Cancer incidence and deaths in the United States were projected for the most common cancer types for the years 2020 and 2030 based on changing demographics and the average annual percentage changes in incidence and death rates. Breast, prostate, and lung cancers will remain the top cancer diagnoses throughout this time, but thyroid cancer will replace colorectal cancer as the fourth leading cancer diagnosis by 2030, and melanoma and uterine cancer will become the fifth and sixth most common cancers, respectively. Lung cancer is projected to remain the top cancer killer throughout this time period. However, pancreas and liver cancers are projected to surpass breast, prostate, and colorectal cancers to become the second and third leading causes of cancer-related death by 2030, respectively. Advances in screening, prevention, and treatment can change cancer incidence and/or death rates, but it will require a concerted effort by the research and healthcare communities now to effect a substantial change for the future. Cancer Res; 1–9. ©2014 AACR.
I Got All My Sisters With Me
Jane E. Herman, a BRCA2 mutation carrier volunteers as an Outreach Coordinator for FORCE: Facing our Risk of Cancer Empowered in New York City and blogs regularly about her BRCA journey and other slices of her life at JanetheWriter Writes…
Looking forward to the 8th Annual Joining FORCEs Conference in Philadelphia, June 12-14, Jane reflects on her time in college and a recent patient education and support conference:
A generation ago at this season, I attended a number of sorority semi-formals at my alma mater. At the time, the school [had an active Greek life on campus]. Invariably, each of these spring events–no matter the sorority–closed with the DJ “spinning” Sister Sledge’s “We Are Family” as all the young women gathered on the dance floor, linking arms and singing along as a gaggle of young men watched from the sidelines.
I was reminded of this scene last Wednesday evening at FORCE‘s NYC Spring Celebration 2014: Live Life Empowered.
The organization’s inaugural benefit event featured two of my BRCA sisters, Stacey Sager and Kara DiGuardio in a joyful celebration of the organization that is the unequivocal voice of the hereditary breast and ovarian cancer (HBOC) community.
In addition to providing resources, education, and support to individuals and families at risk for hereditary cancer, FORCE advocates on our behalf within the medical, pharmaceutical, and policy arenas.
This helps to ensure that we don’t encounter discrimination, insurance snafus, or other obstacles as we–individually and collectively–deal with the inevitable roller coaster ride that comes along with our attempts to ensure, to the extent possible, that our genetics don’t dictate our destiny.
Sialic Acids Sweeten a Tumor’s Life
Over four decades ago, specific tumor characteristics were ascribed to the increased expression of sialic acid sugars on the surface of cancer cells, and this led to the definition of sialic acids as potential therapeutic targets. Recent advances in glycobiology and cancer research have defined the key processes underlying aberrant expression of sialic acids in cancer, and its consequences, more precisely. These consequences include effects on tumor growth, escape from apoptosis, metastasis formation, and resistance to therapy. Collectively, these novel insights provide further rationale for the design and development of therapeutic approaches that interfere with excessively high expression of sialic acids in cancer cells. Strategies to target aberrant sialylation in cancer, however, have evolved comparatively slowly. Here, we review recent findings that emphasize the detrimental effects of hypersialylation on multiple aspects of tumor growth and behavior. We also discuss novel therapeutic strategies. Cancer Res; 74(12); 1–6. ©2014 AACR.
Cell Polarity Protein Scribble and Breast Cancer
Scribble (SCRIB) localizes to cell–cell junctions and regulates establishment of epithelial cell polarity. Loss of expression of SCRIB functions as a tumor suppressor in Drosophila and mammals; conversely, overexpression of SCRIB promotes epithelial differentiation in mammals. Here, we report that SCRIB is frequently amplified, mRNA overexpressed, and protein is mislocalized from cell–cell junctions in human breast cancers. High levels of SCRIB mRNA are associated with poor clinical prognosis, identifying an unexpected role for SCRIB in breast cancer. We find that transgenic mice expressing a SCRIB mutant [Pro 305 to Leu (P305L)] that fails to localize to cell–cell junctions, under the control of the mouse mammary tumor virus long terminal repeat promoter, develop multifocal hyperplasia that progresses to highly pleomorphic and poorly differentiated tumors with basal characteristics. SCRIB interacts with phosphatase and tensin homolog (PTEN) and the expression of P305L, but not wild-type SCRIB, promotes an increase in PTEN levels in the cytosol. Overexpression of P305L, but not wild-type SCRIB, activates the Akt/mTOR/S6K signaling pathway. Human breast tumors overexpressing SCRIB have high levels of S6K but do not harbor mutations in PTEN or PIK3CA, identifying SCRIB amplification as a mechanism of activating PI3K signaling in tumors without mutations in PIK3CA or PTEN. Thus, we demonstrate that high levels of mislocalized SCRIB functions as a neomorph to promote mammary tumorigenesis by affecting subcellular localization of PTEN and activating an Akt/mTOR/S6kinase signaling pathway. Cancer Res; 74(11); 1–15. ©2014 AACR.
AS101 Converts Resistant to Drug-Sensitive AML Cells
Interaction between the integrin VLA-4 on acute myelogenous leukemia (AML) cells with stromal fibronectin is a decisive factor in chemotherapeutic resistance. In this study, we provide a rationale for a drug repositioning strategy to blunt integrin activation in AML cells and restore their sensitivity to chemotherapy. Specifically, we demonstrate that the nontoxic tellurium compound AS101, currently being evaluated in clinical trials, can abrogate the acquired resistance of AML. Mechanistic investigations revealed that AS101 caused redox inactivation of adjacent thiols in the exofacial domain of VLA-4 after its ligation to stromal fibronectin. This effect triggered cytoskeletal conformational changes that decreased PI3K/Akt/Bcl2 signaling, an obligatory step in chemosensitization by AS101. In a mouse xenograft of AML derived from patient leukemic cells with high VLA-4 expression and activity, we demonstrated that AS101 abrogated drug resistance and prolonged survival in mice receiving chemotherapy. Decreased integrin activity was confirmed on AML cells in vivo. The chemosensitizing activity of AS101 persisted in hosts with defective adaptive and innate immunity, consistent with evidence that integrin deactivation was not mediated by heightening immune attack. Our findings provide a mechanistic rationale to reposition the experimental clinical agent, AS101, to degrade VLA-4–mediated chemoresistance and improve clinical responses in patients with AML. Cancer Res; 74(11); 1–12. ©2014 AACR.


