Related Experiment Video
Updated: Jan 22, 2026

Mitochondrial Ca2+ Retention Capacity Assay and Ca2+-triggered Mitochondrial Swelling Assay
Published on: May 1, 2018
Clustered Mitochondrial Homolog Inhibition by Lipocalin-2 Orchestrates Mitochondrial Disruption and Contributes to
Eloïse Marques1, Maraiza Alves Teixeira1, Corentin Ramauge Parra1
1INSERM UMR-U1151, CNRS UMR-8253, Institut Necker Enfants Malades, Université Paris Cité, Paris, France.
Key Points:
Lipocalin-2 inhibited clustered mitochondrial homolog (CLUH) activity and caused mitochondrial dysfunction. Loss of CLUH in kidneys triggered metabolic reprogramming and impaired mitochondrial structure. CLUH expression decreased with kidney injury and correlated with kidney function decline in patients.
Background:
Lipocalin-2 (LCN2) is a secreted protein involved in transporting hydrophobic molecules, regulating antibacterial responses and iron homeostasis. LCN2 expression increases after kidney damage and participates in CKD onset. We previously identified LCN2 as a regulator of mitochondrial dysfunction in renal tubular cells. This study aims to better understand LCN2's role in mitochondrial dysfunction and kidney pathology.
Methods:
LCN2 interactome was studied using mass spectrometry. The impact of LCN2 on clustered mitochondrial homolog (CLUH) activity was explored by immunofluorescence, Western blot, quantitative PCR, and RNA-immunoprecipitation. The role of CLUH on mitochondrial function in kidney was evaluated by RNAseq, metabolomics, electron microscopy, and immunochemistry using transgenic mice.
Results:
We characterized LCN2 interactome and identified CLUH in a multiprotein complex with LCN2. CLUH regulates mitochondrial homeostasis by binding mRNAs of nuclear-encoded mitochondrial proteins and promoting their translation. We demonstrated that LCN2 inhibited CLUH activity, leading to perinuclear mitochondrial clustering. We showed that CLUH was expressed in renal tubular cells and that its expression and activity decreased, while LCN2 expression increased after kidney injury leading to CKD. In human CKD patients, CLUH expression was inversely correlated with kidney lesions and kidney failure. CLUH genetic deletion in kidney nephron induced mitochondrial dysfunction and a subsequent interstitial fibrosis and kidney loss of function.
Conclusions:
This study shows that LCN2 forms a complex with CLUH and inhibits its activity, leading to perinuclear mitochondrial clustering. CLUH loss of function in renal tubular cells is associated with mitochondrial dysfunction and fibrosis, and in humans, CLUH expression inversely correlates with kidney lesions and loss of function.
More Related Videos
08:505/6th Nephrectomy in Combination with High Salt Diet and Nitric Oxide Synthase Inhibition to Induce Chronic Kidney Disease in the Lewis Rat
Published on: July 3, 2013
10:51A Possible Zebrafish Model of Polycystic Kidney Disease: Knockdown of wnt5a Causes Cysts in Zebrafish Kidneys
Published on: December 2, 2014
Related Concept Videos
Chronic Kidney Disease I: Introduction
Chronic Kidney Disease II: Clinical Manifestations
Feedback Inhibition
Chronic Kidney Disease III: Interprofessional Care
Chronic Kidney Disease IV: Nursing Management
Kidney Structure