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Full-Text Articles in Medicine and Health Sciences

A Screen Of Fda-Approved Drugs Identifies Inhibitors Of Protein Tyrosine Phosphatase 4a3 (Ptp4a3 Or Prl-3), Dylan R. Rivas, Mark Vincent C. Dela Cerna, Caroline N. Smith, Shilpa Sampathi, Blaine G. Patty, Donghan Lee, Jessica S. Blackburn May 2021

A Screen Of Fda-Approved Drugs Identifies Inhibitors Of Protein Tyrosine Phosphatase 4a3 (Ptp4a3 Or Prl-3), Dylan R. Rivas, Mark Vincent C. Dela Cerna, Caroline N. Smith, Shilpa Sampathi, Blaine G. Patty, Donghan Lee, Jessica S. Blackburn

Molecular and Cellular Biochemistry Faculty Publications

Protein tyrosine phosphatase 4A3 (PTP4A3 or PRL-3) is highly expressed in a variety of cancers, where it promotes tumor cell migration and metastasis leading to poor prognosis. Despite its clinical significance, small molecule inhibitors of PRL-3 are lacking. Here, we screened 1443 FDA-approved drugs for their ability to inhibit the activity of the PRL phosphatase family. We identified five specific inhibitors for PRL-3 as well as one selective inhibitor of PRL-2. Additionally, we found nine drugs that broadly and significantly suppressed PRL activity. Two of these broad-spectrum PRL inhibitors, Salirasib and Candesartan, blocked PRL-3-induced migration in human embryonic kidney cells …


Itga2 Promotes Expression Of Acly And Ccnd1 In Enhancing Breast Cancer Stemness And Metastasis, Valery Adorno-Cruz, Andrew D. Hoffmann, Xia Liu, Nurmaa K. Dashzeveg, Rokana Taftaf, Brian Wray, Ruth A. Keri, Huiping Liu Feb 2020

Itga2 Promotes Expression Of Acly And Ccnd1 In Enhancing Breast Cancer Stemness And Metastasis, Valery Adorno-Cruz, Andrew D. Hoffmann, Xia Liu, Nurmaa K. Dashzeveg, Rokana Taftaf, Brian Wray, Ruth A. Keri, Huiping Liu

Toxicology and Cancer Biology Faculty Publications

Cancer metastasis is largely incurable and accounts for 90% of breast cancer deaths, especially for the aggressive basal-like or triple negative breast cancer (TNBC). Combining patient database analyses and functional studies, we examined the association of integrin family members with clinical outcomes as well as their connection with previously identified microRNA regulators of metastasis, such as miR-206 that inhibits stemness and metastasis of TNBC. Here we report that the integrin receptor CD49b-encoding ITGA2, a direct target of miR-206, promotes breast cancer stemness and metastasis. ITGA2 knockdown suppressed self-renewal related mammosphere formation and pluripotency marker expression, inhibited cell cycling, compromised …


Leptin Produced By Obesity-Altered Adipose Stem Cells Promotes Metastasis But Not Tumorigenesis Of Triple-Negative Breast Cancer In Orthotopic Xenograft And Patient-Derived Xenograft Models, Rachel A. Sabol, Annie C. Bowles, Alex Côté, Rachel Wise, Benjamen O'Donnell, Margarite D. Matossian, Fokhrul M. Hossain, Hope E. Burks, Luis Del Valle, Lucio Miele, Bridgette M. Collins-Burow, Matthew E. Burow, Bruce A. Bunnell May 2019

Leptin Produced By Obesity-Altered Adipose Stem Cells Promotes Metastasis But Not Tumorigenesis Of Triple-Negative Breast Cancer In Orthotopic Xenograft And Patient-Derived Xenograft Models, Rachel A. Sabol, Annie C. Bowles, Alex Côté, Rachel Wise, Benjamen O'Donnell, Margarite D. Matossian, Fokhrul M. Hossain, Hope E. Burks, Luis Del Valle, Lucio Miele, Bridgette M. Collins-Burow, Matthew E. Burow, Bruce A. Bunnell

School of Medicine Faculty Publications

BACKGROUND: Breast cancer is the second leading cause of cancer deaths in the USA. Triple-negative breast cancer (TNBC) is a clinically aggressive subtype of breast cancer with high rates of metastasis, tumor recurrence, and resistance to therapeutics. Obesity, defined by a high body mass index (BMI), is an established risk factor for breast cancer. Women with a high BMI have increased incidence and mortality of breast cancer; however, the mechanisms(s) by which obesity promotes tumor progression are not well understood. METHODS: In this study, obesity-altered adipose stem cells (obASCs) were used to evaluate obesity-mediated effects of TNBC. Both in vitro …


Characterizing The Role Of Nucleosome Remodeling Factor (Nurf) In Tumorigenesis And Metastatic Progression Using Mouse Models Of Breast Cancer., Suehyb Alkhatib Jun 2012

Characterizing The Role Of Nucleosome Remodeling Factor (Nurf) In Tumorigenesis And Metastatic Progression Using Mouse Models Of Breast Cancer., Suehyb Alkhatib

Theses and Dissertations

Increasingly the role of epigenetic machinery as a bridge between underlying DNA sequence and cellular phenotype is being discovered. The establishment of a myriad of unique cellular types sharing identical gene sequences in a multicellular organism gives a broad sense for the inherent role of epigenetic influence on cell differentiation. Importantly, the epigenetic mechanisms involved in establishing cell identity unsurprisingly contribute to diseased states, including cancer. Recent research continues to elucidate contributory roles of epigenetic mechanisms, such as DNA methylation, histone modification, and microRNA regulation, in human cancers. Additionally, chromatin remodelers, such as the Nucleosome Remodeling Factor (NURF), have been …


Recent Updates On The Role Of Micrornas In Prostate Cancer, Oudai Hassan, Aamir Ahmad, Seema Sethi, Fazlul H. Sarkar Jan 2012

Recent Updates On The Role Of Micrornas In Prostate Cancer, Oudai Hassan, Aamir Ahmad, Seema Sethi, Fazlul H. Sarkar

Wayne State University Associated BioMed Central Scholarship

Abstract

MicroRNAs (miRNAs) are short non-coding RNAs that are involved in several important biological processes through regulation of genes post-transcriptionally. Carcinogenesis is one of the key biological processes where miRNAs play important role in the regulation of genes. The miRNAs elicit their effects by binding to the 3' untranslated region (3'UTR) of their target mRNAs, leading to the inhibition of translation or the degradation of the mRNA, depending on the degree of complementary base pairing. To-date more than 1,000 miRNAs are postulated to exist, although the field is moving rapidly. Currently, miRNAs are becoming the center of interest in a …