G‐quadruplex‐enhanced circular single‐stranded DNA (G4‐CSSD) adsorption of miRNA to inhibit colon cancer progression

Author:

Wu Haidong1,Zhong Weilong2,Zhang Ronghua3,Ding Yuping4,Qu Chunhua5,Lai Keguan1,Pang Zheng1,Yin Shan6,Zhang Guangling3,Chen Shuang1ORCID

Affiliation:

1. Tianjin Key Laboratory of Early Druggability Evaluation of Innovative Drugs and Tianjin Key Laboratory of Molecular Drug Research Tianjin International Joint Academy of Biomedicine Tianjin China

2. Tianjin Key Laboratory of Digestive Diseases, Department of Gastroenterology and Hepatology Tianjin Institute of Digestive Diseases, Tianjin Medical University General Hospital Tianjin China

3. Hebei Provincial Key Laboratory of Medical‐Industrial Integration Precision Medicine, School of Clinical Medicine North China University of Science and Technology Tangshan China

4. Gastroenterology Department of Medical Center of CAPF Tianjin China

5. Department of outpatient and emergency Shanghai Pudong Hospital Shanghai China

6. OBiO Technology (Shanghai) Co., Ltd. Shanghai China

Abstract

AbstractBackgroundChromosomal heterogeneity leads to the abnormal expression and mutation of tumor‐specific genes. Drugs targeting oncogenes have been extensively developed. However, given the random mutation of tumor suppressor genes, the development of its targeted drugs is difficult.MethodsOur early research revealed that artificial circular single‐stranded DNA (CSSD) can restore multiple tumor suppressor genes to inhibit tumor malignant progression by adsorbing miRNA. Here, we improved CSSD to a fully closed single‐stranded DNA with G quadruplex DNA secondary structure (G4‐CSSD), which made G4‐CSSD with higher acquisition rate and decreased degradation. The Cancer Genome Atlas (TCGA) and Human Protein Atlas database were used to predict tumour suppressor genes in colon cancer. Cellular and animal experiments were performed to validate the role of G4‐CSSD in cancer cell progression.ResultsIn colon cancer, we observed the simultaneous low expressions of chloride channel accessory 1 (CLCA1), UDP‐GlcNAc:betaGal beta‐1,3‐N‐acetylglucosaminyltransferase 6 (B3GNT6) and UDP glucuronosyltransferase family 2 member A3 (UGT2A3), which indicated an favourable prognosis. After repressing miR‐590‐3p with G4‐CSSD590, the upregulation of CLCA1, B3GNT6 and UGT2A3 inhibited the proliferation and metastasis of colon cancer cells.ConclusionsThis study may provide basis for new treatment methods for colon cancer by restoration of tumor suppressor genes.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cancer Research,Radiology, Nuclear Medicine and imaging,Oncology

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