The protein encoded by this gene was identified as an interacting protein that binds specifically to MAP kinase kinaseMAP2K1/MEK1 and to MAP kinaseMAPK2/ERK1. This protein enhances the activation of MAPK2, and thus is thought to function as an adaptor to enhance the efficiency of the MAP kinase cascade.[3]
↑ 1.01.1Schaeffer HJ, Catling AD, Eblen ST, Collier LS, Krauss A, Weber MJ (Oct 1998). "MP1: a MEK binding partner that enhances enzymatic activation of the MAP kinase cascade". Science. 281 (5383): 1668–71. doi:10.1126/science.281.5383.1668. PMID9733512.
↑Lunin VV, Munger C, Wagner J, Ye Z, Cygler M, Sacher M (May 2004). "The structure of the MAPK scaffold, MP1, bound to its partner, p14. A complex with a critical role in endosomal map kinase signaling". J. Biol. Chem. 279 (22): 23422–30. doi:10.1074/jbc.M401648200. PMID15016825.
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Okabe S, Tauchi T, Morita H, Ohashi H, Yoshimura A, Ohyashiki K (1999). "Thrombopoietin induces an SH2-containing protein, CIS1, which binds to Mpl: involvement of the ubiquitin proteosome pathway". Exp. Hematol. 27 (10): 1542–7. doi:10.1016/S0301-472X(99)00094-6. PMID10517496.
Teis D, Wunderlich W, Huber LA (2002). "Localization of the MP1-MAPK scaffold complex to endosomes is mediated by p14 and required for signal transduction". Dev. Cell. 3 (6): 803–14. doi:10.1016/S1534-5807(02)00364-7. PMID12479806.
Channavajhala PL, Wu L, Cuozzo JW, Hall JP, Liu W, Lin LL, Zhang Y (2003). "Identification of a novel human kinase supporter of Ras (hKSR-2) that functions as a negative regulator of Cot (Tpl2) signaling". J. Biol. Chem. 278 (47): 47089–97. doi:10.1074/jbc.M306002200. PMID12975377.