TRIM35 was silenced using small interfering RNA (siRNA). A series of functional assays were then performed. Cell viability was measured with the Cell Counting Kit-8. Cell motility was assessed via wound healing assays. Cell migration and invasion were evaluated using Transwell chambers, with invasion assays specifically employing a Matrigel coating. Commercial assay kits were employed to quantify lactate production along with the expression of key glycolytic enzymes—hexokinase (HK) and lactate dehydrogenase A (LDHA). Transcriptomic sequencing was conducted to identify differentially expressed genes (DEGs) in TRIM35-knockdown K1 cells. Finally, protein levels of peroxisome proliferator-activated receptor gamma (PPARγ) and cluster of differentiation 36 (CD36) were detected by western blot analysis. Results TRIM35 expression was elevated in cancerous tissues, and its levels were closely linked to tumour size and the presence of lymphovascular invasion. Knockdown of TRIM35 notably suppressed cellular growth and metastasis of PTC cells. Interestingly, PTC cells with reduced TRIM35 levels produced significantly lower amounts of lactate. Moreover, we detected a notable decrease in the levels of HK and LDHA, in TRIM35-knockdown K1 and TPC-1 cells.
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