Abstract 4357659: A "non-muscle" alpha-actinin is an intrinsic component of the cardiac Z-disc and regulates sarcomere turnover, contractility, and heart remodeling

J James Hayes (Vanderbilt University, Nashville, Tennessee, United States) D Dylan Ritter (Vanderbilt University, Nashville, Tennessee, United States) A Abigail Neininger-Castro (Vanderbilt University, Nashville, Tennessee, United States) A Alaina Willet L Leah Caplan (Vanderbilt University, Nashville, Tennessee, United States) Y Yu Wang X Xiao Liu N Nilay Taneja (Memorial Sloan Kettering, New York, New York, United States) Z Zachary Sanchez (Vanderbilt University, Nashville, Tennessee, United States) K Kyra Smart (Rice University, Houston, Texas, United States) D Dharmendra Choudhary C Cynthia Reinhart-King (Rice University, Houston, Texas, United States) Q Qi Liu M Matthew Tyska (Department of Cell and Developmental Biology) E Erdem Tabdanov (Penn State University, State College, Pennsylvania, United States) Q Quinn Wells (VANDERBILT UNIVERSITY, Nashville, Tennessee, United States) E Ela Knapik (Vanderbilt University, Nashville, Tennessee, United States) D Dylan Burnette (VANDERBILT SCHOOL OF MEDICINE, Brentwood, Tennessee, United States)

Abstract

Background: The cellular unit of each heartbeat is the c ardiac m yocyte ( CM ). CMs contain the heartbeat’s basic contractile unit, the cardiac sarcomere. While sarcomeres are thought to comprise only muscle-specific cytoskeletal proteins, CMs also express "non-muscle" versions of those proteins, which have unknown relevance to heart physiology. Methods: Published datasets revealed that adult human CMs express alpha-actinin 4 (ACTN4), a “non-muscle” actin cross-linker, at higher levels even than some cardiac muscle-specific proteins. Specific anti-ACTN4 antibodies were validated via western blot and used for immunofluorescence stains of i PSC-derived c ardiac m yocytes ( iPSC-CM s), zebrafish embryos, and sections of healthy human ventricular tissue. IPSC-CMs from healthy donors were depleted of ACTN4 using siRNA and subjected to assays which measured sarcomere assembly, traction forces, fractional shortening, and sarcomere component turnover. Zebrafish embryos depleted of ACTN4 were mounted and imaged for measurements of cardiac sarcomere length, chamber dimensions, and ejection fraction. S ingle n ucleotide p olymorphisms ( SNP s) in the human ACTN4 gene were tested for association with clinical diagnosis of h eart f ailure with p reserved e jection f raction (HFpEF) using Vanderbilt’s collection of de-identified patient samples (BioVU). Results: Anti-ACTN4 antibodies localized in ~1.8um-wide striations and were co-localized with anti-ACTN2, indicating the sarcomere Z-disc. In iPSC-CMs, native ACTN2 co-immunoprecipitated with exogenous ACTN4, suggesting ACTN4 and ACTN2 form a complex. ACTN4 depletion from iPSC-CMs resulted in upregulation of genes associated with CM hypertrophy, and ACTN4-depleted iPSC-CMs were larger, had more sarcomeres, and exerted more traction forces while beating. The addition of Mavacamten to ACTN4-depletion media was sufficient to restore the wild-type iPSC-CM phenotype. Meanwhile, overexpression of an ACTN4 actin-binding chimera alone was sufficient to reduce iPSC-CM sarcomere assembly. In zebrafish embryos, ACTN4 depletion was associated with increased sarcomere length and ventricular ejection fraction, which drove subsequent atrium enlargement. In BioVU, one out of 14 tested ACTN4 SNPs was associated with reduced risk of HFpEF diagnosis. Conclusions: Our findings suggest a “non-muscle” actinin regulates heart contractility and influences clinical outcomes related to heart failure in humans.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (18)

J

James Hayes

Vanderbilt University, Nashville, Tennessee, United States

D

Dylan Ritter

Vanderbilt University, Nashville, Tennessee, United States

A

Abigail Neininger-Castro

Vanderbilt University, Nashville, Tennessee, United States

A

Alaina Willet

L

Leah Caplan

Vanderbilt University, Nashville, Tennessee, United States

Y

Yu Wang

X

Xiao Liu

N

Nilay Taneja

Memorial Sloan Kettering, New York, New York, United States

Z

Zachary Sanchez

Vanderbilt University, Nashville, Tennessee, United States

K

Kyra Smart

Rice University, Houston, Texas, United States

D

Dharmendra Choudhary

C

Cynthia Reinhart-King

Rice University, Houston, Texas, United States

Q

Qi Liu

M

Matthew Tyska

Department of Cell and Developmental Biology

E

Erdem Tabdanov

Penn State University, State College, Pennsylvania, United States

Q

Quinn Wells

VANDERBILT UNIVERSITY, Nashville, Tennessee, United States

E

Ela Knapik

Vanderbilt University, Nashville, Tennessee, United States

D

Dylan Burnette

VANDERBILT SCHOOL OF MEDICINE, Brentwood, Tennessee, United States