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14178


The importance of HER2 signaling in the tumor-initiating cell population in aromatase inhibitor-resistant breast cancer

Gilani, Rabia A; Kazi, Armina A; Shah, Preeti; Schech, Amanda J; Chumsri, Saranya; Sabnis, Gauri; Jaiswal, Anil K; Brodie, Angela H
Aromatase inhibitors (AIs) are an effective therapy in treating estrogen receptor-positive breast cancer. Nonetheless, a significant percentage of patients either do not respond or become resistant to AIs. Decreased dependence on ER-signaling and increased dependence on growth factor receptor signaling pathways, particularly human epidermal growth factor receptor 2 (EGFR2/HER2), have been implicated in AI resistance. However, the role of growth factor signaling remains unclear. This current study investigates the possibility that signaling either through HER2 alone or through interplay between epidermal growth factor receptor 1 (EGFR/HER1) and HER2 mediates AI resistance by increasing the tumor initiating cell (TIC) subpopulation in AI-resistant cells via regulation of stem cell markers, such as breast cancer resistance protein (BCRP). TICs and BCRP are both known to be involved in drug resistance. Results from in vitro analyses of AI-resistant versus AI-sensitive cells and HER2-versus HER2+ cells, as well as from in vivo xenograft tumors, indicate that (1) AI-resistant cells overexpress both HER2 and BCRP and exhibit increased TIC characteristics compared to AI-sensitive cells; (2) inhibition of HER2 and/or BCRP decrease TIC characteristics in letrozole-resistant cells; and (3) HER2 and its dimerization partner EGFR/HER1 are involved in the regulation of BCRP. Overall, these results suggest that reducing or eliminating the TIC subpopulation with agents that target BCRP, HER2, EGFR/HER1, and/or their downstream kinase pathways could be effective in preventing and/or treating acquired AI resistance.
PMID: 22878889
ISSN: 0167-6806
CID: 989582

Regenerative surgery: tissue engineering in general surgical practice

Wong, Victor W; Wan, Derrick C; Gurtner, Geoffrey C; Longaker, Michael T
Tissue engineering is a broad interdisciplinary field that aims to develop complex tissue and organ constructs through a combination of cell-, biomaterial-, and molecular-based approaches. This approach has the potential to transform the surgical treatment for diseases including trauma, cancer, and congenital malformations. A fundamental knowledge of key concepts in regenerative medicine is imperative for surgeons to maintain a leading role in developing and implementing these technologies. Researchers have started to elucidate the biologic mechanisms that maintain organ homeostasis throughout life, indicating that humans may have the latent capacity to regenerate complex tissues. By exploiting this intrinsic potential of the body, we can move even closer to developing functional, autologous replacement parts for a wide range of surgical diseases.
PMID: 22777416
ISSN: 0364-2313
CID: 900852

Matrix control of transforming growth factor-beta function

Horiguchi, Masahito; Ota, Mitsuhiko; Rifkin, Daniel B
The cytokine transforming growth factor-beta (TGF-beta) has multiple effects in both physiological and pathological conditions. TGF-beta is secreted as part of a tripartite complex from which it must be released in order to bind to its receptor. Sequestration of latent TGF-beta in the extracellular matrix (ECM) is crucial for proper mobilization of the latent cytokine and its activation. However, contrary to expectation, loss-of-function mutations in genes encoding certain matrix proteins that bind TGF-beta yield elevated, rather than decreased, TGF-beta levels, posing a 'TGF-beta paradox.' In this review, we discuss recent findings concerning the relationship of TGF-beta, ECM molecules, and latent TGF-beta activation and propose a model to resolve the 'TGF-beta paradox.'
PMCID:3529568
PMID: 22923731
ISSN: 0021-924x
CID: 179083

Atsttrin-(a)over-cap, an Engineered Protein Derived From Progranulin Growth Factor, Binds to TNF Receptors and Exhibits Potent Anti-Inflammatory Activity in Mice [Meeting Abstract]

Zhao, Yunpeng; Tian, Qingyun; Song, Haicheng; Wei, Fanhua; Liu, Chuanju
ISI:000309748305069
ISSN: 0004-3591
CID: 184262

Group choreography: mechanisms orchestrating the collective movement of border cells

Montell, Denise J; Yoon, Wan Hee; Starz-Gaiano, Michelle
Cell movements are essential for animal development and homeostasis but also contribute to disease. Moving cells typically extend protrusions towards a chemoattractant, adhere to the substrate, contract and detach at the rear. It is less clear how cells that migrate in interconnected groups in vivo coordinate their behaviour and navigate through natural environments. The border cells of the Drosophila melanogaster ovary have emerged as an excellent model for the study of collective cell movement, aided by innovative genetic, live imaging, and photomanipulation techniques. Here we provide an overview of the molecular choreography of border cells and its more general implications.
PMCID:4099007
PMID: 23000794
ISSN: 1471-0080
CID: 2141682

The Plaque "Micro" Environment: microRNAs Control the Risk and the Development of Atherosclerosis

Rayner, Katey J; Moore, Kathryn J
While the discovery of microRNAs has exponentially expanded our understanding of the regulatory mechanisms governing gene networks in many biological processes, the study of these tiny RNA powerhouses in cardiovascular disease is in its infancy. To date, there have been over 1200 human microRNAs identified, and they are estimated to affect the expression of over half of the protein-coding portion of the human genome. In this review, we will discuss miRNAs that are integral players in processes affecting risk factors for CVD, as well as miRNAs that act at the level of the vessel wall to affect atherogenesis. We will discuss how microRNAs are not only advancing the field of cardiovascular biology, but how some miRNAs are at the forefront of drug development and may be soon advancing into the clinic.
PMCID:3542980
PMID: 22847770
ISSN: 1523-3804
CID: 178054

DeoxyArbutin and its derivatives inhibit tyrosinase activity and melanin synthesis without inducing reactive oxygen species or apoptosis

Chawla, Smita; Kvalnes, Kalla; deLong, Mitchell A; Wickett, Randall; Manga, Prashiela; Boissy, Raymond E
Safety is a major concern in developing commercial skin-lightening agents. Here, we report the modulating effects of deoxyArbutin (dA) and its second-generation derivatives - deoxyFuran (dF), 2-fluorodeoxyArbutin (fdA), and thiodeoxyArbutin (tdA) - on tyrosinase, and consequently, on melanization. Results demonstrate that dA and its derivatives inhibit tyrosine hydroxylase and dopa oxidase activity of tyrosinase. The inhibition is dose-dependent, thereby inhibiting melanin synthesis in intact melanocytes, when used at concentrations that retain 95% viability of the treated cells in culture. Herein we demonstrate that dA, and its second-generation derivatives dF, fdA, and tdA, exhibit dose-dependent reductions in melanocyte cell number, primarily due to inhibition of proliferation rather than initiation of apoptosis as exemplified by hydroquinone (HQ), ie, cytostatic as opposed to cytotoxic. Human and murine melanocytes with functional mutations in either tyrosinase or tyrosinase-related protein 1 (Tyrp1) are less sensitive to the cytostatic effects of dA and its derivatives. Minimal amounts of reactive oxygen species (ROS) were generated upon treatment with dA and its derivatives, in contrast to a dramatic amount of ROS induced by HQ. This increase in ROS subsequently induced the expression of the endogenous antioxidant catalase in treated melanocytes. Treatment with exogenous antioxidants provided protection for melanocytes treated with HQ, but not dA and its derivatives, suggesting that HQ exerts more oxidative stress. These studies demonstrate that dA and its derivatives are relatively safe tyrosinase inhibitors for skin lightening or for ameliorating hyperpigmented lesions.
PMID: 23134995
ISSN: 1545-9616
CID: 836532

Close Proximity to Igh Is a Contributing Factor to AID-Mediated Translocations

Rocha, Pedro P; Micsinai, Mariann; Kim, Junghyun Rachel; Hewitt, Susannah L; Souza, Patricia P; Trimarchi, Thomas; Strino, Francesco; Parisi, Fabio; Kluger, Yuval; Skok, Jane A
Class switch recombination (CSR) has the potential to generate genomic instability in B cells as activation-induced cytidine deaminase (AID), which mediates this process, is known to target many sites outside Igh. Nonetheless we do not fully understand what factors influence AID targeting genome-wide. Given that errors in CSR can lead to dangerous, oncogenic chromosomal translocations it is important to identify the elements that determine which genes are at risk of being "hit" and could be involved in aberrant rearrangements. Here we have investigated the influence of nuclear organization in determining "off-target" activity and the choice of fusion partners. Our studies indicate that the vast majority of known AID-mediated Igh translocation partners are found in chromosomal domains that contact this locus during class switching. Further, these interaction domains can be used to identify other genes that are hit by AID.
PMCID:3571766
PMID: 22864115
ISSN: 1097-2765
CID: 179081

Cross-neutralization of influenza A viruses mediated by a single antibody loop

Ekiert, Damian C; Kashyap, Arun K; Steel, John; Rubrum, Adam; Bhabha, Gira; Khayat, Reza; Lee, Jeong Hyun; Dillon, Michael A; O'Neil, Ryann E; Faynboym, Aleksandr M; Horowitz, Michael; Horowitz, Lawrence; Ward, Andrew B; Palese, Peter; Webby, Richard; Lerner, Richard A; Bhatt, Ramesh R; Wilson, Ian A
Immune recognition of protein antigens relies on the combined interaction of multiple antibody loops, which provide a fairly large footprint and constrain the size and shape of protein surfaces that can be targeted. Single protein loops can mediate extremely high-affinity binding, but it is unclear whether such a mechanism is available to antibodies. Here we report the isolation and characterization of an antibody called C05, which neutralizes strains from multiple subtypes of influenza A virus, including H1, H2 and H3. X-ray and electron microscopy structures show that C05 recognizes conserved elements of the receptor-binding site on the haemagglutinin surface glycoprotein. Recognition of the haemagglutinin receptor-binding site is dominated by a single heavy-chain complementarity-determining region 3 loop, with minor contacts from heavy-chain complementarity-determining region 1, and is sufficient to achieve nanomolar binding with a minimal footprint. Thus, binding predominantly with a single loop can allow antibodies to target small, conserved functional sites on otherwise hypervariable antigens.
PMCID:3538848
PMID: 22982990
ISSN: 1476-4687
CID: 2291362

Increasing MuSK Activity Delays Denervation and Improves Motor Function in ALS Mice

Perez-Garcia, Maria J; Burden, Steven J
Amyotrophic lateral sclerosis (ALS) is a devastating disease that progresses from detachment of motor nerve terminals to complete muscle paralysis and lethal respiratory failure within 5 years of diagnosis. Genetic studies have linked mutations in several genes to ALS, and mice bearing mutations in SOD1 recapitulate hallmark features of the disease. We investigated whether disease symptoms can be ameliorated by co-opting the retrograde signaling pathway that promotes attachment of nerve terminals to muscle. We crossed SOD1G93A mice with transgenic mice that express MuSK, a receptor tyrosine kinase that is required for retrograde signaling, and we used histological and behavioral assays to assess motor innervation and behavior. A 3-fold increase in MuSK expression delayed the onset and reduced the extent of muscle denervation, improving motor function for more than a month without altering survival. These findings suggest that increasing MuSK activity by pharmacological means has the potential to improve motor function in ALS.
PMCID:3462266
PMID: 22939980
ISSN: 2211-1247
CID: 179084