BET Protein Inhibitor JQ1 Modulates Mitochondrial Dysfunction and Oxidative Stress Induced by Chronic Kidney Disease

Sandra Rayego-Mateos1,2, Pamela Basantes1,2, José Luis Morgado-Pascual1,3

  • 1Cellular Biology in Renal Diseases Laboratory, IIS-Fundación Jiménez Díaz-Universidad Autónoma Madrid, 28040 Madrid, Spain.

Insights

Inhibitors of extra-terminal domain proteins (iBETs) like JQ1 protect against kidney disease by improving mitochondrial function and reducing oxidative stress. These epigenetic drugs enhance mitochondrial dynamics and restore antioxidant defenses in kidney cells.

Area of Science:

  • Nephrology
  • Mitochondrial Biology
  • Epigenetics

Background:

  • Mitochondrial dysfunction is a key factor in kidney disease progression.
  • Epigenetic drugs, specifically inhibitors of extra-terminal domain proteins (iBETs), show promise in managing experimental kidney disease by reducing inflammation and proliferation.

Purpose of the Study:

  • To investigate the effects of iBETs on mitochondrial damage in kidney disease models.
  • To explore how iBETs impact mitochondrial dynamics, oxidative phosphorylation, and oxidative stress.

Main Methods:

  • In vitro studies using human proximal tubular cells stimulated with TGF-β1.
  • In vivo studies utilizing a murine unilateral ureteral obstruction (UUO) model.
  • Assessment of oxidative phosphorylation (OXPHOS) components, mitochondrial dynamics proteins (DRP-1, OPA-1), and antioxidant gene expression.
  • Measurement of reactive oxygen species (ROS) production.

Main Results:

  • JQ1 prevented TGF-β1-induced downregulation of OXPHOS components (cytochrome C, CV-ATP5a) in vitro.
  • JQ1 inhibited TGF-β1-induced increase in the mitochondrial fission factor DRP-1 in vitro.
  • In the UUO model, JQ1 administration prevented reductions in cytochrome C and CV-ATP5a, and normalized DRP1 and OPA-1 levels, restoring mitochondrial dynamics.
  • JQ1 restored antioxidant gene expression (Catalase, Heme oxygenase 1) and decreased ROS production in both models.

Conclusions:

  • iBETs, exemplified by JQ1, effectively mitigate mitochondrial damage in kidney disease.
  • These drugs improve mitochondrial dynamics, enhance functionality, and reduce oxidative stress, offering a potential therapeutic strategy for kidney disease.

Related Concept Videos

Chronic Kidney Disease I: Introduction01:25

Chronic Kidney Disease I: Introduction

Chronic Kidney Disease (CKD) arises when the kidneys progressively lose their ability to function, ultimately leading to end-stage renal disease. At this advanced stage, the kidneys can no longer filter waste or maintain essential body functions, requiring renal replacement therapy (RRT) through dialysis or a kidney transplant for survival.Early-stage chronic kidney disease and detection challengesIn CKD's early stages, symptoms often remain absent because healthy nephrons compensate for...
48
Chronic Kidney Disease II: Clinical Manifestations01:24

Chronic Kidney Disease II: Clinical Manifestations

Chronic Kidney Disease (CKD) progressively impairs multiple body systems due to the accumulation of uremic toxins, which disrupt cellular functions across various organs.Neurologic symptomsNeurologic symptoms often arise early in CKD, as uremic toxin buildup drives changes in cognitive and motor functions. Patients frequently experience fatigue, headache, confusion, difficulty concentrating, and, in severe cases, seizures. Peripheral neuropathy commonly manifests as burning sensations in the...
46
Chronic Kidney Disease IV: Nursing Management01:18

Chronic Kidney Disease IV: Nursing Management

Nursing management is essential for preventing complications, maintaining stability, and improving patients' quality of life in chronic kidney disease (CKD). By using a structured approach, nurses help slow CKD progression and support effective patient care​.1. Comprehensive patient assessmentEffective management begins with nurses reviewing the patient’s medical history, and identifying key risk factors like diabetes, hypertension, and nephrotoxic drug use. Nurses assess signs of...
29
Acute Kidney Injury II: Pathophysiology01:29

Acute Kidney Injury II: Pathophysiology

Acute kidney injury (AKI) causes are categorized into three primary categories based on the location of the injury: prerenal, intrarenal (or intrinsic), and postrenal causes. This classification guides clinical management and illustrates how different pathways can impair kidney function.Etiology and Pathophysiology of Acute Kidney Injury1. Prerenal causesEtiology: Prerenal Acute Kidney Injury, the most common type, occurs when reduced blood flow to the kidneys decreases filtration capacity...
37
Chronic Kidney Disease III: Interprofessional Care01:28

Chronic Kidney Disease III: Interprofessional Care

Chronic kidney disease (CKD) requires collaborative and comprehensive management. CKD progresses through stages and can lead to end-stage kidney disease (ESKD) if untreated. Interprofessional collaboration and patient education are crucial, enabling patients to manage their health and improve their quality of life.Diagnostic approach for chronic kidney diseaseThe diagnosis of CKD primarily focuses on the glomerular filtration rate (GFR), which assesses kidney function by measuring how well...
51
Acute Kidney Injury IV: Diagnostic Studies and Prevention01:30

Acute Kidney Injury IV: Diagnostic Studies and Prevention

Accurate diagnosis and effective prevention are critical in managing Acute Kidney Injury (AKI), which is linked to high mortality rates ranging from 10% to 80%. Timely recognition of at-risk patients and careful monitoring can significantly reduce the likelihood of kidney damage.Diagnostic Assessments:The diagnostic process starts with a comprehensive medical history to identify prerenal, intrarenal, and postrenal causes.Prerenal causes, such as dehydration, hypotension, or blood loss, should...
41