Targeting Mitochondria In Cancer Therapy Could Provide A Basis For The Selective Anticancer Activity,
2019
Oregon Health and Science University
Targeting Mitochondria In Cancer Therapy Could Provide A Basis For The Selective Anticancer Activity, Dmitri Rozanov, Anton Cheltsov, Aaron Nilsen, Christopher Boniface, Isaac Forquer, James Korkola, Joe Gray, Multiple Additional Authors
Chemistry Faculty Publications and Presentations
To determine the target of the recently identified lead compound NSC130362 that is responsible for its selective anti-cancer efficacy and safety in normal cells, structure-activity relationship (SAR) studies were conducted. First, NSC13062 was validated as a starting compound for the described SAR studies in a variety of cell-based viability assays. Then, a small library of 1,4-naphthoquinines (1,4-NQs) and quinoline-5,8-diones was tested in cell viability assays using pancreatic cancer MIA PaCa-2 cells and normal human hepatocytes. The obtained data allowed us to select a set of both non-toxic compounds that preferentially induced apoptosis in cancer cells and toxic compounds that induced …
Mesenchymal Stromal Cell Therapeutic Delivery: Translational Challenges To Clinical Application,
2019
The Texas Medical Center Library
Mesenchymal Stromal Cell Therapeutic Delivery: Translational Challenges To Clinical Application, Henry Caplan, Scott D Olson, Akshita Kumar, Mitchell George, Karthik S Prabhakara, Pamela Wenzel, Supinder Bedi, Naama E Toledano-Furman, Fabio Triolo, Julian Kamhieh-Milz, Guido Moll, Charles S Cox
Faculty, Staff and Student Publications
For several decades, multipotent mesenchymal stromal cells (MSCs) have been extensively studied for their therapeutic potential across a wide range of diseases. In the preclinical setting, MSCs demonstrate consistent ability to promote tissue healing, down-regulate excessive inflammation and improve outcomes in animal models. Several proposed mechanisms of action have been posited and demonstrated across an array of in vitro models. However, translation into clinical practice has proven considerably more difficult. A number of prominent well-funded late-phase clinical trials have failed, thus calling out for new efforts to optimize product delivery in the clinical setting. In this review, we discuss novel …
Modulation Of Autophagy And Senescence To Enhance The Response To Therapy In Triple Negative Breast Cancer,
2019
Virginia Commonwealth University
Modulation Of Autophagy And Senescence To Enhance The Response To Therapy In Triple Negative Breast Cancer, Liliya Tyutyunyk-Massey
Theses and Dissertations
Abstract
Although great strides have been made over the decades in development and optimization of anti-cancer therapies, even highly effective drugs often fail to completely eliminate tumors. Residual tumor cells can enter into a state of dormancy for prolonged periods of time but eventually are able to regain proliferative capacity and reemerge as chemotherapy-resistant disease. Because recurrent disease is a leading contributor to patient’s mortality, it is paramount to identify strategies for effectively destroying residual tumor cells.
Cytotoxic drugs and ionizing radiation are used as standard therapies in a variety of cancers. These modalities induce apoptosis, autophagy and senescence. Senescence …
Ribonucleotide Reductase Inhibitor 3-Ap Induces Oncogenic Virus Infected Cell Death And Represses Tumor Growth,
2018
Tongji University School of Medicine - Shanghai, China
Ribonucleotide Reductase Inhibitor 3-Ap Induces Oncogenic Virus Infected Cell Death And Represses Tumor Growth, Lu Dai, Jungang Chen, Yueyu Cao, Luis Del Valle, Zhiqiang Qin
School of Medicine Faculty Publications
Kaposi's Sarcoma-associated Herpesvirus (KSHV) is the etiologic agent of several human malignancies, particularly Kaposi's Sarcoma (KS), which preferentially arise in immunocompromised patients such as HIV+ subpopulation while still lacking of effective therapeutic options. We recently found that the ribonucleotide reductase (RR) subunit M2 is potentially regulated by the key oncogenic HGF/c-MET pathway in KSHV-related lymphoma cells. One of RR inhibitor, 3-aminopyridine-2-carboxaldehyde thiosemicarbazone (3-AP) effectively induced apoptosis of KSHV+ lymphomas and suppressed tumor progression . In the current study, we found that 3-AP treatment selectively inhibited the proliferation of KSHV-infected endothelial cells, the major cellular components of KS, through inducing DNA …
The Tumor Microenvironment Regulates Retinoblastoma Cell Survival,
2018
University of Tennessee Health Science Center
The Tumor Microenvironment Regulates Retinoblastoma Cell Survival, Zachary K. Goldsmith
Theses and Dissertations (ETD)
Retinoblastoma (Rb) is the most common intraocular malignancy in children comprising 4% of all pediatric tumors. Early intervention increases survival rates up to 95% in developed countries; being survival rates associated to socio-economic status. Despite the high survival rates in developed countries, preservation of the eye and vision are continuing challenges in the management of Rb. Vitreous seeds constitute the greatest challenge in treatment of Rb. The unique location of these seeds within the vitreous makes them difficult to treat. Viable seeds showed reduced proliferative capacity and metabolism. making the majority refractory to current chemotherapeutics. This prompted the development of …
The Role Of Bip Co-Chaperone Sil1 In Marinesco-Sjögren Syndrome Pathogenesis,
2018
University of Tennessee Health Science Center
The Role Of Bip Co-Chaperone Sil1 In Marinesco-Sjögren Syndrome Pathogenesis, Viraj Paresh Ichhaporia
Theses and Dissertations (ETD)
Marinesco-Sjögren syndrome (MSS) is a rare, autosomal recessive, multisystem disorder, which is characterized by cerebellar ataxia, early-onset bilateral cataracts, and progressive myopathy amongst other symptoms. MSS has been attributed to mutations in the SIL1 gene, which encodes a nucleotide exchange factor for the endoplasmicreticulum- resident Hsp70 chaperone, BiP. To date, there are 46 MSS-associated mutations that have been reported in SIL1, which occur throughout this gene and are predicted to result in a loss of SIL1’s function. The large majority of these mutations cause deletions of large fractions of the SIL1 protein. Nine MSS-associated mutations are particularly interesting because they …
Signaling Induced By Inflammatory Mediators In The Rodent Pulmonary Microvasculature,
2018
University of Tennessee Health Science Center
Signaling Induced By Inflammatory Mediators In The Rodent Pulmonary Microvasculature, Rachel Escue Helms
Theses and Dissertations (ETD)
Acute lung inflammation (ALI), stemming from a disproportionate and detrimental immune response, may arise from or complicate other disease states, leading to the often-fatal acute respiratory distress syndrome (ARDS). Because of the many culpable factors and differing points of induction, pinning down the signaling mechanisms involved in the morbidity of this disorder as well as defining an effective treatment has proved problematic. However, the most detrimental characteristic of this condition is seen regardless of the development of the response: increased microvascular permeability. Because of the architecture and the size of the pulmonary microvascular network, the lungs have a resident, sequestered …
Targeting The Colchicine Binding Site On Tubulin To Overcome Multidrug Resistance And Anticancer Efficacy Of Selective Survivin Inhibitors,
2018
University of Tennessee Health Science Center
Targeting The Colchicine Binding Site On Tubulin To Overcome Multidrug Resistance And Anticancer Efficacy Of Selective Survivin Inhibitors, Kinsle E. Arnst
Theses and Dissertations (ETD)
Tubulin inhibitors are widely used as chemotherapeutic agents, and their successis attributed to their ability to target microtubule dynamics and disrupt critical cellular functions including cell signaling, motility, intracellular trafficking, and mitosis. Interference with microtubule dynamics consequently disrupts mitotic progression and ultimately leads to apoptosis, validating microtubule dynamics as an excellent target for anticancer agents. While this class of drug has proven to be effective against many cancer types, the clinical efficacy of current tubulin inhibitors is often limited by the development of multidrug resistance. The most common form of resistance to these agents arises from the overexpression of drug …
Roles Of Cytosolic Nucleic Acid Sensors In Cancer And Infection,
2018
University of Tennessee Health Science Center
Roles Of Cytosolic Nucleic Acid Sensors In Cancer And Infection, Qifan Zhu
Theses and Dissertations (ETD)
Pattern recognition receptors are innate immune sensors that recognize pathogen-associated molecular patterns (PAMPs) and danger-associated molecular patterns (DAMPs) with crucial roles in host defense against microbial infection, autoimmune diseases and cancer. Cytosolic nucleic acids including DNA and RNA originate from pathogens or self-cells, which form major groups of PAMPs and DAMPs. A range of nucleic acid sensors have evolved to sense various types of nucleic acids. How different DNA-sensing pathways regulate microbial infection and cancer is the focus of this dissertation.
Stimulator of IFN genes (STING) is a cytosolic innate immune sensor for cyclic dinucleotides that also serves a dual …
Micu1 Interacts With The D-Ring Of The Mcu Pore To Control Its Ca2+ Flux And Sensitivity To Ru360,
2018
Thomas Jefferson University
Micu1 Interacts With The D-Ring Of The Mcu Pore To Control Its Ca2+ Flux And Sensitivity To Ru360, Melanie Paillard, György Csordás, Kai-Ting Huang, Peter Várnai, Suresh K. Joseph, György Hajnóczky
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Proper control of the mitochondrial Ca2+ uniporter’s pore (MCU) is required to allow Ca2+ dependent activation of oxidative metabolism and to avoid mitochondrial Ca2+ overload and cell death. The MCU’s gatekeeping and cooperative activation is mediated by the Ca2+ sensing MICU1 protein, which has been proposed to form dimeric complexes anchored to the EMRE scaffold of MCU. We unexpectedly find that MICU1 suppresses inhibition of MCU by ruthenium red/Ru360, which bind to MCU’s DIME motif, the selectivity filter. This led us to recognize in MICU1’s sequence, a putative DIME Interacting Domain (DID) which is required for …
Redox Regulation Of Type-I Inositol Trisphosphate Receptors In Intact Mammalian Cells.,
2018
Thomas Jefferson University
Redox Regulation Of Type-I Inositol Trisphosphate Receptors In Intact Mammalian Cells., Suresh K. Joseph, Michael P. Young, Kamil Alzayady, David I. Yule, Mehboob Ali, David M. Booth, György Hajnóczky
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
A sensitization of inositol 1,4,5-trisphosphate receptor (IP3R)-mediated Ca2+ release is associated with oxidative stress in multiple cell types. These effects are thought to be mediated by alterations in the redox state of critical thiols in the IP3R, but this has not been directly demonstrated in intact cells. Here, we utilized a combination of gel-shift assays with MPEG-maleimides and LC-MS/MS to monitor the redox state of recombinant IP3R1 expressed in HEK293 cells. We found that under basal conditions, ∼5 of the 60 cysteines are oxidized in IP3R1. Cell treatment with 50 μm thimerosal altered gel shifts, indicating oxidation of ∼20 cysteines. …
Heat Shock Protein 40 And Immune Function In Altered Gravity,
2018
NASA Ames Research Center, Universities Space Rsearch Association
Heat Shock Protein 40 And Immune Function In Altered Gravity, Amber M. Paul, Brooke D. Shepard, Sharmila Bhattacharya
Publications
In space, astronauts are more susceptible to pathogens, viral reactivation and immunosuppression, which poses limits to their health and the mission. Interestingly, during space flight, stress-inducible heat shock proteins (HSP) are robustly induced, and the overexpression of HSPs have been implicated in immune dysregulation, therefore HSPs may be critically involved in regulating immune homeostasis. HSP40/DNAJ1 plays a major role in proper protein translation and folding. Its loss of function has been implicated in susceptibility to microbial infection, while its overexpression has been implicated in autoimmunity, collectively suggesting its complicated, but necessary, role in maintaining immunological function. To determine the role …
Metabolic Reprogramming Of Murine Cardiomyocytes During Autophagy Requires The Extracellular Nutrient Sensor Decorin.,
2018
Thomas Jefferson University
Metabolic Reprogramming Of Murine Cardiomyocytes During Autophagy Requires The Extracellular Nutrient Sensor Decorin., Maria A. Gubbiotti, Erin L. Seifert, Ulrich Rodeck, Jan B. Hoek, Renato V. Iozzo
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
The extracellular matrix is a master regulator of tissue homeostasis in health and disease. Here we examined how the small, leucine-rich, extracellular matrix proteoglycan decorin regulates cardiomyocyte metabolism during fasting in vivo. First, we validated in Dcn-/- mice that decorin plays an essential role in autophagy induced by fasting. High-Throughput metabolomics analyses of cardiac tissue in Dcn-/- mice subjected to fasting revealed striking differences in the hexosamine biosynthetic pathway resulting in aberrant cardiac O-β-N-Acetylglycosylation as compared with WT mice. Functionally, Dcn-/- mice maintained cardiac function at a level comparable with nonfasted animals whereas fasted WT mice showed …
Cellular Network Modeling And Single Cell Gene Expression Analysis Reveals Novel Hepatic Stellate Cell Phenotypes Controlling Liver Regeneration Dynamics,
2018
Thomas Jefferson University; University of Delaware
Cellular Network Modeling And Single Cell Gene Expression Analysis Reveals Novel Hepatic Stellate Cell Phenotypes Controlling Liver Regeneration Dynamics, Daniel Cook, Sirisha Achanta, Jan B. Hoek, Babatunde A. Ogunnaike, Rajanikanth Vadigepalli
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Background: Recent results from single cell gene and protein regulation studies are starting to uncover the previously underappreciated fact that individual cells within a population exhibit high variability in the expression of mRNA and proteins (i.e., molecular variability). By combining cellular network modeling, and high-throughput gene expression measurements in single cells, we seek to reconcile the high molecular variability in single cells with the relatively low variability in tissue-scale gene and protein expression and the highly coordinated functional responses of tissues to physiological challenges. In this study, we focus on relating the dynamic changes in distributions of hepatic stellate cell …
Cysteine Residues Contribute To The Dimerization And Enzymatic Activity Of Human Nuclear Dutp Nucleotidohydrolase (Ndut).,
2018
Rowan University
Cysteine Residues Contribute To The Dimerization And Enzymatic Activity Of Human Nuclear Dutp Nucleotidohydrolase (Ndut)., Shawna M Rotoli, Julia L Jones, Salvatore J Caradonna
Rowan-Virtua School of Osteopathic Medicine Departmental Research
dUTPase is an enzyme found in all organisms that have thymine as a constituent of DNA. Through evolution, humans have two major isoforms of dUTPase: a mitochondrial (mDut) and a nuclear (nDut) isoform. The nuclear isoform of dUTPase is a 164-amino-acids-long protein containing three cysteine residues. nDut's starting methionine is post-translationally cleaved, leaving four unique amino acids on its amino-terminus including one cysteine residue (C3). These are not present in the mitochondrial isoform (mDut). Using mass spectrometry analyses of recombinant dUTPase constructs, we have discovered an intermolecular disulfide bridge between cysteine-3 of each nDut monomer. We have found that these …
Editorial: Ion Channel Trafficking And Cardiac Arrhythmias,
2018
University Medical Center Utrecht, Netherlands
Editorial: Ion Channel Trafficking And Cardiac Arrhythmias, Marcel A. G. Van Der Heyden, Brian P. Delisle, Hugues Abriel
Physiology Faculty Publications
No abstract provided.
Myocyte [Na+]I Dysregulation In Heart Failure And Diabetic Cardiomyopathy,
2018
University of Kentucky
Myocyte [Na+]I Dysregulation In Heart Failure And Diabetic Cardiomyopathy, Sanda Despa
Pharmacology and Nutritional Sciences Faculty Publications
By controlling the function of various sarcolemmal and mitochondrial ion transporters, intracellular Na+ concentration ([Na+]i) regulates Ca2+ cycling, electrical activity, the matching of energy supply and demand, and oxidative stress in cardiac myocytes. Thus, maintenance of myocyte Na+ homeostasis is vital for preserving the electrical and contractile activity of the heart. [Na+]i is set by the balance between the passive Na+ entry through numerous pathways and the pumping of Na+ out of the cell by the Na+/K+-ATPase. This equilibrium is perturbed in heart failure, …
Escherichia Coli Itat Is A Type Ii Toxin That Inhibits Translation By Acetylating Isoleucyl-Trnaile,
2018
Skolkovo Institute of Science and Technology
Escherichia Coli Itat Is A Type Ii Toxin That Inhibits Translation By Acetylating Isoleucyl-Trnaile, Brendan Wilcox, Ilya Osterman, Marina Serebryakova, Dmitry Lukyanov, Ekaterina Komarova, Bridget Gollan, Natalia Morozova, Yuri I Wolf, Kira S Makarova, Sophie Helaine, Petr Sergiev, Svetlana Dubiley, Sergei Borukhov, Konstantin Severinov
Rowan-Virtua School of Osteopathic Medicine Departmental Research
Prokaryotic toxin-antitoxin (TA) modules are highly abundant and are involved in stress response and drug tolerance. The most common type II TA modules consist of two interacting proteins. The type II toxins are diverse enzymes targeting various essential intracellular targets. The antitoxin binds to cognate toxin and inhibits its function. Recently, TA modules whose toxins are GNAT-family acetyltransferases were described. For two such systems, the target of acetylation was shown to be aminoacyl-tRNA: the TacT toxin targets aminoacylated elongator tRNAs, while AtaT targets the amino acid moiety of initiating tRNAMet. We show that the itaRT gene pair from Escherichia coli …
Repetitive Transcranial Electrical Stimulation Induces Quantified Changes In Resting Cerebral Perfusion Measured From Arterial Spin Labeling,
2018
Wright State University - Main Campus
Repetitive Transcranial Electrical Stimulation Induces Quantified Changes In Resting Cerebral Perfusion Measured From Arterial Spin Labeling, Matthew Sherwood, Aaron T. Madaris, Casserly R. Mullenger, R. Andy Mckinley
Neuroscience, Cell Biology & Physiology Faculty Publications
The use of transcranial electrical stimulation (TES) as a method to augment neural activity has increased in popularity in the last decade and a half. The specific application of TES to the left prefrontal cortex has been shown to produce broad cognitive effects; however, the neural mechanisms underlying these effects remain unknown. In this work, we evaluated the effect of repetitive TES on cerebral perfusion. Stimulation was applied to the left prefrontal cortex on three consecutive days, and resting cerebral perfusion was quantified before and after stimulation using arterial spin labeling. Perfusion was found to decrease significantly more in a …
Mir-196b Target Screen Reveals Mechanisms Maintaining Leukemia Stemness With Therapeutic Potential.,
2018
Thomas Jefferson University; Cincinnati Children’s Hospital Medical Center
Mir-196b Target Screen Reveals Mechanisms Maintaining Leukemia Stemness With Therapeutic Potential., Sara E. Meyer, David E. Muench, Andrew M. Rogers, Tess J. Newkold, Emily Orr, Eric O'Brien, John P. Perentesis, John G. Doench, Ashish Lal, Patrick J. Morris, Craig J. Thomas, Judy Lieberman, Edwina Mcglinn, Bruce J. Aronow, Nathan Salomonis, H. Leighton Grimes
Department of Cancer Biology Faculty Papers
We have shown that antagomiR inhibition of miRNA miR-21 and miR-196b activity is sufficient to ablate MLL-AF9 leukemia stem cells (LSC) in vivo. Here, we used an shRNA screening approach to mimic miRNA activity on experimentally verified miR-196b targets to identify functionally important and therapeutically relevant pathways downstream of oncogenic miRNA in MLL-r AML. We found Cdkn1b (p27Kip1) is a direct miR-196b target whose repression enhanced an embryonic stem cell–like signature associated with decreased leukemia latency and increased numbers of leukemia stem cells in vivo. Conversely, elevation of p27Kip1 significantly reduced MLL-r leukemia self-renewal, promoted monocytic differentiation …
