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Details on Person p-MAPKAPK3 phosphorylates BMI1

Class:IdReaction:3229102
_displayNamep-MAPKAPK3 phosphorylates BMI1
_doReleaseTRUE
_timestamp2013-09-05 11:40:43
authored[InstanceEdit:3900006] Orlic-Milacic, M, 2013-07-15
catalystActivity[CatalystActivity:3772131] protein serine/threonine kinase activity of phospho-MAPK p38:p-MAPKAPK3 [nucleoplasm]
compartment[Compartment:7660] nucleoplasm
created[InstanceEdit:3229109] Orlic-Milacic, M, 2013-03-26
edited[InstanceEdit:3901124] D'Eustachio, P, 2013-07-15
[InstanceEdit:4542306] Matthews, L, 2013-07-15
input[Complex:3229098] CDKN2A Gene:H3K27Me3-Nucleosome:PRC1.4 [nucleoplasm] [Homo sapiens]
[SimpleEntity:29358] ATP [nucleoplasm]
isChimericFALSE
literatureReference[LiteratureReference:3229104] MAPKAP kinase 3pK phosphorylates and regulates chromatin association of the polycomb group protein Bmi1
modified[InstanceEdit:3769466] Orlic-Milacic, M, 2013-06-21
[InstanceEdit:3769471] Orlic-Milacic, M, 2013-06-21
[InstanceEdit:3772133] Orlic-Milacic, M, 2013-06-24
[InstanceEdit:4415004] Orlic-Milacic, M, 2013-08-23
[InstanceEdit:4416362] Orlic-Milacic, M, 2013-08-26
[InstanceEdit:4420304] Orlic-Milacic, M, 2013-09-03
[InstanceEdit:4420306] Orlic-Milacic, M, 2013-09-03
[InstanceEdit:4542310] Orlic-Milacic, M, 2013-09-04
[InstanceEdit:9830342] Matthews, Lisa, 2023-03-08
namep-MAPKAPK3 phosphorylates BMI1
output[Complex:3222570] CDKN2A Gene:H3K27Me3-Nucleosome [nucleoplasm] [Homo sapiens]
[Complex:3229114] p-PRC1.4 complex [nucleoplasm] [Homo sapiens]
[SimpleEntity:113582] ADP [nucleoplasm]
precedingEvent
releaseDate2013-09-18
reviewed[InstanceEdit:4542303] Samarajiwa, Shamith, 2013-09-03
reviewStatus[ReviewStatus:9821382] five stars
species[Species:48887] Homo sapiens
stableIdentifier[StableIdentifier:4545071] R-HSA-3229102.2
summation[Summation:3772129] In response to stress-activated p38 signaling, MAPKAPK3 phos...
(hasEvent)[Pathway:2559580] Oxidative Stress Induced Senescence [Homo sapiens]
(precedingEvent)[BlackBoxEvent:3229138] MAPKAPK2/3-mediated removal of PRC1.4 complex stimulates p14ARF transcription [Homo sapiens]
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