Exact(2)
Preferential expression of stress-related and defensive genes in Pet reveals that this tissue is likely to be reprogrammed to prevent pathogen attacks and general abiotic stresses after organ shedding.
It is possible that some genes, due to their methylation pattern in the somatic cells or to their location in the chromosome, are more likely to be reprogrammed by the oocyte factors.
Similar(57)
The system needs to be reprogrammed.
Embryos are known to be reprogrammed in the womb.
The drawback is that the memory needs to be reprogrammed each time another version is completed.
Moreover, the devices may need to be reprogrammed and their clocks reset when power is restored.
On the other hand, changes in histone methylation seem more likely to be associated with reprogramming.
We have paid special attention to histone H3 methylations (H3K4 me2, H3K4 me3 and H3K27 me3) because these seem from our 10T1/2 nuclei results to be likely to be connected with reprogramming.
These functional RNA molecules are likely to be applicable in the reprogramming of existing gene regulatory systems.
Among these modifications, H3K4 me3 is very likely to be important for the efficient reprogramming of mouse somatic nuclei by Amphibian oocytes.
Modification of chromosomal histones can either activate or silence genes; in particular, the methylation level of H3K4 is likely to be important for the efficient reprogramming of pluripotency genes [69].
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