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The differences in post-translational modifications might play important roles in divergent function of the new isoform.
These post-transcriptional modifications might play important roles in protein interactions, the protein half-life, and the proteolysis potential.
If the identical actins are translated in a developmental pattern, then posttranslational modifications might play a much larger role than we are aware of today.
Overall, these functional categories indicated that epigenetic modifications might play a crucial role in the HD responsive process, although the exact functions of these genes remain to be elucidated.
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Through GO and MapMan analysis, we found that some genes regulated by gs3 and qgl3 are involved in BR signaling, the cell cycle, protein degradation, the GA/IAA family and protein modification, and might play important roles in the regulation of grain length.
These modifications are highly associated with transcriptional activity [ 21, 22]; therefore, the activation-associated modifications in yeast might play an extensive and predominant role in regulation of the chromatin level.
Transient phosphorylated modifications of chitinases might play important roles in different stress/defense and/or detoxification mechanisms through regulation of their localization and enzyme activities.
All of the data suggest that post-transcriptional regulation and post-translational modifications including phosphorylation might play an important role in modulating their kinase activities beyond the transcriptional regulation.
This indirectly supports the suggestion that similar histone modification of neighbors might play a key role in the co-modification of neighboring genes.
However, and since the majority of demethylated genes did not show significant changes in gene expression, other layers of regulation, such as histone modifications, might also play a significant role (Xie et al., 2013).
Such post-translational modifications might also play a role in explaining the different physiological properties of pR and bR.
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