Crystal structure of non-phosphorylated MAP2K6 in a putative auto-inhibition state

Mitogen-activated protein kinase kinase 6 (MAP2K6) plays a crucial role in the p38 MAP kinase signal cascade that regulates various stress-induced responses and is associated with pathological conditions. The crystal structure of human non-phosphorylated MAP2K6 (npMAP2K6) complexed with an ATP analo...

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Veröffentlicht in:Journal of biochemistry (Tokyo) 2012-05, Vol.151 (5), p.541-549
Hauptverfasser: Matsumoto, Takashi, Kinoshita, Takayoshi, Matsuzaka, Hitomi, Nakai, Ryoko, Kirii, Yasuyuki, Yokota, Koichi, Tada, Toshiji
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Sprache:eng
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Zusammenfassung:Mitogen-activated protein kinase kinase 6 (MAP2K6) plays a crucial role in the p38 MAP kinase signal cascade that regulates various stress-induced responses and is associated with pathological conditions. The crystal structure of human non-phosphorylated MAP2K6 (npMAP2K6) complexed with an ATP analogue was determined at 2.6 Å resolution and represents an auto-inhibition state of MAP2K6. Three characteristics of short α-helices configured in the activation loop region, termed activation helices (AH1, AH2 and AH3), are important in controlling the auto-inhibition mechanism. AH1 displaces the αC-helix, a component essential for forming the active configuration, away from the active site. AH1 and AH2 were found to enclose the γ-phosphate, the leaving group of ATP. A comparison with the related enzymes, MAP2K1 and MAP2K4 reveals that MAP2K6 has the unique auto-inhibition mechanism mediated by the three activation helices.
ISSN:0021-924X
1756-2651
DOI:10.1093/jb/mvs023