circRNA basic information
circBase ID: hsa_circ_0011536
Name: hsa_circ_ZMYM4
Synonym: -
Host Gene: ZMYM4
Genomic location(hg19): chr1:35824525-35827390:+
Genomic location(hg38): chr1:35358924-35361789:+
Subcellular localization: not tested
 
 
 
 
 
 
 
Disease basic information
MONDO ID:
0005233
MONDO name: non-small cell lung carcinoma
Disease details: non-small cell lung cancer
Disease DO ID:
3908
Disease MeSH ID:
D002289
Disease NCIt ID:
C2926
Disease ICD11 ID:
-
Disease OMIM ID:
-
Species: Human
Species details: Homo sapiens
Tissue specimen:

NSCLC tissues; non-cancer normal tissues

Cell lines:

A549; SK-MES-1; NCI-H1299; AT2

In vivo animal model:

-

circRNA-disease information
Expression pattern:
DN
Associated gene: TFRC mRNA, TFRC, pre-ZMYM4
Associated microRNA: hsa-miR-576-5p
Biological function: hsa_circ_0011536 inhibits proliferation and induces ferroptosis in NSCLC cells.
Molecular mechanism: m6A modification enhances the back-splicing of pre-ZMYM4 to increase hsa_circ_0011536 expression; hsa_circ_0011536 acts as a sponge for hsa-miR-576-5p to elevate TFRC expression and induce ferroptosis.
Biological pathway or process:

ferroptosis (promotes); proliferation (inhibits); ceRNA regulation (promotes); m6A modification (other)

Detected method:
Q
M
Validation methods:

RT-qPCR; Microarray; MeRIP / MeRIP-seq; RNA Pull-Down; Luciferase Reporter Assay; Transfection; CCK8; ELISA; Western Blot; Bioinformatics Analysis

Clinical significance:

These results might provide novel therapeutic targets for NSCLC treatment.

Description:

hsa_circ_0011536 is downregulated in NSCLC tissues and cell lines. m6A modification promotes its production from pre-ZMYM4, and hsa_circ_0011536 functions as a hsa-miR-576-5p sponge to increase TFRC expression. Functionally, hsa_circ_0011536 suppresses NSCLC cell proliferation and promotes ferroptosis, suggesting potential therapeutic relevance.

Confidence score:

0.6815

Other information
Title:

N6-methyladenosine-induced hsa_circ_0011536 acts as a microRNA-576-5p sponge to promote ferroptosis of non-small cell lung cancer cells via transferrin receptor.

Journal: Neoplasma
Published: 2025
PubMed ID: 40958523
Study type:

biological research / bioinformatics study

Data availability: GSE158695
Code availability: -