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Articles 3481 - 3510 of 6993
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Oxidative Stress, Metabolomics Profiling, And Mechanism Of Local Anesthetic Induced Cell Death In Yeast, Cory Honsinger Thomas Boone, Ryan A. Grove, Dana Adamcova, Javier Seravalli, Jiri Adamec
Oxidative Stress, Metabolomics Profiling, And Mechanism Of Local Anesthetic Induced Cell Death In Yeast, Cory Honsinger Thomas Boone, Ryan A. Grove, Dana Adamcova, Javier Seravalli, Jiri Adamec
Department of Biochemistry: Faculty Publications
The World Health Organization designates lidocaine as an essential medicine in healthcare, greatly increasing the probability of human exposure. Its use has been associated with ROS generation and neurotoxicity. Physiological and metabolomic alterations, and genetics leading to the clinically observed adverse effects have not been temporally characterized. To study alterations that may lead to these undesirable effects, Saccharomyces cerevisiae grown on aerobic carbon sources to stationary phase was assessed over 6 h. Exposure of an LC50 dose of lidocaine, increased mitochondrial depolarization and ROS/RNS generation assessed using JC-1, ROS/RNS specific probes, and FACS. Intracellular calcium also increased, assessed by …
Toxoplasma Dj-1 Regulates Organelle Secretion By A Direct Interaction With Calcium-Dependent Protein Kinase 1, Matthew A. Child, Megan Garland, Ian Foe, Peter Madzelan, Moritz Treeck, Wouter A. Van Der Linden, Kristina Oresic Bender, Evanthie Weerapana, Mark A. Wilson, John C. Boothroyd, Michael L. Reese
Toxoplasma Dj-1 Regulates Organelle Secretion By A Direct Interaction With Calcium-Dependent Protein Kinase 1, Matthew A. Child, Megan Garland, Ian Foe, Peter Madzelan, Moritz Treeck, Wouter A. Van Der Linden, Kristina Oresic Bender, Evanthie Weerapana, Mark A. Wilson, John C. Boothroyd, Michael L. Reese
Department of Biochemistry: Faculty Publications
Human DJ-1 is a highly conserved and yet functionally enigmatic protein associated with a heritable form of Parkinson’s disease. It has been suggested to be a redox-dependent regulatory scaffold, binding to proteins to modulate their function. Here we present the X-ray crystal structure of the Toxoplasma orthologue Toxoplasma gondii DJ-1 (TgDJ-1) at 2.1-A resolution and show that it directly associates with calcium-dependent protein kinase 1 (CDPK1). The TgDJ-1 structure identifies an orthologously conserved arginine dyad that acts as a phospho-gatekeeper motif to control complex formation. We determined that the binding of TgDJ-1 to CDPK1 is sensitive to oxidation and calcium, …
Seasonal Switchgrass Ecotype Contributions To Soil Organic Carbon, Deep Soil Microbial Community Composition And Rhizodeposit Uptake During An Extreme Drought, Catherine E. Stewart, Damaris Roosendaal, Karolien Denef, Elizabeth Pruessner, Louise H. Comas, Gautam Sarath, Virginia L. Jin, Marty R. Schmer, Madhavan Soundararajan
Seasonal Switchgrass Ecotype Contributions To Soil Organic Carbon, Deep Soil Microbial Community Composition And Rhizodeposit Uptake During An Extreme Drought, Catherine E. Stewart, Damaris Roosendaal, Karolien Denef, Elizabeth Pruessner, Louise H. Comas, Gautam Sarath, Virginia L. Jin, Marty R. Schmer, Madhavan Soundararajan
Department of Biochemistry: Faculty Publications
The importance of rhizodeposit C and associated microbial communities in deep soil C stabilization is relatively unknown. Phenotypic variability in plant root biomass could impact C cycling through belowground plant allocation, rooting architecture, and microbial community abundance and composition. We used a pulse-chase 13C labeling experiment with compound-specific stable-isotope probing to investigate the importance of rhizodeposit C to deep soil microbial biomass under two switchgrass ecotypes (Panicum virgatum L., Kanlow and Summer) with contrasting root morphology. We quantified root phenology, soil microbial biomass (phospholipid fatty acids, PLFA), and microbial rhizodeposit uptake (13C-PLFAs) to 150 cm over …
Secs (Sinusoidal Endothelial Cells), Liver Microenvironment, And Fibrosis, Vaishaali Natarajan, Edward N. Harris, Srivatsan Kidambi
Secs (Sinusoidal Endothelial Cells), Liver Microenvironment, And Fibrosis, Vaishaali Natarajan, Edward N. Harris, Srivatsan Kidambi
Department of Biochemistry: Faculty Publications
Liver fibrosis is awound-healing response to chronic liver injury such as alcoholic/nonalcoholic fatty liver disease and viral hepatitis with no FDA-approved treatments. Liver fibrosis results in a continual accumulation of extracellular matrix (ECM) proteins and paves the way for replacement of parenchyma with nonfunctional scar tissue. The fibrotic condition results in drastic changes in the local mechanical, chemical, and biological microenvironment of the tissue. Liver parenchyma is supported by an efficient network of vasculature lined by liver sinusoidal endothelial cells (LSECs). These nonparenchymal cells are highly specialized resident endothelial cell type with characteristic morphological and functional features. Alterations in LSECs …
Gene Duplication And Neo-Functionalization In The Evolutionary And Functional Divergence Of The Metazoan Copper Transporters Ctr1 And Ctr2, Brandon L. Logeman, L. Kent Wood, Jaekwoon Lee, Dennis J. Thiele
Gene Duplication And Neo-Functionalization In The Evolutionary And Functional Divergence Of The Metazoan Copper Transporters Ctr1 And Ctr2, Brandon L. Logeman, L. Kent Wood, Jaekwoon Lee, Dennis J. Thiele
Department of Biochemistry: Faculty Publications
Copper is an essential element for proper organismal development and is involved in a range of processes, including oxidative phosphorylation, neuropeptide biogenesis, and connective tissue maturation. The copper transporter (Ctr) family of integral membrane proteins is ubiquitously found in eukaryotes and mediates the high-affinity transport of Cu_ across both the plasma membrane and endomembranes. Although mammalian Ctr1 functions as a Cu_ transporter for Cu acquisition and is essential for embryonic development, a homologous protein, Ctr2, has been proposed to function as a low-affinity Cu transporter, a lysosomal Cu exporter, or a regulator of Ctr1 activity, but …
Carbon And Acyl Chain Flux During Stress-Induced Triglyceride Accumulation By Stable Isotopic Labeling Of The Polar Microalga Coccomyxa Subellipsoidea C169, James W. Allen, Concetta C. Dirusso, Paul N. Black
Carbon And Acyl Chain Flux During Stress-Induced Triglyceride Accumulation By Stable Isotopic Labeling Of The Polar Microalga Coccomyxa Subellipsoidea C169, James W. Allen, Concetta C. Dirusso, Paul N. Black
Department of Biochemistry: Faculty Publications
Deriving biofuels and other lipoid products from algae is a promising future technology directly addressing global issues of atmospheric CO2 balance. To better understand the metabolism of triglyceride synthesis in algae, we examined their metabolic origins in the model species, Coccomyxa subellipsoidea C169, using stable isotopic labeling. Labeling patterns arising from [U-13C]glucose, 13CO2, or D2O supplementation were analyzed by GC-MS and/or LC-MS over time courses during nitrogen starvation to address the roles of catabolic carbon recycling, acyl chain redistribution, and de novo fatty acid (FA) synthesis during the expansion of the lipid …
Quantification Of Cell Signaling Networks Using Kinase Activity Chemosensors, Jon R. Beck, Edward N. Harris, Cliff I. Stains
Quantification Of Cell Signaling Networks Using Kinase Activity Chemosensors, Jon R. Beck, Edward N. Harris, Cliff I. Stains
Department of Biochemistry: Faculty Publications
The ability to directly determine endogenous kinase activity in tissue homogenates provides valuable insights into signaling aberrations that underlie disease phenotypes. When activity data is collected across a panel of kinases, a unique “signaling fingerprint” is generated that allows for discrimination between diseased and normal tissue. Here we describe the use of peptide-based kinase activity sensors to fingerprint the signaling changes associated with disease states. This approach leverages the phosphorylation-sensitive sulfonamido-oxine (Sox) fluorophore to provide a direct readout of kinase enzymatic activity in unfractionated tissue homogenates from animal models or clinical samples. To demonstrate the application of this technology, we …
Cloning And Characterization Of Bacterial Mannanase Isolated From Dynastes Hercules Larvae, Sitipon Leerawatthanakun
Cloning And Characterization Of Bacterial Mannanase Isolated From Dynastes Hercules Larvae, Sitipon Leerawatthanakun
Chulalongkorn University Theses and Dissertations (Chula ETD)
Bacterial isolate HM7 was isolated from Dynastes hercules larvae excrement. It was identified as Bacillus sp. by 16S rRNA gene analysis. When the bacteria were cultured for β-mannanase production in medium containing konjac flour it had the highest specific activity of 138 U/mg at 36 h, and when cultured in medium containing coconut meal it had the highest specific of 114 U/mg at 48 h. The 1089 base pairs long of a β-mannanase encoding gene (Man26HM7) was successfully cloned and expressed in Escherichia coli BL21 (DE3), using pET21-b expression system. The enzyme was purified and characterized. The optimal condition MAN26HM7catalysis …
Mechanisms Of Phytochemicals From Murraya Koenigii And Stevia Rebuadiana In Cell Model Of Diabetes, Hepatocellular Carcinoma And Cholangiocarcinoma Under Hyperglycemic Conditions, Nattakarn Nooron
Chulalongkorn University Theses and Dissertations (Chula ETD)
Diabetes mellitus (DM) is a group of metabolic disorders in which high blood glucose levels over a prolonged period, caused by deficiency of insulin production from the pancreas, or by the insulin resistance. Several epidemiological studies suggest that diabetic population is not only at increased risk of cardiovascular complications, but also at substantially higher risk of many types of malignancies. Hyperglycemia induced free radical reactive oxygen species (ROS) production, which is a major cause of cell injury and organ damage, especially affects pancreatic beta cells. Whereas insulin resistance in skeletal muscle tissue and adipocyte are the major sites of postprandial …
ความหลากชนิดของนกที่ใช้ประโยชน์จากหลังคาเขียวในกรุงเทพมหานคร, ปรมินทร์ เสนานันท์สกุล
ความหลากชนิดของนกที่ใช้ประโยชน์จากหลังคาเขียวในกรุงเทพมหานคร, ปรมินทร์ เสนานันท์สกุล
Chulalongkorn University Theses and Dissertations (Chula ETD)
หลังคาเขียวเพิ่มพื้นที่สีเขียวในเมืองและอาจรองรับสังคมนกโดยให้ที่พักพิง อาหารและแหล่งน้ำ งานวิจัยนี้ศึกษาความหลากชนิดของนกและรูปแบบการใช้ประโยชน์บนหลังคาเขียว 7 แห่งในกรุงเทพมหานครที่มีขนาดพื้นที่และสัดส่วนพื้นที่สีเขียวแตกต่างกัน โดยสำรวจนกบนหลังคาเขียวทุกเดือนระหว่างเมษายน 2559-พฤษภาคม 2560 พบนกรวม 26 ชนิดและนกส่วนใหญ่เป็นนกประจำถิ่น พบนก 7-18 ชนิดบนหลังคาเขียว นกกินปลีอกเหลือง Cinnyris jugularis เป็นนกที่พบบนทุกหลังคาเขียว นกกระจอกบ้าน Passer montanus เป็นนกที่มีความชุกชุมสูงสุดโดยมักปรากฏเป็นฝูงใหญ่ พบนกอพยพบางชนิด เช่น นกอัญชันป่าขาเทา Rallina eurizonoides นกแซงแซวสีเทา Edolius leucophaeus นกขมิ้นท้ายทอยดำ Oriolus chinensis นกกระเบื้องผา Monticola solitarius และนกอีเสือสีน้ำตาล Lanius cristatus การหาอาหารและการเกาะพักเป็นรูปแบบการใช้ประโยชน์ที่มีความถี่สูงสุด (ร้อยละ 47 และ 31 ตามลำดับ) นกใช้ไม้ยืนต้นสำหรับการเกาะพักและการเคลื่อนที่ ลักษณะทางกายภาพและชีวภาพบางประการส่งผลต่อสังคมนกที่ใช้ประโยชน์บนหลังคาเขียว ดังนั้นหลังคาเขียวจึงมีศักยภาพในการอนุรักษ์ความหลากหลายทางชีวภาพในระบบนิเวศเมือง
Enzymatically Active Microspheres For Self-Propelled Colloidal Engines, Jungeun Park
Enzymatically Active Microspheres For Self-Propelled Colloidal Engines, Jungeun Park
Dissertations and Theses
Micro- and nano-motors have attracted numerous attentions from various scientific areas due to their potential applications. Most studies on self-propelled colloidal engines have exploited catalytic decomposition of hydrogen peroxide to drive the motor. Since the hydrogen peroxide is caustic, it is not suitable to use in biological applications, encouraging people to develop “greener” fuels. The aim of this research is to study a new transduction mechanism for self-propulsion not tied to hydrogen peroxide, and which can in particular be used with biological molecules as fuels. In this study, we focus on making particles with enzymatic activity which can effectively decompose …
Phage Display To Identify Functional Resistance Mutations To Rigosertib, Nedim Filipovic
Phage Display To Identify Functional Resistance Mutations To Rigosertib, Nedim Filipovic
CMC Senior Theses
In vitro protein selection has had major impacts in the field of protein engineering. Traditional screens assay individual proteins for specific function. Selection, however, analyzes a pool of mutants and yields the best variants. Phage display, a successful selection technique, also provides a reliable link between variant phenotype and genotype. It can also be coupled with high throughput sequencing to map protein mutations; potentially highlighting vital mutations in variants. We propose to apply this technique to cancer therapy. RAF, a serine/threonine kinase, is critical for cell regulation in mammals. RAF can be activated by oncogenic RAS, found in over 30% …
Comparative Proteomic Analyses Of The Parietal Lobe From Rhesus Monkeys Fed A High-Fat/Sugar Diet With And Without Resveratrol Supplementation, Relative To A Healthy Diet: Insights Into The Roles Of Unhealthy Diets And Resveratrol On Function, Aaron M. Swomley, Judy C. Triplett, Jeriel T. Keeney, Govind Warrier, Kevin J. Pearson, Julie A. Mattison, Rafael De Cabo, Jian Cai, Jon B. Klein, D. Allan Butterfield
Comparative Proteomic Analyses Of The Parietal Lobe From Rhesus Monkeys Fed A High-Fat/Sugar Diet With And Without Resveratrol Supplementation, Relative To A Healthy Diet: Insights Into The Roles Of Unhealthy Diets And Resveratrol On Function, Aaron M. Swomley, Judy C. Triplett, Jeriel T. Keeney, Govind Warrier, Kevin J. Pearson, Julie A. Mattison, Rafael De Cabo, Jian Cai, Jon B. Klein, D. Allan Butterfield
Chemistry Faculty Publications
A diet consisting of a high intake of saturated fat and refined sugars is characteristic of a Western-diet and has been shown to have a substantial negative effect on human health. Expression proteomics were used to investigate changes to the parietal lobe proteome of rhesus monkeys consuming either a high fat and sugar (HFS) diet, a HFS diet supplemented with resveratrol (HFS+RSV), or a healthy control diet for 2 years. Here we discuss the modifications in the levels of 12 specific proteins involved in various cellular systems including metabolism, neurotransmission, structural integrity, and general cellular signaling following a nutritional intervention. …
Biochemical And Histological Differences Between Costal And Articular Cartilages, Michael W. Stacey
Biochemical And Histological Differences Between Costal And Articular Cartilages, Michael W. Stacey
Bioelectrics Publications
Biologically, costal cartilage is an understudied tissue type and much is yet to be learned regarding underlying mechanisms related to form and function, and how these relate to disease states, specifically chest wall deformity. Chest wall deformities have a component of inheritance, implying underlying genetic causes; however the complexity of inheritance suggests multiple genetic components. At our Centre investigations were performed on gene expression of key select genes from costal cartilage removed at surgery of patients with chest wall deformity to show high expression of decorin, a key player in collagen fiber formation and growth. Also, the degree of tissue …
P120 Catenin Regulates Inflammation In Macrophage, Xiaoqing Guan
P120 Catenin Regulates Inflammation In Macrophage, Xiaoqing Guan
Wayne State University Dissertations
Objective: p120 catenin (p120ctn) has been reported to play a critical role in maintenance of the stability of adherens junctions. It also has potential anti-inflammatory effects in epithelial and endothelial cells. This research was designed to evaluate the effects of p120ctn on inflammatory responses in human macrophages upon LPS stimulation, as well as the possible mechanism by which p120ctn regulates LPS-induced proinflammatory response in macrophages. Methods: THP-1 cells were induced to differentiate into macrophages by PMA. The isoforms of p120ctn were identified via RT-PCR and Western blot. The expression of p120ctn was examined by Western blot in THP-1 derived macrophages …
Understanding The Mechanism Of Oxidative Stress Generation By Oxidized Dopamine Metabolites: Implications In Parkinson's Disease, Nihar Mehta
Wayne State University Dissertations
Oxidation of dopamine to toxic metabolites is considered to be one of the prime factors involved in the death of dopaminergic neurons in Parkinson’s disease. Some dopamine oxidation products have the capability to redox cycle in the presence of molecular oxygen, further contributing to oxidative stress. Therefore, our aim here was to study the redox cycling of dopamine oxidized metabolites and elucidate the underlying mechanism by which they cause oxidative stress.
Redox reactions involve transfer of one or more electrons between two compounds
resulting in either oxidation or reduction. In redox cycling, a compound undergoes
alternate oxidation and reduction, transferring …
Functional Analysis Of Sin3 Isoforms In Drosophila, Nirmalya Saha
Functional Analysis Of Sin3 Isoforms In Drosophila, Nirmalya Saha
Wayne State University Dissertations
he multisubunit SIN3 complex is a global transcriptional regulator. In Drosophila, a single Sin3A gene encodes different isoforms of SIN3, of which SIN3 187 and SIN3 220 are the major isoforms. Previous studies have demonstrated functional non-redundancy of SIN3 isoforms. The role of SIN3 isoforms in regulating distinct biological processes, however, is not well characterized. In addition, how the components of the SIN3 complex modulate the gene regulatory activity of the complex is not well understood. In this study, I identified the biological processes regulated by the SIN3 isoforms. Additionally, I explored how Caf1-55 impacts the gene regulatory activity of …
Sh3 And Multiple Ankyrin Repeat Domain 3 (Shank3) Affects The Expression Of Hyperpolarization-Activated Cyclic Nucleotide-Gated (Hcn) Channels In Mouse Models Of Autism, Nikhil N. Shah
Theses and Dissertations
SH3 and multiple ankyrin repeat domains 3 (SHANK3) is a multidomain scaffold protein that is highly augmented in the postsynaptic density (PSD) of excitatory glutamatergic synapses within the central and peripheral nervous systems. SHANK3 links neurotransmitter receptors, ion channels, and other critical membrane proteins to intracellular cytoskeleton and signal transduction pathways. Mutations in SHANK3 are linked with a number neuropsychiatric disorders including autism spectrum disorders (ASDs). Intellectual disability, impaired memory and learning, and epilepsy are some of the deficits commonly associated with ASDs that result from mutations in SHANK3. Interestingly, these symptoms show some clinical overlap with presentations of human …
Reversal Of The Npc Phenotype By Start Domain Proteins, Tavis H. Sparrer
Reversal Of The Npc Phenotype By Start Domain Proteins, Tavis H. Sparrer
Theses and Dissertations
Niemann Pick Type C (NPC) disease is a fatal childhood neurological disease caused by mutations in the NPC-1 protein, resulting in cholesterol buildup in the late endosomes. StarD4 and StarD5 are cholesterol binding proteins that play a role in the intracellular cholesterol transport. In this study we overexpress StarD4 and StarD5 in in vitro and in vivo models, and find evidence of amelioration of the NPC phenotype. This study demonstrates that the overexpression of these proteins has the potential to be a therapeutic treatment for NPC disease.
Plaster Creek Bacterial Monitoring And Source Tracking Project - Final Report, Randall J. Dejong
Plaster Creek Bacterial Monitoring And Source Tracking Project - Final Report, Randall J. Dejong
Faculty and Professional Research
The objective of this project was to identify important sources of bacterial loading in Plaster Creek (Kent County). The following goals were set to reach this objective: 1) the relative contributions of bacterial loading for 10 major tributaries will be assessed and the five most egregious contributors will be prioritized; 2) molecular markers will be used to try to identify the primary taxonomic sources, and 3) to pinpoint bacterial loading locations using molecular markers and scent-trained canines in sub-watersheds.
The Role Of Gln146 To The Stability And Activity Of Manganese Superoxide Dismutase, Ting Wang
The Role Of Gln146 To The Stability And Activity Of Manganese Superoxide Dismutase, Ting Wang
Theses and Dissertations--Chemistry
Gln146 is a highly conserved outer-sphere amino acid residue at the active site of MnSOD. It serves as a hydrogen bond donor to both the solvent molecules at the active site and Tyr 34, the conserved “gateway” amino acid residue. This dissertation develops our understanding of the effect of amino acid Gln146 at the second shell of the active site of metalloprotein MnSOD in facilitating metal binding, the modulation of redox potential, and the optimization of catalytic activity and structure stability. Different from the wild-type MnSOD, Q146E is always purified as a completely apo-protein with zero active metal ion and …
Illuminate The Pathway Of Membrane Protein Association And Degradation, Zhaoshuai Wang
Illuminate The Pathway Of Membrane Protein Association And Degradation, Zhaoshuai Wang
Theses and Dissertations--Chemistry
Escherichia coli transporter protein AcrB and its homologues are the inner membrane components of the Resistance-Nodulation-Division (RND) family efflux pumps in Gram-negative bacteria. It is well accepted that soluble proteins are only marginally stable, but such insight is missing for membrane proteins. The lack of stability data, including thermodynamic stability and oligomer association affinity is a result of intrinsic difficulties in working with membrane proteins. In addition, the degradation of soluble proteins in E. coli has been extensively studied whereas the degradation process of membrane proteins remains unclear. A focus of my thesis is the validation and development of methods …
Synthesis And Development Of Zwitterionic Pei (Zpei) For Optimized Delivery Of Nucleic Acids, Joseph Raleigh Duke Iii
Synthesis And Development Of Zwitterionic Pei (Zpei) For Optimized Delivery Of Nucleic Acids, Joseph Raleigh Duke Iii
Theses and Dissertations--Chemistry
Gene therapy holds promise for the treatment a wide range of diseases ranging from cystic fibrosis to cardiovascular disease to cancer. The need for safe and efficient gene delivery methods remains the primary barrier to human gene therapy. Non-viral vector materials, including polymers, can be designed to be biocompatible and non-immunogenic, but lack the efficiency to be clinically relevant. Gene therapy awaits the development of new materials that are both safe and efficient. Here, we have synthesized a series of modified zwitterionic polymers based on the common transfecting agent polyethylenimine (PEI). Using a variety of biochemical and biophysical methods we …
Engineering An Alkane-Hydroxylating Bacterial Monooxygenase: A Tale Of Two Chemistries, Arjun Nanda
Engineering An Alkane-Hydroxylating Bacterial Monooxygenase: A Tale Of Two Chemistries, Arjun Nanda
Pomona Senior Theses
Toluene / o-xylene monooxyenase (ToMO) from Pseudomonas sp. OX1 is a multimeric metalloenzyme enzyme that efficiently catalyzes the hydroxylation of aromatic hydrocarbons with high specificity. Though included in a larger group of conserved bacterial multicomponent monooxygenases (BMMs) studied as potential biocatalysts for industrial hydrocarbon chemistry, the substrate specificity and oxygenated intermediates of ToMO differ greatly from its well-characterized, alkane-hydroxylating analog sMMO. Despite a shared global topology and near identical active sites, sMMO can cleave inert C-H bonds in alkanes while ToMO cannot - two seemingly similar structures give rise to vastly different chemistries. This work seeks to determine a structural …
High-Throughput Single-Molecule Mapping Links Subtelomeric Variants And Long-Range Haplotypes With Specific Telomeres, Eleanor Young, Steven Pastor, Ramakrishnan Rajagopalan, Jennifer Mccaffrey, Justin Sibert, Angel C. Y. Mak, Pui-Yan Kwok, Harold Riethman, Ming Xiao
High-Throughput Single-Molecule Mapping Links Subtelomeric Variants And Long-Range Haplotypes With Specific Telomeres, Eleanor Young, Steven Pastor, Ramakrishnan Rajagopalan, Jennifer Mccaffrey, Justin Sibert, Angel C. Y. Mak, Pui-Yan Kwok, Harold Riethman, Ming Xiao
School of Medical Diagnostics & Translational Sciences Publications
Accurate maps and DNA sequences for human subtelomere regions, along with detailed knowledge of subtelomere variation and long-range telomereterminal haplotypes in individuals, are critical for understanding telomere function and its roles in human biology. Here, we use a highly automated whole genome mapping technology in nano-channel arrays to analyze large terminal human chromosome segments extending from chromosome-specific subtelomere sequences through subtelomeric repeat regions to terminal (TTAGGG) n repeat tracts. We establish detailed maps for subtelomere gap regions in the human reference sequence, detect many new large subtelomeric variants and demonstrate the feasibility of long-range haplotyping through segmentally duplicated subtelomere regions. …
Tissue Specific Microenvironments: A Key Tool For Tissue Engineering And Regenerative Medicine, Patrick C. Sachs, Peter A. Mollica, Robert D. Bruno
Tissue Specific Microenvironments: A Key Tool For Tissue Engineering And Regenerative Medicine, Patrick C. Sachs, Peter A. Mollica, Robert D. Bruno
School of Medical Diagnostics & Translational Sciences Publications
The accumulated evidence points to the microenvironment as the primary mediator of cellular fate determination. Comprised of parenchymal cells, stromal cells, structural extracellular matrix proteins, and signaling molecules, the microenvironment is a complex and synergistic edifice that varies tissue to tissue. Furthermore, it has become increasingly clear that the microenvironment plays crucial roles in the establishment and progression of diseases such as cardiovascular disease, neurodegeneration, cancer, and ageing. Here we review the historical perspectives on the microenvironment, and how it has directed current explorations in tissue engineering. By thoroughly understanding the role of the microenvironment, we can begin to correctly …
Characterization Of A Putative Hemolysin Expressed By Sneathia Amnii, A Preterm Birth-Associated Pathogen, Lizette Carrasco, Kimberly Jefferson
Characterization Of A Putative Hemolysin Expressed By Sneathia Amnii, A Preterm Birth-Associated Pathogen, Lizette Carrasco, Kimberly Jefferson
UROP Posters
The gram-negative bacteria Sneathia amnii is a poorly-characterized commensal of the female urogenital tract frequently associated with adverse clinical outcomes such as bacterial vaginosis (BV), amnionitis, and preterm labor. To investigate its potential role in virulence, we sought to identify and characterize virulence determinants produced by S. amnii in an effort to better understand the pathogenesis of infectious preterm birth. Through sequencing of the Sn35 genome (type strain of S. amnii), we identified two genes with amino acid sequence similarity and structural similarity to the filamentous hemagglutinin (FHA) protein of Bordetella pertussis and its Type Vb transporter. Because S. amnii …
The Extension Of Rbc Longevity And Functionality In The Prevention Of Graft Versus Host Disease, Shanmuka Gadiraju, Megh Kumar
The Extension Of Rbc Longevity And Functionality In The Prevention Of Graft Versus Host Disease, Shanmuka Gadiraju, Megh Kumar
UROP Posters
Given today’s current scientific method of preservation, red blood cells (RBCs) donated or drawn from live humans have a storage life of approximately 42 days, after which the blood will be discarded due to of degradation of the RBCs. The mechanism that drives said degradation is known as oxidative stress, in which the cells’ inability to balance out the creation and excretion of free radicals causes a conformational change in the shape and efficacy of RBCs. In order to counteract the oxidative actions upon the cells, it has been thought that the addition of reducing agents, specifically ascorbic acid, the …
Separation Of Blood Mixtures Using Fluorescently Labeled Antibodies, Dani Jabado
Separation Of Blood Mixtures Using Fluorescently Labeled Antibodies, Dani Jabado
UROP Posters
Identifying and analyzing biological mixture samples at a crime scene are of paramount concern for forensic scientists, especially if that type of evidence contains only one cell type. The presence of multiple contributors in a biological evidence sample reduces the probative value of DNA evidence and can sometimes lead to its eventual loss of value. As such, this study was performed in an attempt to examine and evaluate flow cytometry analysis as a means to separate blood mixture samples labeled with fluorescent antibodies. Fluorescein Isothiocyanate (FITC) antibodies were specifically targeted and bound to HLA (Human Leukocyte Antigens) markers present on …
Comparing An Atomic Model Or Structure To A Corresponding Cryo-Electron Microscopy Image At The Central Axis Of A Helix, Stephanie Zeil, Julio Kovacs, Willy Wriggers, Jing He
Comparing An Atomic Model Or Structure To A Corresponding Cryo-Electron Microscopy Image At The Central Axis Of A Helix, Stephanie Zeil, Julio Kovacs, Willy Wriggers, Jing He
Computer Science Faculty Publications
Three-dimensional density maps of biological specimens from cryo-electron microscopy (cryo-EM) can be interpreted in the form of atomic models that are modeled into the density, or they can be compared to known atomic structures. When the central axis of a helix is detectable in a cryo-EM density map, it is possible to quantify the agreement between this central axis and a central axis calculated from the atomic model or structure. We propose a novel arc-length association method to compare the two axes reliably. This method was applied to 79 helices in simulated density maps and six case studies using cryo-EM …