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April 29, 1997Proceedings of the National Academy of Sciences191 citationsOpen Access

Rescue of cardiac α-actin-deficient mice by enteric smooth muscle γ-actin

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AKAjit KumarKCKelly CrawfordLCL. Close

Structured PICO

P
Population
Murine (129/SvJ) model with disrupted cardiac alpha-actin gene (homozygous mutants, heterozygotes, and wild-type)
I
Intervention
Ectopic expression of enteric smooth muscle gamma-actin using the cardiac alpha-myosin heavy chain promoter
C
Comparator
Mice lacking cardiac alpha-actin without the transgene, and wild-type/heterozygous mice
O
Outcome
Survival to adulthood, cardiac contractility, and structural integrity (hypertrophy/enlargement)

Alterations in actin composition in the heart lead to severe structural and functional perturbations, demonstrating the specific functional necessity of cardiac alpha-actin.

Abstract

The muscle actins in higher vertebrates display highly conserved amino acid sequences, yet they show distinct expression patterns. Thus, cardiac alpha-actin, skeletal alpha-actin, vascular smooth muscle alpha-actin, and enteric smooth muscle gamma-actin comprise the major actins in their respective tissues. To assess the functional and developmental significance of cardiac alpha-actin, the murine (129/SvJ) cardiac alpha-actin gene was disrupted by homologous recombination. The majority ( approximately 56%) of the mice lacking cardiac alpha-actin do not survive to term, and the remainder generally die within 2 weeks of birth. Increased expression of vascular smooth muscle and skeletal alpha-actins is observed in the hearts of newborn homozygous mutants and also heterozygotes but apparently is insufficient to maintain myofibrillar integrity in the homozygous mutants. Mice lacking cardiac alpha-actin can be rescued to adulthood by the ectopic expression of enteric smooth muscle gamma-actin using the cardiac alpha-myosin heavy chain promoter. However, the hearts of such rescued cardiac alpha-actin-deficient mice are extremely hypodynamic, considerably enlarged, and hypertrophied. Furthermore, the transgenically expressed enteric smooth muscle gamma-actin reduces cardiac contractility in wild-type and heterozygous mice. These results demonstrate that alterations in actin composition in the fetal and adult heart are associated with severe structural and functional perturbations.

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Cite This Study

Kumar et al. (1997) studied this question.

synapsesocial.com/papers/6a1b9f220ea968f653ac098chttps://doi.org/10.1073/pnas.94.9.4406
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