Sentence examples for stress progression from inspiring English sources

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Through expression analysis and computational predictions, we identified endogenous miR-199a-5p miR-199a-5p miR-199a-5pdulatisnecessarytic ER stress progression by negatively regulating the IRE1 α-related pathway.

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Two pathophysiologies altered with aging are vulnerability to ischemic stress and progression of AD.

Although oxidative low-density lipoprotein (LDL) is associated with the marker of oxidative stress and progression of atherosclerosis, the clinical factor affecting the oxidative LDL remains uncertain.

This finding suggested that Pkc1p might act as a checkpoint kinase under conditions of replicative stress where progression to G2 phase is inhibited.

This contrasts sharply with the quality of accumulating evidence demonstrating that life stress predicts progression of some diseases [ 81] even if not convincingly cancer and that stress dysregulates the immune system and compromises health in other ways as well [ 82].

Numerous time-series microarray experiments have been performed to study such biological processes as the biological rhythms or circadian clock of Arabidopsis, flowering time, abiotic stress, disease progression, and drug responses [ 2, 16- 20].

A modest cleavage of poly(ADP-ribose) polymerase-1 (Pafter aftreatmentment with 2% cis-UCA was detected (data not shown), suggesting that in our experimental setup, the cleavage of PARP1 is more likely to indicate general cellular stress than progression of classical apoptotic cell death.

We speculate that conventional PKC activation and 'transient' H2O2 stress promote MEND progression by increasing the availability of sites for palmitoylation, whereas the immediate presence of oxidative stress inhibits MEND progression by inhibiting palmitoylation reactions.

In total, 128 simulation results were performed to understand variability in stress development, damage progression, compressive strength, and elastic modulus of RAC systems.

Here, we provide an overview on the role of CDK cyclin complexes, metabolic adaptations and oxidative stress in regulating progression through each cell cycle phase and transitions between them.

In this review, we summarize recent ribosome profiling studies in mammals providing novel insight in dynamic translation regulation, notably related to circadian rhythms, diurnal feeding/fasting cycles, cell cycle progression, stress responses, and tRNA landscapes.

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