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Updated: Jun 10, 2025

Author Spotlight: Mitochondrial Remodeling in Skeletal Muscle
Published on: December 1, 2023
CEAM is a mitochondrial-localized, amyloid-like motif-containing microprotein expressed in human cardiomyocytes
Ruobing Li1, Ti Qin2, Yabo Guo2
1Department of Cardiology of the First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310006, China.
Abstract:
Microproteins synthesized through non-canonical translation pathways are frequently found within mitochondria. However, the functional significance of these mitochondria-localized microproteins in energy-intensive organs such as the heart remains largely unexplored. In this study, we demonstrate that the long non-coding RNA CD63-AS1 encodes a mitochondrial microprotein. Notably, in ribosome profiling data of human hearts, there is a positive correlation between the expression of CD63-AS1 and genes associated with cardiomyopathy. We have termed this microprotein CEAM (CD63-AS1 encoded amyloid-like motif containing microprotein), reflecting its sequence characteristics. Our biochemical assays show that CEAM forms protease-resistant aggregates within mitochondria, whereas deletion of the amyloid-like motif transforms CEAM into a soluble cytosolic protein. Overexpression of CEAM triggers mitochondrial stress responses and adversely affect mitochondrial bioenergetics in cultured cardiomyocytes. In turn, the expression of CEAM is reciprocally inhibited by the activation of mitochondrial stresses induced by oligomycin. When expressed in mouse hearts via adeno-associated virus, CEAM impairs cardiac function. However, under conditions of pressure overload-induced cardiac hypertrophy, CEAM expression appears to offer a protective benefit and mitigates the expression of genes associated with cardiac remodeling, presumably through a mechanism that suppresses stress-induced translation reprogramming. Collectively, our study uncovers a hitherto unexplored amyloid-like microprotein expressed in the human cardiomyocytes, offering novel insights into myocardial hypertrophy pathophysiology.
Insights
This study identifies a novel mitochondrial microprotein, CEAM, encoded by CD63-AS1. CEAM aggregates in mitochondria, impacting cardiac function and hypertrophy, offering new insights into heart disease.
Area of Science:
- Mitochondrial biology
- Cardiovascular research
- Non-canonical translation
Background:
- Mitochondria host microproteins from non-canonical translation, but their cardiac roles are unknown.
- Long non-coding RNAs (lncRNAs) are increasingly recognized for encoding functional peptides.
Purpose of the Study:
- To investigate the function of mitochondria-localized microproteins in the heart.
- To characterize a novel microprotein encoded by the lncRNA CD63-AS1.
Main Methods:
- Ribosome profiling in human hearts.
- Biochemical assays to assess protein aggregation and localization.
- Overexpression studies in cultured cardiomyocytes.
- In vivo studies using adeno-associated virus in mouse hearts.
Main Results:
- Identified CD63-AS1 as encoding a mitochondrial microprotein, termed CEAM (CD63-AS1 encoded amyloid-like motif containing microprotein).
- CEAM forms protease-resistant mitochondrial aggregates; its amyloid-like motif is crucial for aggregation.
- CEAM overexpression impairs cardiomyocyte bioenergetics and mitochondrial stress responses.
- In vivo CEAM expression in mouse hearts reduces cardiac function but protects against pressure overload-induced hypertrophy.
Conclusions:
- CEAM is a novel amyloid-like microprotein in human cardiomyocytes with dual roles in cardiac function and hypertrophy.
- CEAM's aggregation and mitochondrial localization are key to its function.
- This discovery provides new insights into myocardial hypertrophy pathophysiology and potential therapeutic targets.
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