344: Homozygous TNNI3 p.Arg136* and severe pediatric restrictive cardiomyopathy

344: Homozygous TNNI3 p.Arg136* and severe pediatric restrictive cardiomyopathy

Kühnisch J et al., Human Genetics and Genomics Advances 7, 100598 (2026) - Case report and tissue analysis linking a homozygous TNNI3 nonsense variant (c.406C>T; p.Arg136*) to early-onset, treatment-refractory restrictive cardiomyopathy in a young child who required heart transplantation. Key terms: TNNI3, restrictive cardiomyopathy, pediatric cardiomyopathy, troponin I, protein truncation.

Study Highlights:
A 2-year-old female with severe pediatric restrictive cardiomyopathy carried a homozygous TNNI3 c.406C>T (p.Arg136*) nonsense variant. Myocardial immunostaining showed approximately 50% reduced TNNI3 protein abundance though truncated protein remained detectable. Electron microscopy revealed myofibrillar disarray, irregular Z bands, indistinct M lines, and mitochondrial hyperplasia. The clinical course was treatment refractory and led to heart transplant at 28 months, implicating variant zygosity and truncation position in phenotype determination.

Conclusion:
Biallelic truncation of TNNI3 (p.Arg136*) can cause severe early-onset pediatric restrictive cardiomyopathy, with reduced but partially stable truncated protein and severe sarcomeric pathology prompting early transplantation.

Music:
Enjoy the music based on this article at the end of the episode.

Article title:
A homozygous variant in cardiac troponin I3, TNNI3, causes severe pediatric restrictive cardiomyopathy

First author:
Kühnisch J

Journal:
Human Genetics and Genomics Advances 7, 100598 (2026)

DOI:
10.1016/j.xhgg.2026.100598

Reference:
Kühnisch J, Barnett CL, Brendel J, et al. A homozygous variant in cardiac troponin I3, TNNI3, causes severe pediatric restrictive cardiomyopathy. Human Genetics and Genomics Advances. 7:100598. https://doi.org/10.1016/j.xhgg.2026.100598

License:
This episode is based on an open-access article published under the Creative Commons Attribution 4.0 International License (CC BY 4.0) – https://creativecommons.org/licenses/by/4.0/

Support:
Base by Base – Stripe donations: https://donate.stripe.com/7sY4gz71B2sN3RWac5gEg00

Official website https://basebybase.com

On PaperCast Base by Base you'll discover the latest in genomics, functional genomics, structural genomics, and proteomics.

Episode link: https://basebybase.com/episodes/tnni3-arg136-pediatric-rcm

QC:
This episode was checked against the original article PDF and publication metadata for the episode release published on 2026-04-17.

QC Scope:
- article metadata and core scientific claims from the narration
- excludes analogies, intro/outro, and music
- transcript coverage: Audited the transcript's representation of the genetic case, protein expression, tissue analyses, mechanistic interpretation, and genotype–phenotype implications as described in the article.
- transcript topics: RCM vs DCM distinctions; TNNI3 function in the troponin complex; Case presentation and homozygous TNNI3 variant; DNA sequencing and parental segregation; Protein expression by immunostaining; Ultrastructural TEM findings

QC Summary:
- factual score: 10/10
- metadata score: 10/10
- supported core claims: 6
- claims flagged for review: 0
- metadata checks passed: 4
- metadata issues found: 0

Metadata Audited:
- article_doi
- article_title
- article_journal
- license

Factual Items Audited:
- Homozygous TNNI3 nonsense variant c.406C>T (p.Arg136*) identified in the proband.
- Proband presented with severe restrictive cardiomyopathy (RCM) requiring heart transplantation at 28 months.
- TNNI3 protein abundance was reduced by approximately 50%, with detectable truncated protein remaining.
- TEM showed sarcomeric disarray and mitochondrial hyperplasia in explanted heart tissue.
- NMD failed to completely eliminate the tr...

Denne episoden er hentet fra en åpen RSS-feed og er ikke publisert av Podme. Den kan derfor inneholde annonser.

Episoder(440)

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

Axakova A et al., The American Journal of Human Genetics - Axakova et al. generated a variant effect map for AIRE using an insulin‑promoter GFP reporter in HEK293 cells to measure the functional impac...

10 Aug 24min

437: Cell villages and Dirichlet modeling map human cell fitness genetics

437: Cell villages and Dirichlet modeling map human cell fitness genetics

Hanson C et al., The American Journal of Human Genetics - Hanson et al. combine pooled multi-donor human neural progenitor cell "villages" with Townlet, a hierarchical Dirichlet regression model, to e...

9 Aug 28min

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

Owino BO et al., PNAS - Using TurboID proximity proteomics and microscopy, researchers identify KIAP4 as the canonical member of a conserved Adhesion Related NTPase-like Domain (ARND) family that loca...

8 Aug 24min

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

Ember M et al., PNAS - This episode examines a cryo-EM study of Escherichia coli tRNA-guanine transglycosylase (TGT) that solves the enzyme structure and its covalent intermediate with tRNATyr. Unexpe...

7 Aug 19min

434: High‑coverage genomes recast Japan's prehistoric demography

434: High‑coverage genomes recast Japan's prehistoric demography

Ishiya K et al., PNAS - This episode examines a PNAS study that reports two high-coverage ancient human genomes from mainland Japan (an Initial Jomon >67× and a Middle Yayoi >46×). The genomes enable ...

6 Aug 27min

433: Lactate, HSP90α and the Mitochondrial Switch

433: Lactate, HSP90α and the Mitochondrial Switch

Wu G et al., Proceedings of the National Academy of Sciences - This episode examines a PNAS study that identifies site-specific lactylation of HSP90α as a metabolic signal linking glycolysis to mitoch...

23 Jul 23min

432: Echovirus 18: Capsid opening releases the genome

432: Echovirus 18: Capsid opening releases the genome

Mukhamedova L et al., Proceedings of the National Academy of Sciences - Using cryo-electron tomography and single-particle cryo-EM of infected Cos-7 cells, the authors show that echovirus 18 (E18) rel...

23 Jul 18min

431: KIAP4 and the ARND family: essential proteins for Leishmania–sand fly adhesion

431: KIAP4 and the ARND family: essential proteins for Leishmania–sand fly adhesion

Owino BO et al., Proceedings of the National Academy of Sciences - TurboID proximity labeling and proteomics identify KIAP4 as the canonical member of a conserved Adhesion Related NTPase-like Domain (...

23 Jul 21min

Populært innen Vitenskap

fastlegen
tingenes-tilstand
abels-tarn
liberal-halvtime
romkapsel
jss
rekommandert
vett-og-vitenskap-med-gaute-einevoll
sinnsyn
dekodet-2
villmarksliv
fjellsportpodden
rss-rekommandert
tomprat-med-gunnar-tjomlid
rss-inn-til-kjernen-med-sunniva-rose
rss-nysgjerrige-norge
rss-overskuddsliv
diagnose
abid-nadia-skyld-og-skam
forskningno