BiologyMedicine

Apala Pal, P. K. Ghosh, Sahana Ghosh, Sachin Kumar Tripathi, S. Patra, D. Khan, Arindam Maitra, Saumitra Das

2026.2.19FEBS Journal

DOI: 10.1111/febs.70465

tlooto サマリー

A previously unknown ∆40p53/miR-4671-5p/SGSH axis that, when dysregulated, induces intra-S-phase cell cycle arrest and may contribute to cancer outcomes is revealed.

要旨

Parsing the functions of the tumor suppressor tumor protein p53 (TP53) is complex due to the multiple isoforms it encodes. ∆40p53, an N-terminally truncated p53 isoform and the only translational isoform, modulates full-length p53 (FLp53) activity and independently regulates targets such as the miR-186-5p/transcriptional repressor protein YY1 axis. To identify additional miRNAs regulated by ∆40p53, we performed small RNA sequencing. We found that ectopic overexpression of ∆40p53, but not FLp53, significantly downregulated miR-4671-5p. Expression of both isoforms at varying ratios revealed that miR-4671-5p may be modulated by FLp53 in a ∆40p53-dependent manner. In silico analysis identified N-sulfoglucosamine sulfohydrolase (SGSH) as a potential miR-4671-5p target. SGSH expression showed an inverse correlation with miR-4671-5p in cancer datasets and had prognostic significance. SGSH mRNA and protein levels were reduced upon miR-4671-5p overexpression or si∆40p53 treatment, confirming regulatory linkage. Functionally, miR-4671-5p overexpression induced intra-S-phase cell cycle arrest, implicating SGSH in cell cycle regulation. These results reveal a previously unknown ∆40p53/miR-4671-5p/SGSH axis that, when dysregulated, induces intra-S-phase cell cycle arrest and may contribute to cancer outcomes. Our findings highlight the distinct regulatory role of ∆40p53, independent of FLp53, in maintaining cellular and metabolic homeostasis via miRNA-mediated mechanisms.

引用形式

PAL, Apala, et al. Disruption of the ∆40p53/mir-4671-5p/sgsh axis results in intra-s-phase arrest and poor cancer prognosis. FEBS Journal, 2026.