circRNA basic information
circBase ID: -
Name: hsa_circ_LARP1B
Synonym: circ-LARP1B / circRNA La ribonucleoprotein 1B
Host Gene: LARP1B
Genomic location(hg19): -
Genomic location(hg38): -
Subcellular localization: cytoplasm
 
 
 
 
 
 
 
Disease basic information
MONDO ID:
0005016
MONDO name: diabetic kidney disease
Disease details: Diabetic nephropathy / DN
Disease DO ID:
-
Disease MeSH ID:
D003928
Disease NCIt ID:
C84417
Disease ICD11 ID:
615062102
Disease OMIM ID:
-
Species: Human
Species details: Homo sapiens
Tissue specimen:

blood

Cell lines:

Human renal mesangial cells

In vivo animal model:

-

circRNA-disease information
Expression pattern:
UP
Associated gene: TLR4, IL-6, IL-10, TNF-alpha, IL-1beta, IL-18, caspase 1, NLRP3
Associated microRNA: miR-578
Biological function: CircLARP1B inhibits proliferation and cell cycle progression, and promotes pyroptosis and inflammation in high glucose-induced renal mesangial cells.
Molecular mechanism: CircLARP1B acts as a sponge of miR-578 to regulate TLR4, thereby modulating proliferation, cell cycle, pyroptosis, and inflammation in HG-induced renal mesangial cells.
Biological pathway or process:

proliferation (inhibits); cell cycle (inhibits); pyroptosis (promotes); inflammation (promotes); ceRNA regulation (other)

Detected method:
Q
Validation methods:

RNase R Treatment; RT-qPCR; Nuclear-Cytoplasmic Fractionation; Clinical Sample Validation; Transfection; MTT; EdU Staining; Cell Cycle Assay; Flow Cytometry(Non-apoptosis/cycle); ELISA; Western Blot; Luciferase Reporter Assay; Bioinformatics Analysis

Clinical significance:

CircLARP1B may be a target for the treatment of DN.

Description:

CircLARP1B is up-regulated in the blood of DN patients and in high glucose-treated human renal mesangial cells. It promotes pyroptosis and inflammatory factor release while inhibiting proliferation and cell cycle progression through the miR-578/TLR4 axis, suggesting therapeutic relevance in DN.

Confidence score:

0.742

Other information
Title:

CircLARP1B promotes pyroptosis of high glucose-induced renal mesangial cells by regulating the miR-578/TLR4 axis.

Journal: International urology and nephrology
Published: 2024
PubMed ID: 37341906
Study type:

combined biological and clinical study

Data availability: available from the corresponding author on reasonable request
Code availability: -