Search bioRxivSearch

Biology subjects

Stephens, R.

Publications and source records attributed to Stephens, R..

3 recordsLinked to original sources

RAS Internal Tandem Duplication Disrupts GAP-binding to Activate Oncogenic Signaling

Molecular testing of oncogenic RAS mutations in colorectal cancer (CRC) have led to increased identification of mutations in patients with CRC. NRAS-mutated CRC has not been well characterized because it is less common (<6%) than KRAS mutations. Here, we report a novel 10 amino acid internal tandem duplication (ITD) in NRAS, which disrupts the switch II domain, in a patient with widely disseminated CRC. Hotspot next generation sequencing of a brain metastasis identified the NRAS ITD and a TP53 missense mutation (p.P275F). Whole exome sequencing of the primary tumor and two metastatic lesions (lung and brain) confirmed that the NRAS ITD and TP53 mutation were conserved between the primary tumor and both metastatic tumors, and identified an additional pathogenic mutation in CSMD1 (a tumor suppressor gene). Structural biology and biochemical analyses demonstrated that the NRAS ITD prevented binding to GAP protein, leading to sustained RAS activation, increased interaction with RAF, and downstream MAPK activation. Additionally, we provide the first crystal structure of the RAS ITD. In conclusion, these studies indicate that the NRAS ITD was the probable primary driver mutation of this aggressive CRC. Identical or biologically similar ITDs in NRAS and KRAS may be rare drivers of CRC and other aggressive malignancies.

molecular biology

Increased Th1 bias in memory T cells corresponds with protection from reinfection in Plasmodium infection, and is regulated by T cell-intrinsic STAT3

Hybrid Th1/Tfh cells (IFN-{gamma}+IL-21+CXCR5+) predominate in response to persistent infections; however, molecular regulation of their function is poorly defined. In infection with Plasmodium spp, an IFN-{gamma}+ T helper-1 (Th1) response controls initial parasitemia, while antibody and IL-21+CXCR5+ T follicular helper (Tfh) function effect final clearance. Here, we found that CD4-intrinsic Bcl6, Blimp-1 and STAT3 all regulate T-bet expression, which controls IFN-{gamma} expression. While Bcl6 and Blimp-1 regulate the level of CXCR5, only T-bet and STAT3 affected the functional bias of the Th1/Tfh phenotype. Infected mice with STAT3-deficient T cells produced less antibody, and more IFN-{gamma}+IL-21-CXCR5lo T cells, significantly increasing protection from re-infection. Conversely, reduced Th1 bias in re-infected T-bet KO was reflected in prolonged secondary parasitemia. In summary, each feature of hybrid Th1/Tfh population in Plasmodium infection is uniquely regulated and the cytokine bias of memory T cells can be modified to enhance the effectiveness of the response.

immunology

Harnessing patient-specific response dynamics to optimize evolutionary therapies for metastatic clear cell renal cell carcinoma - Learning to adapt

Renal cell carcinoma (RCC) is one of the ten most common and lethal cancers in the United States. Tumor heterogeneity and development of resistance to treatment suggest that patient-specific evolutionary therapies may hold the key to better patients prognosis. Mathematical models are a powerful tool to help develop such strategies; however, they depend on reliable biomarker information. In this paper, we present a dynamic model of tumor-immune interactions, as well as the treatment effect on tumor cells and the tumor-immune environment. We hypothesize that the neutrophil-to-lymphocyte ratio (NLR) is a powerful biomarker that can be used to predict an individual patients response to treatment. Using randomly sampled virtual patients, we show that the model recapitulates patient outcomes from clinical trials in RCC. Finally, we use in silico patient data to recreate realistic tumor behaviors and simulate various treatment strategies to find optimal treatments for each virtual patient.

cancer biology