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Updated: Aug 16, 2025

MicroRNA In situ Hybridization for Formalin Fixed Kidney Tissues
Published on: November 30, 2013
Hypoxia-Induced Downregulation of miR-29 in Renal Tumor Cells Affects Collagen IV Subunit Expression through Multiple
Chuncheng Liu1,2, Linan Liu1,2, Jinlai Bo1
1School of Life Science and Technology, Inner Mongolia University of Science and Technology, Baotou 014010, China.
Abstract:
Multiple tumor exacerbations and treatment procedures, such as extracellular matrix remodeling, metabolic reprogramming, immunological evasion, and resistance to chemotherapy and radiotherapy, are influenced by intratumoral hypoxia. It is becoming increasingly clear how hypoxia interacts with the extracellular matrix and how this affects the growth of cancer. We analyzed the published sequencing results of hypoxia-stressed mouse kidney tumor cells and found that the expression of miR-29b was significantly downregulated. There are several sites that are complementary to the miR-29 seed sequence in the 3' non-coding regions (3'UTRs) of various extracellular matrix-related genes, including collagen IV. We analyzed the sequences of the 3'UTRs of different subunits of collagen IV in different species and constructed the corresponding phylogenetic trees. We found that the 3'UTRs of Col4a1 and Col4a4 may have been subjected to particular evolutionary pressures. By cloning the 3'UTRs of collagen IV subunits into the psiCHECKTM-2 vector, we found that seven of the eight sites in the Col4a3-Col4a6 gene complementary to miR-29 were significantly repressed by miR-29a, b (except for the 7774-7781 of Col4a3 gene). The inhibitory efficiency of miR-29a, b on these seven sites was between 27% and 57%. The research on the regulation of miR-29 and extracellular matrix by hypoxia can provide a theoretical basis for tumor and fibrosis research and treatment.
Insights
Hypoxia downregulates miR-29b in kidney tumors, affecting extracellular matrix genes like collagen IV. This miR-29 regulation by hypoxia offers insights for tumor and fibrosis treatments.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Intratumoral hypoxia influences tumor progression and treatment resistance.
- Hypoxia's interaction with the extracellular matrix (ECM) is crucial for cancer growth.
- Understanding these interactions is key for developing new therapeutic strategies.
Purpose of the Study:
- To investigate the role of hypoxia in regulating miR-29 expression and its impact on ECM genes in kidney tumors.
- To analyze the evolutionary conservation and functional repression of miR-29 binding sites in collagen IV 3'UTRs.
Main Methods:
- Analysis of sequencing data from hypoxia-stressed mouse kidney tumor cells.
- Bioinformatic analysis of 3'UTR sequences and phylogenetic tree construction for collagen IV subunits.
- Luciferase reporter assays to assess miR-29-mediated repression of collagen IV 3'UTRs.
Main Results:
- miR-29b expression was significantly downregulated in hypoxia-stressed kidney tumor cells.
- Specific miR-29 binding sites were identified in the 3'UTRs of collagen IV genes (COL4A3-COL4A6).
- miR-29a and miR-29b significantly repressed seven of these eight binding sites, with 27-57% inhibitory efficiency.
Conclusions:
- Hypoxia-induced downregulation of miR-29 impacts the expression of ECM components like collagen IV.
- This regulatory axis provides a potential therapeutic target for tumors and fibrotic diseases.
- Findings support the role of miR-29 in ECM remodeling under hypoxic conditions.
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