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Updated: Jun 25, 2026

Genotyping Single Nucleotide Polymorphisms in the Mitochondrial Genome by Pyrosequencing
Published on: February 10, 2023
An immune-associated mitochondrial DNA variant with sex differences reveals a putative novel microprotein called MASL
Ana R Silverstein1, Thalida E Arpawong1, Eileen M Crimmins1
1Leonard Davis School of Gerontology, University of Southern California, 3715 McClintock Ave, Los Angeles, CA, 90089, USA.
Abstract:
The use of mitochondrial wide association studies (MiWAS) to link mitochondrial DNA variants (mtSNPs) to phenotypes of interest has uncovered important connections between mitochondrial genes and human health. The recent introduction of a re-annotated mitochondrial genome that accounts for small open reading frames (sORFs) with protein coding potential suggests the existence of mitochondrial-derived microproteins, many of which remain uncharacterized. Thus, considering the re-annotated mitochondrial genome when conducting genomic analyses such as MiWAS facilitates the mapping of mtSNPs back to microprotein-encoding sORFs and uncovers interactions between mitochondrial microproteins and biological systems. Here, we employ MiWAS of venous blood samples from the Health and Retirement Study (HRS) and identify a mtSNP associated with sex-specific changes to immune composition. After accounting for re-annotation, we map the identified mtSNP back to a sORF that encodes a novel microprotein, termed MASL (Mitochondrial Associated Small d-Loop peptide). Complementary phenome-wide association studies (PheWAS) in HRS and and UK Biobank confirm interactions between this mtSNP and immune phenotypes of interest, and our targeted RNA-Seq method (mitoSNP-seq) elucidates sex-differences in gene expression and functional pathways potentially altered by this mtSNP that may be relevant to the associated microprotein. Early characterization of the MASL microprotein shows sex-differences in circulating MASL levels in human plasma, and sex-specific interactions when comparing male and female mice treated with synthesized MASL. Together, the results of this study not only contribute to our understanding of mitochondrial dynamics in immunity, but also provide early characterization of a novel mitochondrial-derived microprotein with sex-specific modulatory effects.
Insights
Mitochondrial DNA variants (mtSNPs) linked to immune changes reveal a novel microprotein, MASL (Mitochondrial Associated Small d-Loop peptide). This microprotein exhibits sex-specific effects on immunity, impacting human health and biological systems.
Area of Science:
- Genomics
- Immunology
- Mitochondrial Biology
Background:
- Mitochondrial DNA variants (mtSNPs) link mitochondrial genes to human health.
- A re-annotated mitochondrial genome reveals potential microprotein-encoding small open reading frames (sORFs).
- Uncharacterized mitochondrial microproteins may play roles in biological systems.
Purpose of the Study:
- To investigate the connection between mtSNPs, immune composition, and novel mitochondrial microproteins.
- To characterize a newly identified microprotein and its sex-specific effects.
Main Methods:
- Mitochondrial wide association studies (MiWAS) on Health and Retirement Study (HRS) blood samples.
- Phenome-wide association studies (PheWAS) in HRS and UK Biobank.
- Targeted RNA-Seq (mitoSNP-seq) and characterization of the MASL microprotein.
Main Results:
- A novel mtSNP associated with sex-specific immune composition changes was identified.
- The mtSNP was mapped to a sORF encoding the MASL microprotein.
- MASL microprotein showed sex-specific levels in human plasma and sex-specific interactions in mice.
Conclusions:
- This study identifies a novel mitochondrial microprotein, MASL, with sex-specific immunomodulatory effects.
- Findings contribute to understanding mitochondrial roles in immunity and human health.
- The MASL microprotein represents a new area for research in sex-specific biological processes.
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