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Effective inhibition of melanoma by BI-69A11 is mediated by dual targeting of the AKT and NF-?B pathways.


ABSTRACT: In melanoma, the activation of pro-survival signaling pathways, such as the AKT and NF-?B pathways, is critical for tumor growth. We have recently reported that the AKT inhibitor BI-69A11 causes efficient inhibition of melanoma growth. Here, we show that in addition to its AKT inhibitory activity, BI-69A11 also targets the NF-?B pathway. In melanoma cell lines, BI-69A11 inhibited TNF-?-stimulated IKK?/? and I?B phosphorylation as well as NF-?B reporter gene expression. Furthermore, the effective inhibition of melanoma growth by BI-69A11 was attenuated upon NF-?B activation. Mechanistically, reduced NF-?B signaling by BI-69-A11 is mediated by the inhibition of sphingosine kinase 1, identified in a screen of 315 kinases. Significantly, we demonstrate that BI-69A11 is well tolerated and orally active against UACC 903 and SW1 melanoma xenografts. Our results demonstrate that BI-69A11 inhibits both the AKT and the NF-?B pathways and that the dual targeting of these pathways may be efficacious as a therapeutic strategy in melanoma.

SUBMITTER: Feng Y 

PROVIDER: S-EPMC3158838 | biostudies-literature | 2011 Aug

REPOSITORIES: biostudies-literature

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Effective inhibition of melanoma by BI-69A11 is mediated by dual targeting of the AKT and NF-κB pathways.

Feng Yongmei Y   Barile Elisa E   De Surya K SK   Stebbins John L JL   Cortez Apple A   Aza-Blanc Pedro P   Villanueva Jessie J   Heryln Meenhard M   Krajewski Stan S   Pellecchia Maurizio M   Ronai Ze'ev A ZA   Chiang Gary G GG  

Pigment cell & melanoma research 20110606 4


In melanoma, the activation of pro-survival signaling pathways, such as the AKT and NF-κB pathways, is critical for tumor growth. We have recently reported that the AKT inhibitor BI-69A11 causes efficient inhibition of melanoma growth. Here, we show that in addition to its AKT inhibitory activity, BI-69A11 also targets the NF-κB pathway. In melanoma cell lines, BI-69A11 inhibited TNF-α-stimulated IKKα/β and IκB phosphorylation as well as NF-κB reporter gene expression. Furthermore, the effective  ...[more]

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