Protein phosphatase 6 subunit with conserved Sit4-associated protein domain targets IkappaBepsilon
about
ERK8 is a negative regulator of O-GalNAc glycosylation and cell migrationCytokine activation of p38 mitogen-activated protein kinase and apoptosis is opposed by alpha-4 targeting of protein phosphatase 2A for site-specific dephosphorylation of MEK3.Protein interaction network of the mammalian Hippo pathway reveals mechanisms of kinase-phosphatase interactionsProtein phosphatase 6 down-regulates TAK1 kinase activation in the IL-1 signaling pathwayProtein phosphatase 6 regulates mitotic spindle formation by controlling the T-loop phosphorylation state of Aurora A bound to its activator TPX2NF-κB, the first quarter-century: remarkable progress and outstanding questionsThe biogenesis of active protein phosphatase 2A holoenzymes: a tightly regulated process creating phosphatase specificityWhat goes on must come off: phosphatases gate-crash the DNA damage responseDistinct subsets of Sit4 holophosphatases are required for inhibition of Saccharomyces cerevisiae growth by rapamycin and zymocinCHK2-BRCA1 tumor-suppressor axis restrains oncogenic Aurora-A kinase to ensure proper mitotic microtubule assembly.Quantitative phosphoproteomics reveals new roles for the protein phosphatase PP6 in mitotic cellsActivation of DNA-PK by ionizing radiation is mediated by protein phosphatase 6.Protein Phosphatase Methyl-Esterase PME-1 Protects Protein Phosphatase 2A from Ubiquitin/Proteasome DegradationThe E3 ubiquitin ligase ZNRF2 is a substrate of mTORC1 and regulates its activation by amino acidsProtein Ser/Thr phosphatase-6 is required for maintenance of E-cadherin at adherens junctions.PP6 regulatory subunit R1 is bidentate anchor for targeting protein phosphatase-6 to DNA-dependent protein kinaseTransforming growth factor beta-activated kinase 1 (TAK1) kinase adaptor, TAK1-binding protein 2, plays dual roles in TAK1 signaling by recruiting both an activator and an inhibitor of TAK1 kinase in tumor necrosis factor signaling pathway.Mapping of protein phosphatase-6 association with its SAPS domain regulatory subunit using a model of helical repeats.Human protein phosphatase PP6 regulatory subunits provide Sit4-dependent and rapamycin-sensitive sap function in Saccharomyces cerevisiae.TAB4 stimulates TAK1-TAB1 phosphorylation and binds polyubiquitin to direct signaling to NF-kappaBProtein phosphatase 2A is a negative regulator of transforming growth factor-beta1-induced TAK1 activation in mesangial cellsMaternal phosphatase inhibitor-2 is required for proper chromosome segregation and mitotic synchrony during Drosophila embryogenesis.Protein Ser/Thr phosphatases--the ugly ducklings of cell signalling.Regulation of cortical contractility and spindle positioning by the protein phosphatase 6 PPH-6 in one-cell stage C. elegans embryos.Explorative data analysis of MCL reveals gene expression networks implicated in survival and prognosis supported by explorative CGH analysis.A PP6-type phosphatase holoenzyme directly regulates PIN phosphorylation and auxin efflux in Arabidopsis.Protein phosphatase 6 interacts with the DNA-dependent protein kinase catalytic subunit and dephosphorylates gamma-H2AX.Evidence toward a dual phosphatase mechanism that restricts Aurora A (Thr-295) phosphorylation during the early embryonic cell cycle.Functions of protein phosphatase-6 in NF-κB signaling and in lymphocytes.Identification of hepatic microvascular adhesion-related genes of human colon cancer cells using random homozygous gene perturbation.Protein phosphatase PP6 is required for homology-directed repair of DNA double-strand breaksInhibitor of kappa B epsilon (IκBε) is a non-redundant regulator of c-Rel-dependent gene expression in murine T and B cells.Adaptation of HepG2 cells to a steady-state reduction in the content of protein phosphatase 6 (PP6) catalytic subunitProtein Phosphatase 6 Protects Prophase I-Arrested Oocytes by Safeguarding Genomic IntegrityProteomic and functional genomic landscape of receptor tyrosine kinase and ras to extracellular signal-regulated kinase signaling.p97/VCP promotes Cullin-RING-ubiquitin-ligase/proteasome-dependent degradation of IκBα and the preceding liberation of RelA from ubiquitinated IκBα.High risk population isolate reveals low frequency variants predisposing to intracranial aneurysms.The phosphoprotein phosphatase family of Ser/Thr phosphatases as principal targets of naturally occurring toxins.Protein phosphatases PP2A, PP4 and PP6: mediators and regulators in development and responses to environmental cues.Regulation of Protein Interactions by Mps One Binder (MOB1) Phosphorylation.
P2860
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P248
Q21128777-C03B5C09-C951-4A58-9393-72B2D23AB31EQ24302542-40BC5D3A-CA3A-4FCF-865D-F29DC6957463Q24307997-ED41AB08-B326-420B-A501-0017BF0AE200Q24310895-5DD669EA-545D-4BED-A0B4-018C38278D20Q24321572-8A3DCE53-0212-41D4-A477-0ECF23837E28Q26822516-2D315CD9-54F1-4887-9914-3704A5773767Q26824764-FF331603-1FE6-4EB1-9DD6-C472CF96BEA2Q26827821-BB99FA83-3BA2-4EBC-A352-D8EE45C24842Q27935021-FD9D517D-57B2-4AF7-9BE9-4CFADD5E6212Q28387717-6C73A842-1C22-486C-B7E8-C0A4DC6C64B2Q28468277-378AD7AA-A28A-4568-9EDE-F1DFD33643ECQ28474718-64D0A017-B8D0-46B4-B564-B39EBD64236FQ28551570-3C2CA1E1-D7D9-4519-9180-8FBDA1E908AEQ28829525-00A51C79-C885-4AE4-9B0C-D1C18FEE138BQ30415827-F043F19B-7EC5-44D5-9330-C6E3A8A231F7Q30421888-70CD0EC4-21FF-4431-B6FD-276276EA7BA1Q30433440-F91436B7-F3E0-49FF-8478-CD2E10F87729Q30438153-FF2D5A4F-4A6B-42EF-AC85-CF70D964DBD3Q30439144-946CA2ED-EDCF-4170-9A0A-19005C7C6FE2Q30439229-5CE49BF4-0B54-475F-A90A-6E11BD78BDC5Q30439818-FD530230-9BFD-4D13-B09D-8A244693E935Q30440952-5CDE6C1D-E5BF-4386-889A-73F958D1797AQ30455386-4C4E46CF-DA4D-4A93-A772-8218F9BDB09AQ30492571-73D027F5-8C1A-4412-B6F0-AC91193E5C38Q31152796-1EA65785-3A8D-4A4B-99D2-A9F83D68338BQ33353781-CFF869C8-B7BF-412C-B1C2-9675A947501BQ33705076-0695E36E-6996-49D5-B782-7C0F1FCCDF12Q33792897-38AB9ADF-7511-4E53-ABF3-89CB22A81E68Q33805622-06FECE9B-A32D-461A-A287-DF101F796B2CQ34694964-CBC36168-FB43-4B5F-B9C1-22E98B14491DQ35050820-33B05B12-E435-44D8-A2B2-657A19EE0A7AQ35198965-A82A48C2-17C0-4DD8-9F8E-B273D2D69D85Q35798066-06A51C8B-51C0-4326-A08B-9E40A29C6A29Q36215961-DD181236-04EC-4EDC-926F-1A2F28C104C0Q36226039-272A80EA-DF6D-4FE0-8835-A2CF2D76C426Q36476873-7C4C8B2A-9EC2-4A14-A873-A2E1FD815214Q37533975-3F772CCB-A3B8-4E29-8415-2FF472400C20Q37834642-4E5BB0F0-88DF-489C-A10A-9166859C9C01Q38210375-947BECEA-566E-4D8D-83A7-E105CC7F00E4Q38371689-9FFB608E-73F6-449C-ABF8-BE47F7A8DD7E
P2860
Protein phosphatase 6 subunit with conserved Sit4-associated protein domain targets IkappaBepsilon
description
2006 nî lūn-bûn
@nan
2006 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
name
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@ast
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en-gb
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@nl
type
label
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@ast
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en-gb
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@nl
prefLabel
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@ast
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en-gb
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@nl
P2860
P921
P3181
P356
P1476
Protein phosphatase 6 subunit ...... domain targets IkappaBepsilon
@en
P2093
David L Brautigan
P2860
P304
P3181
P356
10.1074/JBC.M601772200
P407
P577
2006-08-11T00:00:00Z