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Examinations of the roles of post-transcriptional regulation have focused on proteins with abundances that are most likely under stabilizing selection.
Notwithstanding the mediating roles of post-war hardships and depression/anxiety, other factors may be associated with individual differences in SI among FCS.
Despite the importance of dormancy regulation for perennial behavior [ 3], the roles of post-translational modifications, especially protein phosphorylation, remain poorly understood.
Despite the importance of cotton fiber differentiation and initiation, the roles of post-translational modifications, especially the reversible phosphorylation of proteins, remain a mystery.
Thus, our current knowledge only scratches the surface of the many roles of post-transcriptional modifications in modulating transcriptional and translational processes.
The roles of post-transcriptional control [ 37, 40– 42], micro-RNAs [ 38, 39, 43], O-GlcNAcylation [ 44], and histone acetylation and methylation [ 22, 45, 46] in circadian time-keeping are still emerging areas of research, especially in insects.
It will, therefore, be enlightening to study further the differences between these processes, and thus elucidate their specific regulatory elements, including the roles of post-translational modifications and protein protein interactions.
The current study assessed the contributions of different types of previous WE in predicting current SI and assessed the mediating roles of post-war hardships and depression/anxiety in the relations between WE and SI in FCS in Northern Uganda.
Research in the future should result in new knowledge regarding novel IGFBP-5-interacting proteins, new tissue-specific proteases, different functional roles of post-translational modifications on IGFBP-5, transcriptional regulator genes, and the logic and mechanisms of cellular trafficking of IGFBP-5 in different types of tumors.
High throughput proteomics experiments (mass spectrometry) provide unique insight into the protein expression profile of an organism and can be useful in identifying the correct gene structure of a genome, particularly when splice variants or alternative gene predictions exist, or to elucidate the roles of post-translational modifications within proteins [ 1].
The role of post traumatic mammography is controversial as it is generally unnecessary as long as clinical follow-up ensures resolution of any mass effect after recovery [1].
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