Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Supplementary Figure 6 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability

View through CrossRef
<p>Supplementary Figure S6: Western blots and for 28°C IP and CETSA (A) H1299 cells stably expressing p53 Y220C or p53 R273C were transferred from 37°C to 28°C and p21/MDM2 levels were monitored by western blot at the indicated time points. (B) U2OS cells stably expressing p53 Y220C or parent were transferred to a 28°C incubator and p21/MDM2 levels were observed by western blot at the indicated time points. (C) Extracts from H1299 cells expressing p53 Y220C incubated at 37°C or 28°C for 24 hr were immunoprecipitated with the WT conformation antibody Pab1620. (D) CETSA western blot for p53 Y220C DMSO. (E) CETSA western blot for p53 Y220C treated with 100 μM KG13 for 1 hr. (F) CETSA western blot for p53 WT DMSO.</p>
American Association for Cancer Research (AACR)
Title: Supplementary Figure 6 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
Description:
<p>Supplementary Figure S6: Western blots and for 28°C IP and CETSA (A) H1299 cells stably expressing p53 Y220C or p53 R273C were transferred from 37°C to 28°C and p21/MDM2 levels were monitored by western blot at the indicated time points.
(B) U2OS cells stably expressing p53 Y220C or parent were transferred to a 28°C incubator and p21/MDM2 levels were observed by western blot at the indicated time points.
(C) Extracts from H1299 cells expressing p53 Y220C incubated at 37°C or 28°C for 24 hr were immunoprecipitated with the WT conformation antibody Pab1620.
(D) CETSA western blot for p53 Y220C DMSO.
(E) CETSA western blot for p53 Y220C treated with 100 μM KG13 for 1 hr.
(F) CETSA western blot for p53 WT DMSO.
</p>.

Related Results

Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract Cancer cases are on the rise globally requiring a deeper understanding of the disease and identification of novel therapeutic targets. Mutations in genes of...
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract Introduction: Mutant p53 drives several hallmarks of cancer through a gain-of-function oncogenic program. The oncogenicity of mutant p53 includes sustained ...
Supplementary Figure 3 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
Supplementary Figure 3 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
<p>Supplementary Figure S3: Example LC/MS spectra from carbazole and indole series (A) LC/MS spectra from p53 WT-CL or p53 Y220C-CL labeling with KG1. (B) LC/MS spectra from ...
Abstract B58: The role of mutant P53 in repetitive element regulation and the immune response in ovarian cancer
Abstract B58: The role of mutant P53 in repetitive element regulation and the immune response in ovarian cancer
Abstract While therapies that activate the host immune system have shown tremendous promise for a wide variety of solid tumors, less than 10% of ovarian cancer (OC) ...
Abstract 599: Id4 acts as a tumor suppressor by inducing apoptosis and senescence in p53-dependent manner
Abstract 599: Id4 acts as a tumor suppressor by inducing apoptosis and senescence in p53-dependent manner
Abstract The physiological mechanisms that can restore biological activity of mutant p53 is an area of high interest given that mutant p53 expression is observed in ...
Figure 3 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
Figure 3 from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
<p>Azaindole compounds stabilized p53 Y220C to WT levels. <b>A,</b> Chemical structures of the azaindole series. <b>B,</b> p53 Y220C-CL was fully labe...
Data from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
Data from A Small Molecule Reacts with the p53 Somatic Mutant Y220C to Rescue Wild-type Thermal Stability
<div>Abstract<p>The transcription factor and tumor suppressor protein p53 is the most frequently mutated and inactivated gene in cancer. Mutations in p53 result in dere...

Back to Top