Open Access. Powered by Scholars. Published by Universities.®

Chemicals and Drugs Commons

Open Access. Powered by Scholars. Published by Universities.®

Enzymes and Coenzymes

Institution
Keyword
Publication Year
Publication
Publication Type
File Type

Articles 211 - 240 of 276

Full-Text Articles in Chemicals and Drugs

Enzymatic Hydrolysis Of Biomass At High-Solids Loadings – A Review, Alicia A. Modenbach, Sue E. Nokes Sep 2013

Enzymatic Hydrolysis Of Biomass At High-Solids Loadings – A Review, Alicia A. Modenbach, Sue E. Nokes

Biosystems and Agricultural Engineering Faculty Publications

Enzymatic hydrolysis is the unit operation in the lignocellulose conversion process that utilizes enzymes to depolymerize lignocellulosic biomass. The saccharide components released are the feedstock for fermentation. When performed at high-solids loadings (≥ 15% solids, w/w), enzymatic hydrolysis potentially offers many advantages over conversions performed at low- or moderate-solids loadings, including increased sugar and ethanol concentrations and decreased capital and operating costs.

The goal of this review is to provide a consolidated source of information on studies using high-solids loadings in enzymatic hydrolysis. Included in this review is a brief discussion of the limitations, such as a lack of available …


Rescuing Acetylcholinesterase From Nerve Agent Inhibition: Protein Dynamics Driven Drug Discovery, Aiyana M. Emigh, Brian Bennion Jan 2013

Rescuing Acetylcholinesterase From Nerve Agent Inhibition: Protein Dynamics Driven Drug Discovery, Aiyana M. Emigh, Brian Bennion

STAR Program Research Presentations

Severe morbidity and mortality consequences result from irreversible inhibition of human acetylcholinesterase by organophosphates (OPs). Oxime-based reactivators are currently the only available treatments but lack efficacy in the central nervous system (CNS) where the most damage occurs. Computational docking and molecular dynamics (MD) simulations reveal complex structural barriers that may reduce oxime efficacy. These results may guide future drug designs of more effective countermeasures.


Synthesis Of Pyrazolo[3,4-D]Pyrimidine Derivatives And Evaluation Of Their Src Kinase Inhibitory Activities, Anil Kumar, Guofeng Ye, Xianfeng Gu, Yuehao Wang, Gongqin Sun, Keykavous Parang Jan 2013

Synthesis Of Pyrazolo[3,4-D]Pyrimidine Derivatives And Evaluation Of Their Src Kinase Inhibitory Activities, Anil Kumar, Guofeng Ye, Xianfeng Gu, Yuehao Wang, Gongqin Sun, Keykavous Parang

Pharmacy Faculty Articles and Research

A series of pyrazolo[3,4-d]pyrimidine derivatives was synthesized and evaluated for the Src kinase inhibitory activities. Compound 6e and 10c exhibited inhibition of Src kinase with an IC50 value of 5.6 and 5.1 μM, respectively. Hydroxamate derivative 15a was found to be a metal-mediated inhibitor for human Csk with an IC50 value of 2.0 μM showing 56-fold selectivity over Src kinase inhibition.


Biosynthetic Pathway Of The Aminoribosyl Component Of Lipopeptidyl Nucleoside Antibiotics, Xiuling Chi Jan 2013

Biosynthetic Pathway Of The Aminoribosyl Component Of Lipopeptidyl Nucleoside Antibiotics, Xiuling Chi

Theses and Dissertations--Pharmacy

Several lipopeptidyl nucleoside antibiotics that inhibit bacterial translocase I (MraY) involved in peptidoglycan cell wall biosynthesis contain an aminoribosyl moiety, an unusual sugar appendage in natural products. A-90289 and muraminomicin are the two representative antibiotics that belong to this family. Bioinformatic analysis of the biosynthetic A-90289 gene clusters revealed that five enzymes are likely involved in the assembly and attachment of the aminoribosyl unit. These enzymes of A-90289 are functionally assigned by in vitro characterization. The results reveal a unique ribosylation pathway that highlighted by uridine-5′-monophosphate as the source of the sugar, a phosphorylase strategy to generate a sugar-1-phosphate, and …


Key Players In Reverse Cholesterol Transport: The Plasma Enzyme Lcat, Christopher J. Pechura Sep 2012

Key Players In Reverse Cholesterol Transport: The Plasma Enzyme Lcat, Christopher J. Pechura

Undergraduate Research Posters 2012

Lecithin cholesterol acyltransferase (LCAT) is a plasma enzyme that remodels nascent high density lipoprotein (HDL) into a mature form called spherical HDL. The model will be used in the future to map the amino acid residues from LCAT and the protein component of nascent HDL (apoA1) involved in mutual interaction, and to identify LCAT residues interacting with the lipid phase of nascent HDL.


Expression And Distribution Of Thiol-Regulating Enzyme, Glutaredoxin 2 In Porcine Ocular Tissues, Bijaya Prasad Upadhyaya Aug 2012

Expression And Distribution Of Thiol-Regulating Enzyme, Glutaredoxin 2 In Porcine Ocular Tissues, Bijaya Prasad Upadhyaya

School of Veterinary and Biomedical Sciences: Dissertations, Theses, and Student Research

Glutaredoxin 2 (Grx2), a thiol-regulating enzyme of oxidoreductase family and a mitochondrial isozyme of glutaredoxin 1, was discovered 11 years ago in our laboratory. Grx2 is present in the lens where it shows dethiolase, peroxidase, and ascorbate recycling activities. Recently, Grx2 has also been identified to protect the mitochondrial electron transport system with anti-apoptotic function. Since other eye tissues besides the lens are rich in mitochondria and are very sensitive to oxidative stress, we speculate the presence of Grx2 therein as an important redox regulator. This study is to investigate the expression and distribution of Grx2 in ocular tissues using …


Selectivity Of The Ubiquitin-Binding Modules, Simin Rahighi, Ivan Dikic May 2012

Selectivity Of The Ubiquitin-Binding Modules, Simin Rahighi, Ivan Dikic

Pharmacy Faculty Articles and Research

Ubiquitin-binding modules are constituents of cellular proteins that mediate the effects of ubiquitylation by making transient, non-covalent interactions with ubiquitin molecules. While some ubiquitin- binding modules bind single ubiquitin moieties, others are selective for specific ubiquitin chains of different linkage types and lengths. In recent years, functions of ubiquitin chains that are polymerized through their Lys or N-terminal Met (i.e. linear chains) residues have been linked to a variety of cellular processes. Selectivity of ubiquitin-binding modules for different ubiquitin chain types appears as a key to the distinct regulatory consequences during protein quality control pathways, receptor endocytosis, gene transcription, signaling …


The Molecular Basis Of Fitness And Transmissibility Of Neuraminidase Inhibitor Resistant Influenza A Viruses, Susu Duan May 2012

The Molecular Basis Of Fitness And Transmissibility Of Neuraminidase Inhibitor Resistant Influenza A Viruses, Susu Duan

Theses and Dissertations (ETD)

Neuraminidase (NA) inhibitors including oral oseltamivir and inhaled zanamivir are among the first line of defense against influenza virus infection. Development of resistance to NA inhibitors is a huge drawback for limited options for the control of influenza. During the first decade of NA inhibitor use, the detection rates of resistance to both NA inhibitors had remained low in circulating influenza viruses. However, the 2008~2009 season was marked by a radical increase of prevalence of oseltamvir resistance from <1% to >90% in worldwide surveillance in less than a year. The resistance was solely linked to NA H275Y variants of seasonal H1N1 viruses, …


A Proposal To Test The Effects Of Factor Ecat1 On Pluripotency, From Reprogramming To Differentiation Of Human Somatic Cells, Vritti R. Goel Jan 2012

A Proposal To Test The Effects Of Factor Ecat1 On Pluripotency, From Reprogramming To Differentiation Of Human Somatic Cells, Vritti R. Goel

CMC Senior Theses

The field of stem cell research has been growing more because of the interest in using stem cells to cure diseases and heal injuries. Human embryonic stem cells, because of the controversy surrounding them—and subsequently the difficulties in acquiring samples of the existing aging cell lines—can only be used in limited capacities. While the development of induced pluripotent stem cells in the last decade has allowed the field to progress closer to medical treatments, the low efficiency of reprogramming a somatic cell to a pluripotent state, and the vast molecular and genomic differences between human embryonic stem cells and human …


Enantioselective Demethylation: The Key To The Nornicotine Enantiomeric Composition In Tobacco Leaf, Bin Cai Jan 2012

Enantioselective Demethylation: The Key To The Nornicotine Enantiomeric Composition In Tobacco Leaf, Bin Cai

Theses and Dissertations--Plant and Soil Sciences

Nicotine and nornicotine are the two main alkaloids that accumulate in Nicotiana tabacum L. (tobacco), and nornicotine is the N-demethylation metabolite of nicotine. Nicotine is synthesized in the root, and probably primarily in the root tip. Both nicotine and nornicotine exist as two isomers that differ from each other by the orientation of H atom at the C-2' position on the pyrrolidine ring. (S)-nicotine is the dominant form in tobacco leaf and the enantiomer fraction of nicotine (EFnic), the fraction of (R)-enantiomer over the total nicotine, is approximately 0.002. Despite considerable efforts to elucidate nicotine and nornicotine …


Inhibition Of Cysteine Protease By Platinum (Ii) Diamine Complexes, Chaitanya Rapolu Dec 2011

Inhibition Of Cysteine Protease By Platinum (Ii) Diamine Complexes, Chaitanya Rapolu

Masters Theses & Specialist Projects

Chemotherapy is the first line of treatment used in cancer. Chemotherapy drugs such as cisplatin, carboplatin and oxaliplatin are used in treatment. Cisplatin enters the cell through copper transporter CTR1 by passive diffusion and bind to DNA and proteins. Cisplatin is found to inhibit several enzymes targeting cysteine, histidine and methionine residues, which are expected to be responsible for its anticancer activity. A better understanding of how the size and shape and leaving ligands of platinum complexes affect cysteine protease, papain enzyme are studied. This could give new ways to optimize anticancer activity. The activity of papain enzyme was measured …


Cloning, Expression, And Characterization Of The Aminoethylphosphonate Pathway In Trypanosoma Cruzi, Samuel I. Rodriguez^, Esteban M. Cordero, Igor C. Almeida* Jul 2011

Cloning, Expression, And Characterization Of The Aminoethylphosphonate Pathway In Trypanosoma Cruzi, Samuel I. Rodriguez^, Esteban M. Cordero, Igor C. Almeida*

COURI Symposium Abstracts, Summer 2011

No abstract provided.


A Survey Of Oxidative Paracatalytic Reactions Catalyzed By Enzymes That Generate Carbanionic Intermediates: Implications For Ros Production, Cancer Etiology, And Neurodegenerative Diseases, Victoria Bunik, John Schloss, John T. Pinto, Natalia Dudareva, Arthur J L Cooper Feb 2011

A Survey Of Oxidative Paracatalytic Reactions Catalyzed By Enzymes That Generate Carbanionic Intermediates: Implications For Ros Production, Cancer Etiology, And Neurodegenerative Diseases, Victoria Bunik, John Schloss, John T. Pinto, Natalia Dudareva, Arthur J L Cooper

NYMC Faculty Publications

Enzymes that generate carbanionic intermediates often catalyze paracatalytic reactions with O2 and other electrophiles not considered “normal” reactants. For example, pyridoxal 5′-phosphate (PLP)—containing pig kidney dopa decarboxylase oxidizes dopamine with molecular O2 to 3,4-dihydroxyphenylacetaldehyde at about 1% of the rate at which it catalyzes nonoxidative dopa decarboxylation. The mutant Y332F enzyme, however, catalyzes stoichiometric conversion of dopa to 3,4-dihydroxyphenylacetaldehyde, suggesting that even minor structural changes may alter or initiate paracatalytic reactions catalyzed by certain enzymes. Carbanions generated by several thiamine diphosphate (ThDP)—dependent enzymes react with different electrophiles, transforming some xenobiotics and endogenous compounds into potentially biologically hazardous products. The detrimental …


Substituted Coumarin Derivatives: Synthesis And Evaluation Of Antiproliferative And Src Kinase Inhibitory Activities, Abha Kathuria, Sarah Jalal, Rakesh Tiwari, Amir Nasrolahi Shirazi, Shilpi Gupta, Shiv Kumar, Keykavous Parang, Sunil K. Sharma Jan 2011

Substituted Coumarin Derivatives: Synthesis And Evaluation Of Antiproliferative And Src Kinase Inhibitory Activities, Abha Kathuria, Sarah Jalal, Rakesh Tiwari, Amir Nasrolahi Shirazi, Shilpi Gupta, Shiv Kumar, Keykavous Parang, Sunil K. Sharma

Pharmacy Faculty Articles and Research

Six classes of coumarin derivatives (i.e. 3-alkyl-4-methylcoumarins, pyranocoumarins, coumarin carboxamides, quaternary ammonium coumarins, 7-aminocoumarins, and 4-aminocoumarins) were synthesized and evaluated for inhibition of cell proliferation of colon adenocarcinoma (HT-29), breast carcinoma (MDA-MB-468 or MCF-7), and human ovarian adenocarcinoma (SK-OV-3) cells. C-3-Alkyl substituted analogs of 4-methylcoumarins and pyranocoumarins, 5 and 6, inhibited the cell proliferation of MDA-MB-468 and SK-OV-3 cells by 53-74%, while 3-decyl substituted pyranocoumarin 10 and triethyl substituted quaternary ammonium coumarin derivative 29 inhibited the cell proliferation of HT-29 and SK-OV-3 cells by 63-72% at a concentration of 50 μM. Among all the compounds studied, C-3 decyl substituted quaternary …


Synthesis, Biochemical And Molecular Modelling Studies Of Antiproliferative Azetidinones Causing Microtubule Disruption And Mitotic Catastrophe, Niamh O'Boyle, Miriam Carr, Lisa M. Greene, Niall O. Keely, Andrew Js Knox, Thomas Mccabe, David G. Lloyd, Daniela M. Zisterer, Mary J. Meegan Jan 2011

Synthesis, Biochemical And Molecular Modelling Studies Of Antiproliferative Azetidinones Causing Microtubule Disruption And Mitotic Catastrophe, Niamh O'Boyle, Miriam Carr, Lisa M. Greene, Niall O. Keely, Andrew Js Knox, Thomas Mccabe, David G. Lloyd, Daniela M. Zisterer, Mary J. Meegan

Articles

The structure-activity relationships of antiproliferative β-lactams, focusing on modifications at the 4-position of the β-lactam ring, is described. Synthesis of this series of compounds was achieved utilizing the Staudinger and Reformatsky reactions. The antiproliferative activity was assessed in MCF-7 cells, where the 4-(4-ethoxy)phenyl substituted compound 26 displayed the most potent activity with an IC50 value of 0.22 μM. The mechanism of action was demonstrated to be by inhibition of tubulin. Cell exposure to combretastatin A-4 and 26 led to arrest of MCF-7 cells in the G2/M phase of the cell cycle and induction of apoptosis. Additionally, mitotic catastrophe for …


Mechanisms Of Oxidant Generation By Catalase, Diane E. Heck, Michael Shakarjian, Hong-Duck Kim, Jeffrey Laskin, Anna M. Vetrano Aug 2010

Mechanisms Of Oxidant Generation By Catalase, Diane E. Heck, Michael Shakarjian, Hong-Duck Kim, Jeffrey Laskin, Anna M. Vetrano

NYMC Faculty Publications

The enzyme catalase converts solar radiation into reactive oxidant species (ROS). In this study, we report that several bacterial catalases (hydroperoxidases, HP), including Escherichia coli HP-I and HP-II also generate reactive oxidants in response to ultraviolet B light (UVB). HP-I and HP-II are identical except for the presence of NADPH. We found that only one of the catalases, HPI, produces oxidants in response to UVB light, indicating a potential role for the nucleotide in ROS production. This prompts us to speculate that NADPH may act as a cofactor regulating ROS generation by mammalian catalases. Structural analysis of the NADPH domains …


Pompe’S Disease And The Effects Of Alpha-Glucosidase Deficiency, Aaron Richler Jan 2010

Pompe’S Disease And The Effects Of Alpha-Glucosidase Deficiency, Aaron Richler

The Science Journal of the Lander College of Arts and Sciences

The following is an excerpt from the introduction of this article: The energy that the body needs in order to function is obtained from carbohydrates that we get through our diet. These carbohydrates are monosacharides, disaccharides and polysacharides. The polysaccharides and disaccharides are hydrolyzed to monosaccharide’s such glucose (which comprises roughly 80%) fructose and galactose. Most cells convert the fructose and galactose to glucose. The body can use the glucose or store it. If energy is needed, glucose can be oxidized through the many reactions of glycolysis which gives a net production of 2 ATP and 2 NADH from one …


Insights Into Btb-Cul3 Ubiquitin Ligases From The Structures Of Spop-Substrate Complexes, Min Zhuang May 2009

Insights Into Btb-Cul3 Ubiquitin Ligases From The Structures Of Spop-Substrate Complexes, Min Zhuang

Theses and Dissertations (ETD)

Cullin-Ring ubiquitin ligases (CRLs) are E3 complexes that specifically recognize substrates through substrate adaptors. In the largest CRL subfamily, Cul3 binds a BTB domain, and a protein-interaction domain such as MATH recruits substrates for ubiquitination. Here we present biochemical and structural analyses of the MATH and BTB domain containing protein, SPOP, which regulates diverse signaling pathways. First, we identified a conserved SPOP Binding Consensus (SBC) motif in the transcriptional regulator Ci, the protein phosphatase Puc, and the chromatin component MacroH2A. The SBC motif specifically binds the MATH domain of SPOP, and is required for Puc ubiquitination in vitro and in …


Multimeric Hemicellulases Facilitate Biomass Conversion, Zhanmin Fan, Kurt Wagschal, Wei Chen, Michael D. Montross, Charles C. Lee, Ling Yuan Mar 2009

Multimeric Hemicellulases Facilitate Biomass Conversion, Zhanmin Fan, Kurt Wagschal, Wei Chen, Michael D. Montross, Charles C. Lee, Ling Yuan

Plant and Soil Sciences Faculty Publications

Two highly active trifunctional hemicellulases were constructed by linking the catalytic portion of a xylanase with an arabinofuranosidase and a xylosidase, using either flexible peptide linkers or linkers containing a cellulose-binding domain. The multifunctional enzymes retain the parental enzyme properties and exhibit synergistic effects in hydrolysis of natural xylans and corn stover.


Toward The Synthesis Of Nuclease Models., Enni Nina Fomumbod May 2008

Toward The Synthesis Of Nuclease Models., Enni Nina Fomumbod

Electronic Theses and Dissertations

Nucleases are enzymes that can specifically recognize nucleic acids and hydrolyze their phosphodiester bonds effectively. As is the case with many hydrolases, nucleases often carry one or more metal centers. Cooperation between such metal centers and other interactions involving general acid-base activities are believed to be essential in multifunctional catalyses. Combination of such interactions in model compounds often resulted in larger than additive effects.

This work is aimed at synthesizing nuclease models that combine the ability to recognize phosphate groups and/or nitrogen bases of DNA together with the ability to catalyze phosphodiester hydrolysis. These models were designed to achieve optimum …


Expression, Purification, And Characterization Of The Mast Cell Proteases Chymase And Cathepsin G., Brent E. Lockhart May 2008

Expression, Purification, And Characterization Of The Mast Cell Proteases Chymase And Cathepsin G., Brent E. Lockhart

Electronic Theses and Dissertations

Human mast cells have been associated with wound healing, allergies, inflammation, and defense against pathogens and have been detected in tissues close to blood vessels especially in the areas between the inside of the body and the external environment, such as the skin, lungs, digestive tract, mouth, and nose. Previous studies have shown that mast cells contain large granules filled with histamine, heparin, cytokines, eicosanoids, and the serine proteases, tryptase, Chymase, and cathepsin G (CatG). These proteases are stored and released from mast-cell granules upon activation by antigen binding to IgE immunoglobulins on the cell surface or by direct injury. …


Cdc45 Function Alters Cell Sensitivity To Dna Topoisomerase I Poisons, Cynthia Sue Lancaster May 2008

Cdc45 Function Alters Cell Sensitivity To Dna Topoisomerase I Poisons, Cynthia Sue Lancaster

Theses and Dissertations (ETD)

Eukaryotic DNA topoisomerase I (Top1) is a highly conserved enzyme that functions to manage the torsional strain of DNA during cellular processes such as transcription, replication, chromatid condensation and recombination. The enzyme binds duplex DNA and through a series of strand cleavage and religation reactions removes positive or negative supercoils relieving torsional strain. Top1 is the sole cellular target of the anticancer agent camptothecin, which stabilizes the covalent complex. CPT cytotoxicity is S-phase dependent. It has been suggested that the mechanism of this S-phase toxicity is due to the advancing replication forks either colliding with the stabilized drug-enzyme-DNA intermediate or …


Enzymatic Processing Of Amelogenin During Continuous Crystallization Of Apatite, Vuk Uskoković, M.-K. Kim, W. Li, S. Habelitz Jan 2008

Enzymatic Processing Of Amelogenin During Continuous Crystallization Of Apatite, Vuk Uskoković, M.-K. Kim, W. Li, S. Habelitz

Pharmacy Faculty Articles and Research

Dental enamel forms through a protein-controlled mineralization and enzymatic degradation with a nanoscale precision that new engineering technologies may be able to mimic. Recombinant fulllength human amelogenin (rH174) and a matrix-metalloprotease (MMP-20) were employed in a pHstat titration system that enabled a continuous supply of calcium and phosphate ions over several days, mimicking the initial stages of matrix processing and crystallization in enamel in-vitro. Effects on the self-assembly and crystal growth from a saturated aqueous solution containing 0.4 mg/ml rH174 and MMP-20 with the weight ratio of 1:1000 with respect to rH174 were investigated. A transition from nanospheres to fibrous …


Enzyme Architecture And Flexibility Affect Dna Topoisomerase I Function, Mariè Van Der Merwe Dec 2007

Enzyme Architecture And Flexibility Affect Dna Topoisomerase I Function, Mariè Van Der Merwe

Theses and Dissertations (ETD)

DNA topoisomerase I (Top1) is a highly conserved enzyme composed of four domains: a positively charged N-terminus; a DNA binding/core domain that circumscribes duplex DNA; a non-conserved linker domain; and a C-terminal/catalytic domain. Top1 catalyzes changes in DNA topology by transient cleavage of a single DNA strand and the concomitant formation of a phosphotyrosyl linkage between the enzyme and the 3’ DNA end. This covalent Top1-DNA complex is the binding site for camptothecin (CPT), which selectively inhibits religation of the cleaved DNA strand. CPT binding stabilizes the covalent complex, while the collision of replication forks with CPT-Top1-DNA adducts produces DNA …


Heparin Modulates The 99-Loop Of Factor Ixa: Effects On Reactivity With Isolated Kunitz-Type Inhibitor Domains, Pierre F. Neuenschwander, Stephen R. Williamson, Armen Nalian, Kimberly J. Baker-Deadmond Jan 2006

Heparin Modulates The 99-Loop Of Factor Ixa: Effects On Reactivity With Isolated Kunitz-Type Inhibitor Domains, Pierre F. Neuenschwander, Stephen R. Williamson, Armen Nalian, Kimberly J. Baker-Deadmond

Faculty Publications

Reactivity of factor IXa with basic pancreatic trypsin inhibitor is enhanced by low molecular weight heparin (enoxaparin). Previous studies by us have suggested that this effect involves allosteric modulation of factor IXa. We examined the reactivity of factor IXa with several isolated Kunitz-type inhibitor domains: basic pancreatic trypsin inhibitor, the Kunitz inhibitor domain of protease Nexin-2, and the first two inhibitor domains of tissue factor pathway inhibitor. We find that enhancement of factor IXa reactivity by enoxaparin is greatest for basic pancreatic trypsin inhibitor (>10-fold), followed by the second tissue factor pathway inhibitor domain (1.7-fold) and the Kunitz inhibitor …


Novel Approaches For Designing 5'-O-Ester Prodrugs Of 3'-Azido-2'3'-Dideoxythymidine (Azt), Keykavous Parang, Leonard I. Wiebe, Edward E. Knaus Jan 2000

Novel Approaches For Designing 5'-O-Ester Prodrugs Of 3'-Azido-2'3'-Dideoxythymidine (Azt), Keykavous Parang, Leonard I. Wiebe, Edward E. Knaus

Pharmacy Faculty Articles and Research

3'-Azido-2'3'-dideoxythymidine (AZT, 1, zidovudine, RetrovirTM) is used to treat patients with human immunodeficiency virus (HIV) infection. AZT, after conversion to AZT-5'-triphosphate (AZT-TP) by cellular enzymes, inhibits HIV-reverse transcriptase (HIV-RT). The major clinical limitations of AZT are due to clinical toxicities that include bone marrow suppression, hepatic abnormalities and myopathy, absolute dependence on host cell kinase-mediated activation which leads to low activity, limited brain uptake, a sort half-life of about one hour in plasma that dictates frequent administration to maintain therapeutic drug levels, low potential for metabolic activation and/or high susceptibility to catabolism, and the rapid development of resistance by HIV-1. …


Optimization Of Solid-State Fermentation Parameters For The Production Of Xylanase By Trichoderma Longibrachiatum On Wheat Bran In A Forced Aeration System, Elizabeth R. Ridder, Sue E. Nokes, Barbara L. Knutson Nov 1999

Optimization Of Solid-State Fermentation Parameters For The Production Of Xylanase By Trichoderma Longibrachiatum On Wheat Bran In A Forced Aeration System, Elizabeth R. Ridder, Sue E. Nokes, Barbara L. Knutson

Biosystems and Agricultural Engineering Faculty Publications

The effect of aeration on the production of xylanase by Trichoderma longibrachiatum on wheat bran in a solid-state fermentation (SSF) system has not been investigated. This study was conducted to investigate the interactive effects of aeration, initial moisture content of the substrate, and depth of the substrate on xylanase activity produced in a tray fermenter. The experiment was conducted as a split plot experiment with factorial treatments and three replications of each treatment combination. The whole plot treatment was aeration rate (0, 2.9, 5.7 L/min/kg bran). Initial moisture content (45, 55, 65% w.b.) and depth of substrate (1.0 and 2.5 …


Optimization Of Solid-State Fermentation Parameters For The Production Of Xylanase By Trichoderma Longibrachiatum On Wheat Bran, Elizabeth R. Ridder, Sue E. Nokes, Barbara L. Knutson Sep 1998

Optimization Of Solid-State Fermentation Parameters For The Production Of Xylanase By Trichoderma Longibrachiatum On Wheat Bran, Elizabeth R. Ridder, Sue E. Nokes, Barbara L. Knutson

Biosystems and Agricultural Engineering Faculty Publications

Solid-state fermentation has the potential to produce inexpensive enzymes for use in high-volume industrial applications. Process parameters such as substrate moisture content and length of fermentation can have a significant effect on the amount and timing of enzyme production. This study was conducted in two stages, a screening stage and an optimization stage, to determine the effects of moisture content of the substrate, surfactant addition upon inoculation, depth of the substrate, and duration of fermentation on xylanase activity produced by Trichoderma longibrachiatum. Screening fermentations were conducted at 25°C, 50 and 75% wet basis moisture content (w.b.), 0.0 and 0.2% …


Localization Of Sodium, Potassium-Adenosine Triphosphatase In The Cerebral Cortex Of Developing Rats, Maki Ujiie Sep 1998

Localization Of Sodium, Potassium-Adenosine Triphosphatase In The Cerebral Cortex Of Developing Rats, Maki Ujiie

Loma Linda University Electronic Theses, Dissertations & Projects

Active transport via Na+, K+-ATPase plays an important role in establishing and maintaining proper ionic gradient across all mammalian cell membranes. A strict regulation of Na+, and K+ ion levels is especially important in excitable cells such as neurons and myocytes. Inhibition of the enzyme is associated with several pathological conditions and has serious detrimental effects on cerebral cortical cells. Yet the enzyme appears to be limited in amount and distribution in newborn rats. In this study, Na+, K+- ATPase expression and distribution in early postnatal rats were studied …


Development Of Fluorescent Techniques In The Kinetic Characterization Of Reverse Transcriptase, Kevin Kevin Howerton Jul 1998

Development Of Fluorescent Techniques In The Kinetic Characterization Of Reverse Transcriptase, Kevin Kevin Howerton

Chemistry & Biochemistry Theses & Dissertations

Reverse transcriptase (RT) is an RNA-directed DNA polymerase isolated from human immunodeficiency virus (HIV) and other retroviruses. It has been the primary target for anti-HIV research since the discovery of its vital role in the retroviral life-cycle. The conventional method for carrying out kinetic characterization and inhibition studies of reverse transcriptase involves the use of radioactive materials. Although this method is effective, it is both time consuming, due to a necessary repeated washing step, and hazardous to the worker and environment. Furthermore, strict laws limit the use of radioactive materials to licensed workers and laboratories. In response to these concerns, …