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A tunable and compatible chemical structure with fine morphology was obtained through in situ controlled sol gel polymerization, crosslinking, chemical modification and membrane fabrication.
This is due to posttranslational modification and membrane association of K-Ras.
In addition to reducing cholesterol, they interfere with post-translation modification and membrane targeting of signalling proteins such as several small GTP-binding proteins [112].
Other strategies for interruption of oncogenic KRAS signals have been employed such as inhibiting post-translational modification and membrane association of Ras proteins.
More studies are required to examine the detailed regulatory mechanisms of proton transporters, including gene expression, protein modification, and membrane trafficking, in addition to their contributions to metabolic homeostasis.
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Currently, it is unclear how the calpain-calpastatin system is regulated in vivo, however several possible modes of regulation have been proposed, such as local calcium transients, differential localization, post-translational modifications, and membrane association [37], [41], [42].
This study focused on demonstrating surface modification strategies and membrane comparison strategies to better understand the complex, competing phenomena occurring when membranes are surface modified.
Overexpression of the genes encoding protein with various functional domains, such as CBS, F Box, C2 and C3H4 (Table 2) mediating important biochemical processes, mainly protein modification, degradation and membrane trafficking of proteins, is suggestive of their important role in adaptation of cells to NaCl enriched environment.
N-linked glycosylation is an essential modification of secretory and membrane proteins in all eukaryotic cells.
Fatty acids are synthesized to provide lipids for energy production via β-oxidation and lipid modification of proteins and membrane formation in cancer cells [ 1- 3].
This process is initiated by three ER membrane-associated proteins that act as unfolded protein sensors; IRE1α, PERK, and ATF6, which each set in motion a series of events aimed at restoring ER homeostasis by altering the translation, folding, and post-translational modification of secreted and membrane proteins.
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