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An ecdysone-inducible system expressing a constitutively activated mutant of MEK5 in EcR293 cells was used to determine the effects of increased MEK5/ERK5 signalling on the DNA RLP.
The effects of increased MEK5/ERK5 signalling on the expression of replication licensing factors Mcm2 and geminin and the proliferation marker Ki67 were studied in an ecdysone-inducible system expressing a constitutively activated mutant of MEK5 in EcR293 cells and in stable ERK5 over-expressing PC3 clones.
First, we used an ecdysone-inducible in vitro system expressing a constitutively activated mutant of MEK5 in EcR293 cells in addition to stable ERK5 overexpressing PC3 clones to determine the effects of increased MEK5/ERK5 signalling on the RLP in vitro.
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In the present study, we report on the use of a whole-cell system expressing an ω-transaminase gene originating from Capsicum chinense (Weber et al. 2014) for the kinetic resolution of (rac -1-phenylethylamine to (rac -1-phenylethylamineCatalytic activity and cell rac -1-phenylethylamineeactoon and the use of glucose instead of pyR -1-phenylethylamineate weR -1-phenylethylamineceR -1-phenylethylamine
The system expresses a clear network effect, getting better at recommendations as you and your friends put more in the system.
Thus, a parent component object passes its structural properties to its child components so that the overall growing system expresses a continuous self-identity and similarity.
(Fig. 1, 2, 3) A fully functioning open system expresses a number of defining characteristics.
As shown in Figure 1a and b, the fibroblasts in the co-culture system expressed a higher protein level of CAF characteristic markers.
Leukocytes of both the innate, adaptive immune and central nervous system express a repertoire of cell surface receptors for ATP (P2X and P2Y receptors) and its metabolites.
Cells of the innate immune system express a wide array of signaling receptors that recognize signals from the microbiota as well as signals indicating tissue damage.
A wheat germ embryo derived cell-free translation system expresses a biologically active, highly toxic scorpion venom protein that is fully neutralized by a camel single domain antibody fragment raised against the native scorpion toxin.
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