SummaryThe transformation of cells generally involves multiple genetic lesions that undermine control of both cell death and proliferation. We now report that κB-Ras proteins act as regulators of NF-κB and Ral pathways, which control inflammation/cell death and proliferation, respectively. Cells lacking κB-Ras therefore not only show increased NF-κB activity, which results in increased expression of inflammatory mediators, but also exhibit elevated Ral activity, which leads to enhanced anchorage-independent proliferation (AIP). κB-Ras deficiency consequently leads to significantly increased tumor growth that can be dampened by inhibiting either Ral or NF-κB pathways, revealing the unique tumor-suppressive potential of κB-Ras proteins. Remar...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
AbstractBackground: The small GTPase R-Ras displays a less potent transforming activity than the clo...
SummaryThe transformation of cells generally involves multiple genetic lesions that undermine contro...
The transformation of cells generally involves multiple genetic lesions that undermine control of bo...
SummaryRalGEFs were recently shown to be critical for Ras-mediated transformed and tumorigenic growt...
SummaryBackgroundThe Ral guanine nucleotide-exchange factors (RalGEFs) serve as key effectors for Ra...
The genetic alterations in cancer cells are tightly linked to signaling pathway dysregulation. Ras i...
Ras interacts with many downstream effectors that regulate complex cytoplasmic signaling networks. I...
BACKGROUND: The Ral guanine nucleotide-exchange factors (RalGEFs) serve as key effectors for Ras onc...
SummaryTo investigate the role of signaling by the small GTPase Ral, we have generated mice deficien...
The spectrum of tumors associated with oncogenic Ras in humans often differs from those in mice eith...
Extensive data indicate that the transcription factor NFκB is activated by signals downstream of onc...
<p>The Ras family of proteins, composed of H, N, and KRas, function as small GTPases that act as "mo...
Abstract Although the critical role of the small GTPases Ras and Ral in oncogenesis has been well do...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
AbstractBackground: The small GTPase R-Ras displays a less potent transforming activity than the clo...
SummaryThe transformation of cells generally involves multiple genetic lesions that undermine contro...
The transformation of cells generally involves multiple genetic lesions that undermine control of bo...
SummaryRalGEFs were recently shown to be critical for Ras-mediated transformed and tumorigenic growt...
SummaryBackgroundThe Ral guanine nucleotide-exchange factors (RalGEFs) serve as key effectors for Ra...
The genetic alterations in cancer cells are tightly linked to signaling pathway dysregulation. Ras i...
Ras interacts with many downstream effectors that regulate complex cytoplasmic signaling networks. I...
BACKGROUND: The Ral guanine nucleotide-exchange factors (RalGEFs) serve as key effectors for Ras onc...
SummaryTo investigate the role of signaling by the small GTPase Ral, we have generated mice deficien...
The spectrum of tumors associated with oncogenic Ras in humans often differs from those in mice eith...
Extensive data indicate that the transcription factor NFκB is activated by signals downstream of onc...
<p>The Ras family of proteins, composed of H, N, and KRas, function as small GTPases that act as "mo...
Abstract Although the critical role of the small GTPases Ras and Ral in oncogenesis has been well do...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
Since their discovery in 1986, Ral (Ras-like) GTPases have emerged as critical regulators of diverse...
AbstractBackground: The small GTPase R-Ras displays a less potent transforming activity than the clo...