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.

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.

Related Concept Videos

Translocation of Proteins into the Mitochondria01:19

Translocation of Proteins into the Mitochondria

Mitochondrial precursors are translocated to the internal subcompartments via independent mechanisms involving distinct protein machineries called translocases.
Sorting of outer membrane proteins:
Mitochondrial outer membrane proteins are of two types: the transmembrane, beta-barrel porins, and the membrane-anchored, alpha-helical proteins. Beta-barrel porin precursors are translocated by the TOM complex and inserted into the outer mitochondrial membrane by the SAM complex. In contrast,...
3.0K
The Inner Mitochondrial Membrane01:28

The Inner Mitochondrial Membrane

The inner mitochondrial membrane is the primary site of ATP synthesis. The inner membrane domain that forms a smooth layer adjacent to the outer membrane is called the inner boundary membrane. This domain contains membrane transporters that drive metabolites in and out of the mitochondria.  In contrast, the inner membrane network that invaginates into the matrix space is called the cristae membrane. This domain accounts for principle mitochondrial function as it accommodates the protein...
3.3K
Mitochondrial Protein Sorting01:39

Mitochondrial Protein Sorting

Mitochondria are double-membrane organelles of the eukaryotes involved in cellular metabolism, signaling, ATP synthesis, and programmed cell death.  Each of these processes requires specific proteins and enzymes that must be correctly sorted to the right mitochondrial subcompartment for the proper functioning of the organelle.
Most of these mitochondrial proteins are encoded by the nucleus and imported to the mitochondria as unfolded or loosely folded precursors. Mitochondrial precursors...
4.3K
Mitochondrial Precursor Proteins01:39

Mitochondrial Precursor Proteins

Mitochondrial precursors are partially unfolded or loosely folded polypeptide chains. Newly synthesized precursors are inhibited from spontaneously folding into their native conformation by the cytosolic chaperones, heat shock proteins 70 (Hsp70), and mitochondrial import stimulation factors (MSFs). Precursors bound to MSFs are guided to the TOM70-TOM37 receptors, while precursors bound to Hsp70  chaperones are targetted to TOM20-TOM22 receptor complexes.
Most of the mitochondrial...
2.5K
Mitochondrial Membranes01:45

Mitochondrial Membranes

A single mitochondrion is a bean-shaped organelle enclosed by a double-membrane system. The outer membrane of mitochondria is smooth and contains many porins - the integral membrane transporters. Porins enable free diffusion of ions and small uncharged molecules through the outer mitochondrial membrane but limit the transport of molecules larger than 5000 Daltons. Further, the outer mitochondrial membrane forms a unique structure called membrane contact sites with other subcellular organelles,...
9.1K
Calmodulin-dependent Signaling01:16

Calmodulin-dependent Signaling

Calmodulin (CaM) is a calcium-binding protein in eukaryotes that controls various calcium-regulated cellular processes. It has four calcium-binding sites that bind calcium to form the calcium-calmodulin ( Ca2+-CaM) complex. GPCR stimulation increases the calcium levels in the cells that bind to CaM and induces a conformational change.
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
5.1K