Genome complexity: control of DNA in embryology (Introduction)
Spot Methylation is used in early mouse embryos to control DNA:
https://medicalxpress.com/news/2019-01-discovery-cell-genes-early-embryos.html
"Our bodies hold roughly 14 trillion cells, each containing a nucleus with DNA measuring two meters long by 20 atoms wide. To fit inside each nucleus, DNA coils around specialized proteins. These spools of wrapped DNA inhibit gene regulatory proteins from binding to protein-coding stretches along the genome, which help keep genes in the "off" position when they're not needed.
"Until now, it was unclear how this DNA packing affected development in early embryos. In a paper published this week in Science, researchers from the Perelman School of Medicine at the University of Pennsylvania found that in mouse embryos—only eight days after fertilization—compacted regions along the genome increase at protein-coding genes. Days later in the cell differentiation phase, these domains open to allow certain genes to be read and made into their corresponding proteins.
"'This is a fundamental change in our understanding of how genes are controlled in the early embryo, even if we can't yet see all the potential clinical impacts," said Ken Zaret, Ph.D., director of the Penn Institute of Regenerative Medicine and a professor of Cell and Developmental Biology. "This study demonstrates the importance of the 'off position' for gene activity in early animal development."
"First author Dario Nicetto, Ph.D., a postdoctoral fellow in Zaret's lab, explains that he and coauthors think that during the earliest stages of development, more compacted gene-coding regions arise so that a cell can make rapid "decisions" about which genes should be made into proteins. However, if genes are not open at the correct regions to be read and made into appropriate proteins, cells lose their proper identity and give rise to damaged tissue, and eventually death.
"The team also found that compacted regions were marked by three methyl molecules, which occur at specific sites of protein binding along the genome. Basically, more trimethylation leads to more compaction, which means less of the genome is available to mRNA to eventually make full-length proteins. On the other hand, less trimethylation means less compaction, so more of the genome is available for transcribing into working proteins.
"The team showed that if they deactivated the enzymes that add the methyl groups onto chromosomes, it causes out-of-place expression of cell-inappropriate genes leading to the eventual death of tissue. For example, they found that genes that are not normally "on" in liver cells are activated, which led to cell death and ultimately inadequate liver function."
Comment: As in the last entry we can see how controls are used, but still do not understand how the primary controller works.
Complete thread:
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- Genome complexity -
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2018-08-29, 20:04
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2018-09-20, 23:39
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- Genome complexity: HOX genes appeared early in evolution -
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- Genome complexity: 3-D DNA contortions ad complexity -
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- Genome complexity: controlling DNA in the cell -
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2018-11-04, 19:52
- Genome complexity: controlling DNA in the cell -
dhw,
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- Genome complexity: controlling DNA in the cell -
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2018-11-05, 20:20
- Genome complexity: controlling DNA in the cell -
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- Genome complexity: controlling DNA in the cell -
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2018-11-06, 14:50
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-07, 12:17
- Genome complexity: controlling DNA in the cell -
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2018-11-07, 18:43
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-08, 11:41
- Genome complexity: controlling DNA in the cell -
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2018-11-08, 18:20
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-09, 12:39
- Genome complexity: controlling DNA in the cell -
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2018-11-09, 15:25
- Genome complexity: DNA 3-D importance -
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2018-11-09, 23:49
- Genome complexity: DNA 3-D importance in replication -
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2019-01-01, 18:03
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-02, 12:09
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-02, 15:09
- Genome complexity: DNA 3-D importance in replication -
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2019-01-03, 10:10
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-03, 19:03
- Genome complexity: DNA tiny part of the controls -
David Turell,
2019-01-03, 19:35
- Genome complexity: control of DNA in embryology - David Turell, 2019-01-03, 23:07
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-04, 13:22
- Genome complexity: DNA 3-D importance in replication -
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2019-01-04, 15:35
- Genome complexity: DNA 3-D importance in replication -
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2019-01-05, 12:40
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-05, 15:03
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-06, 10:39
- Genome complexity: DNA 3-D importance in replication - David Turell, 2019-01-06, 15:50
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-06, 10:39
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-05, 15:03
- Genome complexity: DNA 3-D importance in replication -
dhw,
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- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-04, 15:35
- Genome complexity: DNA tiny part of the controls -
David Turell,
2019-01-03, 19:35
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-03, 19:03
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-03, 10:10
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-02, 15:09
- Genome complexity: chromatin makes DNA 3-D setup -
David Turell,
2020-01-10, 21:37
- Genome complexity: how so few genes make us so complex -
David Turell,
2020-01-15, 19:40
- Genome complexity:cells control degree of gene expression -
David Turell,
2020-01-16, 20:35
- Genome complexity: more about transposons role -
David Turell,
2021-02-22, 19:57
- Genome complexity: more about transposons role -
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2021-05-12, 20:48
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- Genome complexity: more about transposons role -
David Turell,
2021-05-12, 20:48
- Genome complexity: more about transposons role -
David Turell,
2021-02-22, 19:57
- Genome complexity:cells control degree of gene expression -
David Turell,
2020-01-16, 20:35
- Genome complexity: how so few genes make us so complex -
David Turell,
2020-01-15, 19:40
- Genome complexity: DNA 3-D importance in replication -
dhw,
2019-01-02, 12:09
- Genome complexity: DNA 3-D importance in replication -
David Turell,
2019-01-01, 18:03
- Genome complexity: DNA 3-D importance -
David Turell,
2018-11-09, 23:49
- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-09, 15:25
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-09, 12:39
- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-08, 18:20
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-08, 11:41
- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-07, 18:43
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-07, 12:17
- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-06, 14:50
- Genome complexity: controlling DNA in the cell -
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2018-11-06, 08:33
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2023-01-25, 16:57
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- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-05, 20:20
- Genome complexity: controlling DNA in the cell -
dhw,
2018-11-05, 10:03
- Genome complexity: controlling DNA in the cell -
David Turell,
2018-11-04, 19:52
- Genome complexity: automatic mechanism to kill early cancer -
David Turell,
2018-11-01, 23:42
- Genome complexity: genes control different stress responses -
David Turell,
2018-10-03, 18:43
- Genome complexity: protecting DNA integrity -
David Turell,
2018-10-03, 15:43
- Genome complexity: HOX genes appeared early in evolution -
Balance_Maintained,
2018-09-27, 20:10
- Genome complexity: HOX genes appeared early in evolution -
David Turell,
2018-09-27, 19:48
- Genome complexity: genes and what they control -
Balance_Maintained,
2018-09-21, 04:35
- Genome complexity: genes and what they control -
David Turell,
2018-09-20, 23:39
- Genome complexity: 3 types of bees from one DNA -
David Turell,
2018-09-12, 15:11
- Genome complexity: DNA repair mechanisms -
David Turell,
2018-09-02, 18:20
- Genome complexity:4-D DNA neighborhood controls -
David Turell,
2017-10-06, 22:04
- Genome complexity:3-D DNA neighborhood controls -
David Turell,
2017-09-29, 18:59
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David Turell,
2017-09-08, 14:06
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David Turell,
2017-09-07, 13:50
- Genome complexity: 3-D DNA packing -
dhw,
2017-09-07, 10:57
- Genome complexity: 3-D DNA packing -
David Turell,
2017-09-07, 05:35
- Genome complexity: origins of DNA folding -
David Turell,
2017-08-11, 00:23
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David Turell,
2017-08-03, 18:04
- Genome complexity: a new RNA, circular -
David Turell,
2017-08-01, 18:35
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David Turell,
2013-03-04, 18:12
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David Turell,
2013-02-27, 18:30
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David Turell,
2013-02-21, 15:32
- Genome complexity: Helicase speed -
David Turell,
2013-02-21, 05:18
- Genome complexity; gene expression -
David Turell,
2013-02-18, 15:58
- Genome complexity; epigenetics -
dhw,
2013-02-14, 15:09
- Genome complexity; epigenetics -
David Turell,
2013-02-12, 21:09
- Genome complexity; new study techniques -
David Turell,
2013-02-08, 15:46
- Genome complexity; chromosome protection -
David Turell,
2013-02-07, 15:24
- Genome complexity; garbage removal -
David Turell,
2013-02-07, 14:48
- Genome complexity; epigenetic gene expression -
David Turell,
2013-02-04, 18:26
- Genome complexity; gene expression -
David Turell,
2013-02-04, 15:54
- Genome complexity; Embryology -
David Turell,
2013-01-29, 15:37
- Genome complexity; lncRNA -
David Turell,
2013-04-05, 18:34
- Genome complexity; lncRNA -
David Turell,
2013-04-25, 16:11
- Genome complexity; lncRNA - David Turell, 2013-07-10, 02:51
- Genome complexity; lncRNA -
David Turell,
2013-04-25, 16:11
- Genome complexity; Transcription factors -
David Turell,
2013-01-28, 15:57
- Genome complexity; lncRNA -
David Turell,
2013-01-25, 14:41
- Genome complexity; 4 stranded DNA -
David Turell,
2013-01-22, 21:00
- Genome complexity; another code -
David Turell,
2013-01-21, 14:53
- Genome complexity;timing copies -
David Turell,
2012-12-29, 15:19
- Genome complexity; quick DNA repair -
David Turell,
2012-12-14, 01:09
- Genome complexity; another layer -
David Turell,
2012-12-11, 18:39
- Genome complexity; another layer -
David Turell,
2012-12-11, 16:11
- Genome complexity -
David Turell,
2012-12-09, 15:04
- Genome complexity -
hyjyljyj,
2012-12-09, 13:57
- Genome complexity -
David Turell,
2012-11-21, 15:02