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January 1, 2006Cell Motility and the Cytoskeleton38 citations

Targeted disruption of N-RAP gene function by RNA interference: A role for N-RAP in myofibril organization

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ADAshwini DhumeSLShajia LuRHRobert Horowits

Key Result

Targeted N-RAP knockdown using RNA interference decreased transcript levels by 70% and protein levels by 50%, which was associated with decreased myofibril assembly in mouse cardiomyocytes.

Structured PICO

P
Population
primary cultures of embryonic mouse cardiomyocytes
I
Intervention
N-RAP specific siRNA transfection (RNA interference)
C
Comparator
control
O
Outcome
N-RAP transcript and protein levels, and myofibril assembly (assessed by alpha-actinin organization)surrogate

N-RAP protein levels regulate alpha-actinin organization into myofibrils and the balance between nonmuscle myosin IIB and muscle myosin in cardiomyocytes.

Abstract

N-RAP is a muscle-specific protein concentrated in myofibril precursors during sarcomere assembly and at intercalated disks in adult heart. We used RNA interference to achieve a targeted decrease in N-RAP transcript and protein levels in primary cultures of embryonic mouse cardiomyocytes. N-RAP transcript levels were decreased by approximately 70% within 2 days following transfection with N-RAP specific siRNA. N-RAP protein levels steadily decreased over several days, reaching approximately 50% of control levels within 6 days. N-RAP protein knockdown was associated with decreased myofibril assembly, as assessed by alpha-actinin organization into mature striations. Transcripts encoding N-RAP binding proteins associated with assembling or mature myofibrils, such as alpha-actinin, Krp1, and muscle LIM protein, were expressed at normal levels during N-RAP protein knockdown, and alpha-actinin and Krp-1 protein levels were also unchanged. Transcripts encoding muscle myosin heavy chain and nonmuscle myosin heavy chain IIB were also expressed at relatively normal levels. However, decreased N-RAP protein levels were associated with dramatic changes in the encoded myosin proteins, with muscle myosin heavy chain levels increasing and nonmuscle myosin heavy chain IIB decreasing. N-RAP transcript and protein levels recovered to normal by days 6 and 7, respectively, and the changes in myofibril organization and myosin heavy chain isoform levels were reversed. Our data indicate that we can achieve transient N-RAP protein knockdown using the RNA interference technique and that alpha-actinin organization into myofibrils in cardiomyocytes is closely linked to N-RAP protein levels. Finally, N-RAP protein levels regulate the balance between nonmuscle myosin IIB and muscle myosin by post-trancriptional mechanisms.

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Cite This Study

Dhume et al. (2006) studied Myofibril organization. N-RAP specific siRNA vs. Control was evaluated on N-RAP transcript and protein levels and myofibril assembly. Targeted N-RAP knockdown using RNA interference decreased transcript levels by 70% and protein levels by 50%, which was associated with decreased myofibril assembly in mouse cardiomyocytes.

synapsesocial.com/papers/6a18aee9673175fe754ac6f7https://doi.org/10.1002/cm.20141
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