circRNA basic information
circBase ID: hsa_circ_0000142
Name: hsa_circ_CCT3
Synonym: circ_0000142
Host Gene: CCT3
Genomic location(hg19): -
Genomic location(hg38): -
Subcellular localization: not tested
 
 
 
 
 
 
 
Disease basic information
MONDO ID:
0009693
MONDO name: plasma cell myeloma
Disease details: multiple myeloma
Disease DO ID:
9538
Disease MeSH ID:
D009101
Disease NCIt ID:
C3242
Disease ICD11 ID:
1582389689; 526287100
Disease OMIM ID:
254500
Species: Human
Species details: Homo sapiens
Tissue specimen:

MM tissues; blood samples; bone marrow aspirates; peripheral blood

Cell lines:

KM3; H929; MM1S; U266; nPCs

In vivo animal model:

-

circRNA-disease information
Expression pattern:
UP
Associated gene: AKT3, Ago2
Associated microRNA: miR-610
Biological function: Promotes multiple myeloma cell proliferation, migration and invasion, and suppresses apoptosis.
Molecular mechanism: circ_0000142 functions as a competitive endogenous RNA by sponging miR-610, thereby upregulating AKT3 expression.
Biological pathway or process:

proliferation (promotes); migration (promotes); invasion (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; Western Blot; RIP (RNA Immunoprecipitation); Luciferase Reporter Assay; Bioinformatics Analysis

Clinical significance:

High circ_0000142 expression was associated with higher ISS stage and Durie-Salmon stage in multiple myeloma patients.

Description:

circ_0000142 is up-regulated in multiple myeloma tissues and cell lines and is associated with more advanced ISS and Durie-Salmon stage. Functionally, it promotes MM cell proliferation, migration and invasion while inhibiting apoptosis. Mechanistically, circ_0000142 acts as a ceRNA that sponges miR-610 and increases AKT3 expression, thereby promoting MM progression.

Confidence score:

0.7032

Other information
Title:

Upregulation of circ_0000142 promotes multiple myeloma progression by adsorbing miR-610 and upregulating AKT3 expression.

Journal: Journal of biochemistry
Published: 2021
PubMed ID: 32970816
Study type:

combined biological and clinical study

Data availability: The data used to support the findings of this study are available from the corresponding author upon request.
Code availability: -