circRNA basic information
circBase ID: hsa_circ_0000467
Name: hsa_circ_SKA3
Synonym: -
Host Gene: SKA3
Genomic location(hg19): chr13:21742126-21742538:-
Genomic location(hg38): chr13:21167987-21168399:-
Subcellular localization: not tested
 
 
 
 
 
 
 
Disease basic information
MONDO ID:
0001056
MONDO name: gastric cancer
Disease details: gastric cancer
Disease DO ID:
10534
Disease MeSH ID:
-
Disease NCIt ID:
C9331
Disease ICD11 ID:
1397617262
Disease OMIM ID:
613659
Species: Human
Species details: Homo sapiens
Tissue specimen:

cancerous tissues; corresponding adjacent tissues; normal stomach mucosa tissues

Cell lines:

GES-1; BGC-823; SGC-7901

In vivo animal model:

-

circRNA-disease information
Expression pattern:
UP
Associated gene: cyclin D1, c-MYC
Associated microRNA: miR-326-3p
Biological function: promotes proliferation and invasion; promotes cell cycle progression (increases G2/M entry) in gastric cancer cells
Molecular mechanism: acts as a miRNA sponge binding miR-326-3p; miR-326-3p inhibition rescues the phenotypes caused by hsa_circ_0000467 knockdown; regulates cyclin D1 expression
Biological pathway or process:

proliferation (promotes); invasion (promotes); cell cycle (promotes); ceRNA regulation (promotes)

Detected method:
Q
M
Validation methods:

Microarray; RT-qPCR; Clinical Sample Validation; Transfection; CCK8; Transwell Assay; Cell Cycle Assay; Luciferase Reporter Assay; Western Blot; Bioinformatics Analysis

Clinical significance:

higher expression correlates with gastric cancer histological grade; potential diagnostic marker and therapeutic target

Description:

hsa_circ_0000467 is up-regulated in gastric cancer tissues and cell lines and promotes GC cell proliferation, invasion, and cell-cycle progression. Mechanistically, it sponges miR-326-3p and affects cyclin D1 expression, and miR-326-3p inhibition rescues the effects of hsa_circ_0000467 knockdown.

Confidence score:

0.6815

Other information
Title:

Circular RNA hsa_circ_0000467 Promotes the Development of Gastric Cancer by Competitively Binding to MicroRNA miR-326-3p.

Journal: BioMed research international
Published: 2020
PubMed ID: 32090087
Study type:

combined biological and clinical study

Data availability: The data used to support the findings of this study are included within the article.
Code availability: -