Key result
Mouse left ventricles downregulate alpha-MHC, MLC1A, and MLC2A earlier than right, independent of heart looping.
Why the study?
Many cardiac genes become restricted to specific heart compartments during development, with transcriptional differences recently identified between embryonic left and right compartments.
Left/right ventricular differences in sarcomeric gene expression patterns during fetal cardiogenesis originate in response to anterior-posterior patterning of the heart tube rather than cardiac looping.
May inform ventricular asymmetry in congenital disease; challenges looping as driver of left-right sarcomeric patterning in cardiogenesis.
Many cardiac genes are broadly expressed in the early heart and become restricted to the atria or ventricles as development proceeds. Additional transcriptional differences between left and right compartments of the embryonic heart have been described recently, in particular for a number of transgenes containing cardiac regulatory elements. We now demonstrate that three myosin genes which become transcriptionally restricted to the atria between embryonic day (E) 12.5 and birth, alpha-myosin heavy chain (MHC), myosin light chain (MLC) 1A and MLC2A, are coordinately downregulated in the compact myocardium of the left ventricle before that of the right ventricle. alpha-MHC protein also accumulates in the right, but not left, compact ventricular myocardium during this period, suggesting that this transient regionalization contributes to fktal heart function. dHAND and eHAND, basic helix-loop-helix transcription factors known to be expressed in the right and left ventricles respectively at E10. 5, remain regionalized between E12.5 and E14.5. Downregulation of alpha-MHC, MLC1A, and MLC2A in iv/iv embryos, which have defective left/right patterning, initiates in the morphological left (systemic) ventricle regardless of its anatomical position on the right or left hand side of the heart. This points to the importance of left/right ventricular differences in sarcomeric gene expression patterns during fktal cardiogenesis and indicates that these differences originate in the embryo in response to anterior-posterior patterning of the heart tube rather than as a result of cardiac looping. Dev Dyn 2000;217:75-85
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Zammit et al. (2000) studied this question. Alpha-MHC, MLC1A, and MLC2A genes are downregulated earlier in the left ventricle than the right during mouse heart development, independent of heart looping.
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