Javascript must be enabled to continue!
A traditional gynecological medicine inhibits ovarian cancer progression and eliminates cancer stem cells via the LRPPRC–OXPHOS axis
View through CrossRef
Abstract
Background
Ovarian cancer (OC) is the most lethal malignant gynecological tumor type for which limited therapeutic targets and drugs are available. Enhanced mitochondrial oxidative phosphorylation (OXPHOS), which enables cell growth, migration, and cancer stem cell maintenance, is a critical driver of disease progression and a potential intervention target of OC. However, the current OXPHOS intervention strategy mainly suppresses the activity of the electron transport chain directly and cannot effectively distinguish normal tissues from cancer tissues, resulting in serious side effects and limited efficacy.
Methods
We screened natural product libraries to investigate potential anti-OC drugs that target OXPHOS. Additionally, LC-MS, qRT-PCR, western-blot, clonogenic assay, Immunohistochemistry, wound scratch assay, and xenograft model was applied to evaluate the anti-tumor mechanism of small molecules obtained by screening in OC.
Results
Gossypol acetic acid (GAA), a widely used gynecological medicine, was screened out from the drug library with the function of suppressing OXPHOS and OC progression by targeting the leucine-rich pentatricopeptide repeat containing (LRPPRC) protein. Mechanically, LRPPRC promotes the synthesis of OXPHOS subunits by binding to RNAs encoded by mitochondrial DNA. GAA binds to LRPPRC directly and induces LRPPRC rapid degradation in a ubiquitin-independent manner. LRPPRC was overexpressed in OC, which is highly correlated with the poor outcomes of OC and could promote the malignant phenotype of OC cells in vitro and in vivo. GAA management inhibits cell growth, clonal formation, and cancer stem cell maintenance in vitro, and suppresses subcutaneous graft tumor growth in vivo.
Conclusions
Our study identified a therapeutic target and provided a corresponding inhibitor for OXPHOS-based OC therapy. GAA inhibits OC progression by suppressing OXPHOS complex synthesis via targeting LRPPRC protein, supporting its potential utility as a natural therapeutic agent for ovarian cancer.
Springer Science and Business Media LLC
Title: A traditional gynecological medicine inhibits ovarian cancer progression and eliminates cancer stem cells via the LRPPRC–OXPHOS axis
Description:
Abstract
Background
Ovarian cancer (OC) is the most lethal malignant gynecological tumor type for which limited therapeutic targets and drugs are available.
Enhanced mitochondrial oxidative phosphorylation (OXPHOS), which enables cell growth, migration, and cancer stem cell maintenance, is a critical driver of disease progression and a potential intervention target of OC.
However, the current OXPHOS intervention strategy mainly suppresses the activity of the electron transport chain directly and cannot effectively distinguish normal tissues from cancer tissues, resulting in serious side effects and limited efficacy.
Methods
We screened natural product libraries to investigate potential anti-OC drugs that target OXPHOS.
Additionally, LC-MS, qRT-PCR, western-blot, clonogenic assay, Immunohistochemistry, wound scratch assay, and xenograft model was applied to evaluate the anti-tumor mechanism of small molecules obtained by screening in OC.
Results
Gossypol acetic acid (GAA), a widely used gynecological medicine, was screened out from the drug library with the function of suppressing OXPHOS and OC progression by targeting the leucine-rich pentatricopeptide repeat containing (LRPPRC) protein.
Mechanically, LRPPRC promotes the synthesis of OXPHOS subunits by binding to RNAs encoded by mitochondrial DNA.
GAA binds to LRPPRC directly and induces LRPPRC rapid degradation in a ubiquitin-independent manner.
LRPPRC was overexpressed in OC, which is highly correlated with the poor outcomes of OC and could promote the malignant phenotype of OC cells in vitro and in vivo.
GAA management inhibits cell growth, clonal formation, and cancer stem cell maintenance in vitro, and suppresses subcutaneous graft tumor growth in vivo.
Conclusions
Our study identified a therapeutic target and provided a corresponding inhibitor for OXPHOS-based OC therapy.
GAA inhibits OC progression by suppressing OXPHOS complex synthesis via targeting LRPPRC protein, supporting its potential utility as a natural therapeutic agent for ovarian cancer.
Related Results
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...
Safety and Efficacy of Atezolizumab in Ovarian Cancer
Safety and Efficacy of Atezolizumab in Ovarian Cancer
Abstract
Introduction
Although the efficacy of PD-L1 blockade has been evaluated in analyses that combine pharmacologically distinct antibodies, the specific efficacy and safety of...
Leigh Syndrome-inducing Mutations Affect LRPPRC / SLIRP Complex Formation
Leigh Syndrome-inducing Mutations Affect LRPPRC / SLIRP Complex Formation
ABSTRACT
Mitochondria are essential organelles carrying their own genetic information which require specific gene expression processes. The leuci...
Abstract IA31: Molecular epidemiology of ovarian cancer
Abstract IA31: Molecular epidemiology of ovarian cancer
Abstract
Epithelial ovarian cancer (EOC) accounts for 5% of all cancer deaths and is the fifth leading cause of cancer death in women in the United States. While the...
Abstract 4998: Lipolysis-stimulated lipoprotein receptor (LSR) can be a novel therapeutic target of ovarian cancer
Abstract 4998: Lipolysis-stimulated lipoprotein receptor (LSR) can be a novel therapeutic target of ovarian cancer
Abstract
Objective:Ovarian cancer is the most lethal gynecological malignancy. Five-year survival of advanced ovarian cancer patients remains less than 50% and the m...
P-677 fasting-mimicking diet delays ovarian aging by modulating immune cells and enhancing glycocholic acid levels
P-677 fasting-mimicking diet delays ovarian aging by modulating immune cells and enhancing glycocholic acid levels
Abstract
Study question
Does fasting-mimicking diet (FMD) alleviate ovarian aging in mice, and what roles do gut and serum metab...
Abstract 2208: Clinicopathological and genetic study of ovarian cancer in Algerian women: First report
Abstract 2208: Clinicopathological and genetic study of ovarian cancer in Algerian women: First report
Abstract
Background: Ovarian cancer represents the fourth most common cause of mortality among Algerian women. Of all gynecological malignancies, ovarian cancer caus...
P–688 Assessment of ovarian vascularity by three-dimensional vaginal power Doppler on day two of menstrual cycle to predict the number of mature eggs collected
P–688 Assessment of ovarian vascularity by three-dimensional vaginal power Doppler on day two of menstrual cycle to predict the number of mature eggs collected
Abstract
Study question
Could ovarian vascularity indices, measured by 3-dimensional (3D) vaginal power Doppler, predict the num...

