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Details on Person Identification and characterization of PS-GAP as a novel regulator of caspase-activated PAK-2

Class:IdLiteratureReference:211685
_displayNameIdentification and characterization of PS-GAP as a novel regulator of caspase-activated PAK-2
_timestamp2008-02-08 00:41:43
author[Person:211645] Koeppel, MA
[Person:211646] McCarthy, CC
[Person:211683] Moertl, E
[Person:211629] Jakobi, R
created[InstanceEdit:211682] Matthews, L, 2008-02-08 00:41:29
journalJ Biol Chem
pages53653-64
pubMedIdentifier15471851
titleIdentification and characterization of PS-GAP as a novel regulator of caspase-activated PAK-2
volume279
year2004
(literatureReference)[Summation:211684] Following caspase mediated cleavage, PAK-2p34 translocates t...
[Summation:211688] Murine PS-GAP interacts specifically with caspase-activated ...
[Summation:211706] PS-GAP (RGH10) interacts specifically with caspase-activated...
[Summation:211773] When in association with PS-GAP, PAK-2p34 is translocated to...
[Reaction:211704] PS-GAP interacts with caspase-activated PAK-2p34 [Mus musculus]
[Reaction:211716] Rho GTPase-activating protein 10 (RHG10) interacts with caspase-activated PAK-2p34 [Homo sapiens]
[Reaction:211725] Interaction of PAK-2p34 with PS-GAP results in accumulation of PAK-2p34 in the perinuclear region [Mus musculus]
[Pathway:211728] Regulation of PAK-2p34 activity by PS-GAP/RHG10 [Homo sapiens]
[Reaction:211731] Interaction of PAK-2p34 with RGH10/ PS-GAP results in accumulation of PAK-2p34 in the perinuclear region [Homo sapiens]
[Pathway:211736] Stimulation of the cell death response by PAK-2p34 [Homo sapiens]
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