circRNA basic information
circBase ID: -
Name: hsa_circ_BANP
Synonym: circ-BANP
Host Gene: BANP
Genomic location(hg19): -
Genomic location(hg38): -
Subcellular localization: not tested
 
 
 
 
 
 
 
Disease basic information
MONDO ID:
0008903
MONDO name: lung cancer
Disease details: lung cancer
Disease DO ID:
1324
Disease MeSH ID:
-
Disease NCIt ID:
C7377
Disease ICD11 ID:
-
Disease OMIM ID:
211980
Species: Human
Species details: Homo sapiens
Tissue specimen:

lung cancer tissues; adjacent normal tissues

Cell lines:

H1299; A549; H23; H522; BEAS-2B

In vivo animal model:

cell line-derived xenograft

circRNA-disease information
Expression pattern:
UP
Associated gene: LARP1
Associated microRNA: miR-503
Biological function: promotes lung cancer cell proliferation, migration and invasion; inhibits apoptosis; promotes tumor growth in vivo
Molecular mechanism: circ-BANP acts as a miR-503 sponge to relieve miR-503-mediated inhibition of LARP1, thereby increasing LARP1 expression in lung cancer
Biological pathway or process:

proliferation (promotes); migration (promotes); invasion (promotes); metastasis (promotes); apoptosis (inhibits); ceRNA regulation (promotes)

Detected method:
Q
Validation methods:

RT-qPCR; Clinical Sample Validation; Transfection; CCK8; Annexin V/PI Flow Cytometry; Transwell Assay; In Vivo Animal Model; Luciferase Reporter Assay; Survival Analysis; Bioinformatics Analysis

Clinical significance:

higher circ-BANP expression was associated with lower survival rate and may be a potential prognostic biomarker in lung cancer

Description:

circ-BANP is up-regulated in lung cancer tissues and cell lines, and high expression predicts poor survival. Functionally, circ-BANP promotes proliferation, migration, invasion and in vivo tumor growth while inhibiting apoptosis. Mechanistically, it acts through a circ-BANP/miR-503/LARP1 ceRNA axis to increase LARP1 expression and drive lung cancer progression.

Confidence score:

0.7113

Other information
Title:

CircRNA circ-BANP-mediated miR-503/LARP1 signaling contributes to lung cancer progression.

Journal: Biochemical and biophysical research communications
Published: 2018
PubMed ID: 29969631
Study type:

combined biological and clinical study

Data availability: -
Code availability: -