Species-specific segmentation clock periods are due to differential biochemical reaction speeds.
other · Level V
Where this comes from
- Record sourced from PubMed, PMID 32943519.
- Also identified by DOI 10.1126/science.aba7668.
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Abstract
Although mechanisms of embryonic development are similar between mice and humans, the time scale is generally slower in humans. To investigate these interspecies differences in development, we recapitulate murine and human segmentation clocks that display 2- to 3-hour and 5- to 6-hour oscillation periods, respectively. Our interspecies genome-swapping analyses indicate that the period difference is not due to sequence differences in the <i>HES7</i> locus, the core gene of the segmentation clock. Instead, we demonstrate that multiple biochemical reactions of <i>HES7</i>, including the degradation and expression delays, are slower in human cells than they are in mouse cells. With the measured biochemical parameters, our mathematical model accounts for the two- to threefold period difference between the species. We propose that cell-autonomous differences in biochemical reaction speeds underlie temporal differences in development between species.
Medical subject headings
- Basic Helix-Loop-Helix Proteins
- Biological Clocks
- Embryonic Development
- Proteolysis