Profiling The Circulating Mrna Transcriptome In Human Liver Disease,
2020
Baruch S. Blumberg Institute
Profiling The Circulating Mrna Transcriptome In Human Liver Disease, Aejaz Sayeed, Brielle E Dalvano, David E Kaplan, Usha Viswanathan, John Kulp, Alhaji H Janneh, Lu-Yu Hwang, Adam Ertel, Cataldo Doria, Timothy Block
Department of Cancer Biology Faculty Papers
The human circulation contains cell-free DNA and non-coding microRNA (miRNA). Less is known about the presence of messenger RNA (mRNA). This report profiles the human circulating mRNA transcriptome in people with liver cirrhosis (LC) and hepatocellular carcinoma (HCC) to determine whether mRNA analytes can be used as biomarkers of liver disease. Using RNAseq and RT-qPCR, we investigate circulating mRNA in plasma from HCC and LC patients and demonstrate detection of transcripts representing more than 19,000 different protein coding genes. Remarkably, the circulating mRNA expression levels were similar from person to person over the 21 individuals whose samples were analyzed by …
Metabolic Network Analysis Of Filamentous Cyanobacteria,
2020
Louisiana State University and Agricultural and Mechanical College
Metabolic Network Analysis Of Filamentous Cyanobacteria, Daniel Alexis Norena-Caro
LSU Doctoral Dissertations
Cyanobacteria were the first organisms to use oxygenic photosynthesis, converting CO2 into useful organic chemicals. However, the chemical industry has historically relied on fossil raw materials to produce organic precursors, which has contributed to global warming. Thus, cyanobacteria have emerged as sustainable stakeholders for biotechnological production. The filamentous cyanobacterium Anabaena sp. UTEX 2576 can metabolize multiple sources of Nitrogen and was studied as a platform for biotechnological production of high-value chemicals (i.e., pigments, antioxidants, vitamins and secondary metabolites). From a Chemical engineering perspective, the biomass generation in this organism was thoroughly studied by interpreting the cell as a microbial …
Molecular And Ultrastructure Study Of Tight Junction During Experimental Entamoeba Spp. Infection,
2020
University of Basra,College of Science
Molecular And Ultrastructure Study Of Tight Junction During Experimental Entamoeba Spp. Infection, Athraa A. Al-Hilfi Dr, Maha Khalil Al-Malak, Shereen Jawad Al-Ali, Muslim Abd-Ulrahman Al-Tomah
Karbala International Journal of Modern Science
Entamoeba spp. in particular E.histolytica is the main reason of human amoebiasis. The molecular mechanism of its pathogenicity is poorly understood, therefore the aim this study is to investigate these mechanism on both molecular and ultrastructure levels. Tight junction (TJ) genes Claudin-1 (Cldn1) and Occludin (Ocln) were investigated by real time PCR and the pathological changes by scanning electron microscopy (SEM) and transmission electron microscope (TEM), the result showed that the gene expression levels of TJ genes were significantly high in rats infected with E. histolytica E. dispar and E. moshkovskii after 28, 14, 7 days in compare with healthy …
Insights Into Desiccation Tolerance: Properties Of Late Embryogenesis Abundant Proteins From Embryos Of Artemia Franciscana,
2020
Louisiana State University and Agricultural and Mechanical College
Insights Into Desiccation Tolerance: Properties Of Late Embryogenesis Abundant Proteins From Embryos Of Artemia Franciscana, Blase Matthew Leblanc
LSU Doctoral Dissertations
LEA proteins are a family of intrinsically disordered proteins that are expressed in various life stages of anhydrobiotic organisms and have been strongly associated with survival during water stress. The brine shrimp Artemia franciscana is the only known anhydrobiotic animal that expresses LEA proteins from Groups 1, 3, and 6. Here, I report that AfrLEA6, a novel Group 6 LEA protein, is most highly expressed in embryos during diapause and decreases throughout pre-emergence development. Notably, there is an acute drop in expression upon termination of the diapause state and the titer of AfrLEA6 during diapause is 10-fold lower than values …
Deploying Big Data To Crack The Genotype To Phenotype Code,
2020
Swarthmore College
Deploying Big Data To Crack The Genotype To Phenotype Code, E. L. Westerman, S. E. J. Bowman, Bradley Justin Davidson , '91, M. C. Davis, E. R. Larson, C. Sanford
Biology Faculty Works
Mechanistically connecting genotypes to phenotypes is a longstanding and central mission of biology. Deciphering these connections will unite questions and datasets across all scales from molecules to ecosystems. Although high-throughput sequencing has provided a rich platform on which to launch this effort, tools for deciphering mechanisms further along the genome to phenome pipeline remain limited. Machine learning approaches and other emerging computational tools hold the promise of augmenting human efforts to overcome these obstacles. This vision paper is the result of a Reintegrating Biology Workshop, bringing together the perspectives of integrative and comparative biologists to survey challenges and opportunities in …
Comparative Molecular Transporter Properties Of Cyclic Peptides Containing Tryptophan And Arginine Residues Formed Through Disulfide Cyclization,
2020
Chapman University
Comparative Molecular Transporter Properties Of Cyclic Peptides Containing Tryptophan And Arginine Residues Formed Through Disulfide Cyclization, Eman H. M. Mohammed, Dindyal Mandal, Saghar Mozaffari, Magdy Abdel-Hamied Zahran, Amany Mostafa Osman, Rakesh Kumar Tiwari, Keykavous Parang
Pharmacy Faculty Articles and Research
We have previously reported cyclic cell-penetrating peptides [WR]5 and [WR]4 as molecular transporters. To optimize further the utility of our developed peptides for targeted therapy in cancer cells using the redox condition, we designed a new generation of peptides and evaluated their cytotoxicity as well as uptake behavior against different cancer cell lines. Thus, cyclic [C(WR)xC] and linear counterparts (C(WR)xC), where x = 4–5, were synthesized using Fmoc/tBu solid-phase peptide synthesis, purified, and characterized. The compounds did not show any significant cytotoxicity (at 25 µM) against ovarian (SK-OV-3), leukemia (CCRF-CEM), gastric adenocarcinoma (CRL-1739), breast …
Recombinant Human Proteoglycan-4 Mediates Interleukin-6 Response In Both Human And Mouse Endothelial Cells Induced Into A Sepsis Phenotype,
2020
Brown University
Recombinant Human Proteoglycan-4 Mediates Interleukin-6 Response In Both Human And Mouse Endothelial Cells Induced Into A Sepsis Phenotype, Holly A. Richendrfer, Mitchell M. Levy, Khaled A. Elsaid, Tannin A. Schmidt, Ling Zhang, Ralph Cabezas, Gregory D. Jay
Pharmacy Faculty Articles and Research
Objectives:
Sepsis is a leading cause of death in the United States. Putative targets to prevent systemic inflammatory response syndrome include antagonism of toll-like receptors 2 and 4 and CD44 receptors in vascular endothelial cells. Proteoglycan-4 is a mucinous glycoprotein that interacts with CD44 and toll-like receptor 4 resulting in a blockade of the NOD-like receptor pyrin domain-containing-3 pathway. We hypothesized that endothelial cells induced into a sepsis phenotype would have less interleukin-6 expression after recombinant human proteoglycan 4 treatment in vitro.
Design:
Enzyme-linked immunosorbent assay and reverse transcriptase-quantitative polymerase chain reaction to measure interleukin-6 protein and gene expression.
Setting: …
Probing The Limits Of Singular Gene Expression Through The Activity Of High Representation Odorant Receptor Transgenes,
2020
CUNY Graduate Center
Probing The Limits Of Singular Gene Expression Through The Activity Of High Representation Odorant Receptor Transgenes, Eugene Lempert
Dissertations, Theses, and Capstone Projects
Singular gene expression is a common phenomenon in biology, making its appearance in immunoglobulin selection, protocadherin expression, X chromosome-inactivation, random monoallelic expression, and olfactory receptor choice. Singularity involves an activation and a feedback step. The mechanisms of singular gene choice have some capacity to integrate additional member genes while still maintaining singularity, but will activate an additional member if an earlier choice was incapable of triggering the feedback step. Odorant Receptor (OR) genes are substantially divergent from each other in terms of coding sequence, promoter structure, and genomic locus, all of which plays a role in how many Olfactory Sensory …
Dictyostelium Discoideum Protein Kinase C-Orthologue Pkca Regulates The Actin Cytoskeleton Through Interaction With Phospholipase D And P21-Activated Kinase,
2020
CUNY Graduate Center
Dictyostelium Discoideum Protein Kinase C-Orthologue Pkca Regulates The Actin Cytoskeleton Through Interaction With Phospholipase D And P21-Activated Kinase, Sean Singh
Dissertations, Theses, and Capstone Projects
Proper regulation of the actin cytoskeleton is crucial to many cellular processes. Many of these processes are regulated by extracellular signaling cues, which direct changes in the actin cytoskeleton, resulting in changes to cellular morphology, and directed motility. The social amoeba, Dictyostelium discoideum, is used as a simple model system to study the translation of extracellular signals to the actin cytoskeleton. When starved, these unicellular amoebae undergo a multicellular developmental process characterized by a tightly regulated sequence of signaling events. This results in chemotaxis and formation of a multicellular aggregate, and ultimately cell differentiation and the formation of a fruiting …
Protein Phosphatase 2a Suppresses Spindle Elongation In Saccharomyces Cerevisiae,
2020
CUNY Graduate Center
Protein Phosphatase 2a Suppresses Spindle Elongation In Saccharomyces Cerevisiae, Shoily P. Khondker
Dissertations, Theses, and Capstone Projects
Eukaryotic cell division is an essential process that is carried out by the cell cycle, a tightly controlled process that has been extensively studied in the budding yeast Saccharomyces cerevisiae. The cell cycle is driven by Cyclin Dependent Kinase (Cdk1) activity. Protein phosphatase 2A-Cdc55 (PP2ACdc55) reverses Cdk1 phosphorylation events during late stages of the cell cycle to ensure the correct order of events. This thesis presents evidence that the anaphase inhibitor Pds1 is a PP2ACdc55 target. Pds1 binds to and inhibits separase (Esp1). Esp1 triggers sister chromatid segregation by cleaving the cohesin complex that holds the …
Putative Flagellar Channel-Lining Residues And Their Role In Filament Synthesis, Morphology And Stability,
2020
Western Michigan University
Putative Flagellar Channel-Lining Residues And Their Role In Filament Synthesis, Morphology And Stability, Troy Burtchett
Masters Theses
Bacterial flagella are comprised of ~20,000 repeating subunits called flagellin and are synthesized by transporting unfolded flagellin monomers through the central channel of the flagellar filament to the distal end where they are folded and incorporated into the growing structure. The transport mechanism is predicted to be facilitated by a hydrophilic coating of amino acid side chains on the inside wall of the central channel that repels the mostly hydrophobic surface of the unfolded flagellin monomer. The lack of interaction between the flagellin monomer and the central channel wall is thought to allow for the passive diffusion of protein monomers. …
Development Of Ligand Guided Selection (Ligs) To Identify Specific Dna Aptamers Against Cell Surface Proteins,
2020
CUNY Graduate Center
Development Of Ligand Guided Selection (Ligs) To Identify Specific Dna Aptamers Against Cell Surface Proteins, Hasan Ekrem Zumrut
Dissertations, Theses, and Capstone Projects
Oligonucleotide aptamers (nucleic acid-based affinity reagents) are an emerging class of synthetic molecules that display high affinity and specificity towards their targets. Aptamer molecules for a target of interest are obtained using a combinatorial chemistry-based method termed systematic evolution of ligands by exponential enrichment (SELEX). SELEX is an in vitro selection process in which a random oligonucleotide library is subjected to repeated cycles of target incubation, separation, and amplification until target-specific evolved sequences become prevalent in the library. Typically, SELEX is used against target molecules such as small molecules and proteins, in their purified state. However, aptamers selected against purified …
Gene Regulation And Cell Fate Choice In The Developing Vertebrate Retina,
2020
CUNY Graduate Center
Gene Regulation And Cell Fate Choice In The Developing Vertebrate Retina, Sruti Patoori
Dissertations, Theses, and Capstone Projects
The diverse neuronal cell types in the vertebrate retina all originate from multipotent retinal progenitor cells (RPCs). These undergo a series of molecular changes driven by developmental gene regulatory networks (GRNs) as they divide to generate RPCs which are more restricted in their potential fates. It is crucial to understand these GRNs and changes to gene expression in order to understand how cell identity is established during retinal development. In particular, the GRN that promotes the development of cone photoreceptors and horizontal cells is not well-defined. This work focuses on two approaches to further elucidate the components of this regulatory …
Epithelial-Mesenchymal Status Predics Tumor Agressivenss, Chemoresistance And Invasiveness In High Grade Serous Ovarian Cancer,
2020
California State University, San Bernardino
Epithelial-Mesenchymal Status Predics Tumor Agressivenss, Chemoresistance And Invasiveness In High Grade Serous Ovarian Cancer, Linda Sanderman
Electronic Theses, Projects, and Dissertations
High Grade Serous Ovarian Cancer (HGSOC) is one of the deadliest gynecological diseases in the United States ranking fifth in cancer deaths among women. Approximately 22 thousand new cases are expected to occur in the year 2020, and unfortunately, it is estimated that 14 thousand women will succumb to the disease; the incidence to death ratio, 64%, remains high despite current research. Current treatment includes debulking surgery followed by combinatorial chemotherapeutics with platinum-based and taxol-based compounds. But despite aggressive surgery and standard-of-care chemotherapeutics, 80% of patients will experience a recurrence and only 15-30% of those with recurring disease will respond …
Thymosin Β4 Dynamics During Chicken Enteroid Development,
2020
University of Arkansas, Fayetteville
Thymosin Β4 Dynamics During Chicken Enteroid Development, Mohan Acharya, Rohana Liyanage, Anamika Gupta, Komala Arsi, Ann M. Donoghue, Jackson O. Lay Jr., Narayan Rath
Poultry Science Faculty Publications and Presentations
The sheared avian intestinal villus-crypts exhibit high tendency to self-repair and develop enteroids in culture. Presuming that this transition process involves differential biomolecular changes, we employed matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF–MS) to find whether there were differences in the spectral profiles of sheared villi versus the enteroids, assessed in the mass range of 2–18 kDa. The results showed substantial differences in the intensities of the spectral peaks, one particularly corresponding to the mass of 4963 Da, which was significantly low in the sheared villus-crypts compared with the enteroids. Based on our previous results with other avian …
Protonic Capacitor: Elucidating The Biological Significance Of Mitochondrial Cristae Formation,
2020
Old Dominion University
Protonic Capacitor: Elucidating The Biological Significance Of Mitochondrial Cristae Formation, James Weifu Lee
Chemistry & Biochemistry Faculty Publications
For decades, it was not entirely clear why mitochondria develop cristae? The work employing the transmembrane-electrostatic proton localization theory reported here has now provided a clear answer to this fundamental question. Surprisingly, the transmembrane-electrostatically localized proton concentration at a curved mitochondrial crista tip can be significantly higher than that at the relatively flat membrane plane regions where the proton-pumping respiratory supercomplexes are situated. The biological significance for mitochondrial cristae has now, for the first time, been elucidated at a protonic bioenergetics level: 1) The formation of cristae creates more mitochondrial inner membrane surface area and thus more protonic capacitance for …
Pegylated Block Copolymer For Cancer Imaging And Treatment,
2020
New Jersey Institute of Technology
Pegylated Block Copolymer For Cancer Imaging And Treatment, Sweety Singh
Dissertations
Gene theranostics have emerged as an important tool for the treatment of cancer as well as other diseases. Among the challenges in this field is the lack of effective vectors to chaperone plasmids into cells while the vector itself exhibits minimal toxicity. Herein, the synthesis, cellular uptake, and gene delivery using a biocompatible norbornene-based block copolymer is reported. This block copolymer, bearing polyethylene glycol moieties along with primary amines is functionalized with both a boron dipyrromethene (BODIPY) fluorophore for fluorescence tracking and a folic acid derivative for cancer cell targeting.
Stoichiometry control afforded residual unreacted amine functional groups available to …
Spatiotemporal Characterization Of Anterior Segment Mesenchyme Heterogeneity During Zebrafish Ocular Anterior Segment Development,
2020
University of Kentucky
Spatiotemporal Characterization Of Anterior Segment Mesenchyme Heterogeneity During Zebrafish Ocular Anterior Segment Development, Kristyn L. Van Der Meulen, Oliver Vöcking, Megan L. Weaver, Nishita N. Meshram, Jakub K. Famulski
Biology Faculty Publications
Assembly of the ocular anterior segment (AS) is a critical event during development of the vertebrate visual system. Failure in this process leads to anterior segment dysgenesis (ASD), which is characterized by congenital blindness and predisposition to glaucoma. The anterior segment is largely formed via a neural crest-derived population, the Periocular Mesenchyme (POM). In this study, we aimed to characterize POM behaviors and transcriptional identities during early establishment of the zebrafish AS. Two-color fluorescent in situ hybridization suggested that early AS associated POM comprise of a heterogenous population. In vivo and time-course imaging analysis of POM distribution and migratory dynamics …
Rapamycin Treatment Correlates Changes In Primary Cilia Expression With Cell Cycle Regulation In Epithelial Cells,
2020
Chapman University
Rapamycin Treatment Correlates Changes In Primary Cilia Expression With Cell Cycle Regulation In Epithelial Cells, Maha Jamal, Ane C.F. Nunes, Nosratola D. Vaziri, Ramani Ramchandran, Robert L. Bacallao, Andromeda M. Nauli, Surya M. Nauli
Pharmacy Faculty Articles and Research
Primary cilia are sensory organelles that regulate cell cycle and signaling pathways. In addition to its association with cancer, dysfunction of primary cilia is responsible for the pathogenesis of polycystic kidney disease (PKD) and other ciliopathies. Because the association between cilia formation or length and cell cycle or division is poorly understood, we here evaluated their correlation in this study. Using Spectral Karyotyping (SKY) technique, we showed that PKD and the cancer/tumorigenic epithelial cells PC3, DU145, and NL20-TA were associated with abnormal ploidy. We also showed that PKD and the cancer epithelia were highly proliferative. Importantly, the cancer epithelial cells …
Determining The Genetic Control Of Neural Tube Malformation Through Genetic Interactions With Idgf3,
2020
Seattle Pacific University
Determining The Genetic Control Of Neural Tube Malformation Through Genetic Interactions With Idgf3, Elli N. Fox
Honors Projects
Genetic mutations disrupting human neural tube formation can lead to birth defects such as spina bifida and anencephaly. Defects can result in lack of neural tube closure in either the caudal (spina bifida) or cranial (anencephaly) regions. Little is known about the genes that cause these malformations. Researchers have been using the model organism Drosophila melanogaster in an attempt to determine genes responsible for neural tube malformations. Recently, an ortholog of human chitin-like protein, imaginal disc growth factor 3 (Idgf3), has been identified as important in the proper formation of Drosophila egg dorsal appendages. However, the molecular mechanism responsible for …
