Javascript must be enabled to continue!
MiR‐31 and miR‐128 regulates poliovirus receptor‐related 4 mediated measles virus infectivity in tumors
View through CrossRef
Oncolytic measles virus strains are currently being evaluated in several clinical trials, as a promising novel oncolytic platform. Poliovirus receptor‐related 4 (PVRL4) was recently identified as a potent measles virus (MV) receptor; however, its regulation is not yet understood. Increased levels of PVRL4 protein were observed in cell membrane, cytoplasm and nuclei of glioblastoma, breast and ovarian tumor clinical samples with no significant change in PVRL4 mRNA levels in glioblastoma and breast cancer compared with their corresponding control samples, suggesting that PVRL4 is likely post‐transcriptionally regulated. Therefore, we sought to investigate the potential role of miRNAs in PVRL4 regulation and thus MV infectivity. We demonstrated that miR‐31 and miR‐128 can bind to the 3′UTR of PVRL4 and decrease PVRL4 levels while anti‐miR‐31/128 increase PVRL4 levels suggesting that PVRL4 is miRNA targeted. Furthermore, miR‐31/128 expression levels were down‐regulated in glioblastoma and breast tumor samples and showed significant negative correlations with PVRL4 levels. Infection with an MV strain that exclusively utilizes PVRL4 as its receptor showed that over‐expression of miR‐31/128 decreases MV infectivity while inhibition of the respective miRNAs via anti‐miRs increase MV infectivity and reduce tumor size in mouse xenograft models of glioblastoma, breast and ovarian cancer. Additionally, miR‐128 levels showed significant correlations with MV infection and in vivo anti‐tumor effect, while MV infection increased miR‐31 expression and thereby contributed to the observed decrease in PVRL4 levels. This study suggests that PVRL4 is post‐transcriptionally regulated by miR‐128 and miR‐31 and harbors possible miRNA targets that could modulate MV infectivity and in turn enhance MV based oncolytic therapeutic strategies.
Title: MiR‐31 and miR‐128 regulates poliovirus receptor‐related 4 mediated measles virus infectivity in tumors
Description:
Oncolytic measles virus strains are currently being evaluated in several clinical trials, as a promising novel oncolytic platform.
Poliovirus receptor‐related 4 (PVRL4) was recently identified as a potent measles virus (MV) receptor; however, its regulation is not yet understood.
Increased levels of PVRL4 protein were observed in cell membrane, cytoplasm and nuclei of glioblastoma, breast and ovarian tumor clinical samples with no significant change in PVRL4 mRNA levels in glioblastoma and breast cancer compared with their corresponding control samples, suggesting that PVRL4 is likely post‐transcriptionally regulated.
Therefore, we sought to investigate the potential role of miRNAs in PVRL4 regulation and thus MV infectivity.
We demonstrated that miR‐31 and miR‐128 can bind to the 3′UTR of PVRL4 and decrease PVRL4 levels while anti‐miR‐31/128 increase PVRL4 levels suggesting that PVRL4 is miRNA targeted.
Furthermore, miR‐31/128 expression levels were down‐regulated in glioblastoma and breast tumor samples and showed significant negative correlations with PVRL4 levels.
Infection with an MV strain that exclusively utilizes PVRL4 as its receptor showed that over‐expression of miR‐31/128 decreases MV infectivity while inhibition of the respective miRNAs via anti‐miRs increase MV infectivity and reduce tumor size in mouse xenograft models of glioblastoma, breast and ovarian cancer.
Additionally, miR‐128 levels showed significant correlations with MV infection and in vivo anti‐tumor effect, while MV infection increased miR‐31 expression and thereby contributed to the observed decrease in PVRL4 levels.
This study suggests that PVRL4 is post‐transcriptionally regulated by miR‐128 and miR‐31 and harbors possible miRNA targets that could modulate MV infectivity and in turn enhance MV based oncolytic therapeutic strategies.
Related Results
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
GW24-e2497 Circulating MicroRNAs as Potential Biomarkers of Coagulation Dysfunction in Patients with Vulnerable Coronary Artery Disease
GW24-e2497 Circulating MicroRNAs as Potential Biomarkers of Coagulation Dysfunction in Patients with Vulnerable Coronary Artery Disease
Objectives
The activation of coagulation and fibrinolysis plays a critical role in the incidence of coronary events. MicroRNAs (miRNAs) are small non-coding ribon...
P-2176. Validation of Air Sampling and Real-Time Quantitative Polymerase Chain Reaction for Measles Virus Surveillance: A Single-Center, Preliminary Assessment
P-2176. Validation of Air Sampling and Real-Time Quantitative Polymerase Chain Reaction for Measles Virus Surveillance: A Single-Center, Preliminary Assessment
Abstract
Background
During the early months of Chicago’s 2024 measles outbreak, many patients were admitted to local hospitals d...
Interaction of Poliovirus with Its Receptor Affords a High Level of Infectivity to the Virion in Poliovirus Infections Mediated by the Fc Receptor
Interaction of Poliovirus with Its Receptor Affords a High Level of Infectivity to the Virion in Poliovirus Infections Mediated by the Fc Receptor
ABSTRACTPoliovirus infects susceptible cells through the poliovirus receptor (PVR), which functions to bind virus and to change its conformation. These two activities are thought t...
Deranged MicroRNA 16-2 Expression Contributes to Erythropoiesis in Polycythemia Vera.
Deranged MicroRNA 16-2 Expression Contributes to Erythropoiesis in Polycythemia Vera.
Abstract
Abstract 3896
Poster Board III-832
We previously reported the finding of significantly raised levels of mature microRNA 16 (mi...
Expression of microRNAs, miR‐21, miR‐31, miR‐122, miR‐145, miR‐146a, miR‐200c, miR‐221, miR‐222, and miR‐223 in patients with hepatocellular carcinoma or intrahepatic cholangiocarcinoma and its prognostic significance
Expression of microRNAs, miR‐21, miR‐31, miR‐122, miR‐145, miR‐146a, miR‐200c, miR‐221, miR‐222, and miR‐223 in patients with hepatocellular carcinoma or intrahepatic cholangiocarcinoma and its prognostic significance
Abstract
MicroRNAs are a class of non‐coding molecules found to regulate a variety of cellular functions in health and disease. Dysregulation of microRNAs is invo...
The role of
miR
‐128 and
MDFI
in cardiac hypertrophy and heart failure: Mechanistic
The role of
miR
‐128 and
MDFI
in cardiac hypertrophy and heart failure: Mechanistic
Abstract
Heart failure (HF) prognosis depends on various regulatory factors; microRNA‐128 (miR‐128) is identified as a regulator of cardiac fibrosis, contributing...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...

