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Articles 2761 - 2790 of 3949
Full-Text Articles in Chemistry
Role Of Resonance-Enhanced Multiphoton Excitation In High-Harmonic Generation Of N-2: A Time-Dependent Density-Functional-Theory Study, Xi Chu, Gerrit C. Groenenboom
Role Of Resonance-Enhanced Multiphoton Excitation In High-Harmonic Generation Of N-2: A Time-Dependent Density-Functional-Theory Study, Xi Chu, Gerrit C. Groenenboom
Chemistry and Biochemistry Faculty Publications
A minimum at similar to 39 eV is observed in the high-harmonic-generation spectra of N-2 for several laser intensities and frequencies. This minimum appears to be invariant for different molecular orientations. We reproduce this minimum for a set of laser parameters and orientations in time-dependent density-functional-theory calculations, which also render orientation-dependent maxima at 23-26 eV. Photon energies of these maxima overlap with ionization potentials of excited states observed in photoelectron spectra. Time profile analysis shows that these maxima are caused by resonance-enhanced multiphoton excitation. We propose a four-step mechanism, in which an additional excitation step is added to the well-accepted …
Coupling Field And Laboratory Measurements To Estimate The Emission Factors Of Identified And Unidentified Trace Gases For Prescribed Fires, Robert J. Yokelson, I. R. Burling, J. Gilman, C. Warneke, C. Stockwell, J. De Gouw, S. K. Akagi, S. P. Urbanski, P. Veres, J. M. Roberts, W. C. Kuster, J. Reardon, David W. T. Griffith, T. J. Johnson, S. Hosseini, J. W. Miller, D. R. Cocker Iii, H. Jung, D. R. Weise
Coupling Field And Laboratory Measurements To Estimate The Emission Factors Of Identified And Unidentified Trace Gases For Prescribed Fires, Robert J. Yokelson, I. R. Burling, J. Gilman, C. Warneke, C. Stockwell, J. De Gouw, S. K. Akagi, S. P. Urbanski, P. Veres, J. M. Roberts, W. C. Kuster, J. Reardon, David W. T. Griffith, T. J. Johnson, S. Hosseini, J. W. Miller, D. R. Cocker Iii, H. Jung, D. R. Weise
Chemistry and Biochemistry Faculty Publications
An extensive program of experiments focused on biomass burning emissions began with a laboratory phase in which vegetative fuels commonly consumed in prescribed fires were collected in the southeastern and southwestern US and burned in a series of 71 fires at the US Forest Service Fire Sciences Laboratory in Missoula, Montana. The particulate matter (PM2.5) emissions were measured by gravimetric filter sampling with subsequent analysis for elemental carbon (EC), organic carbon (OC), and 38 elements. The trace gas emissions were measured by an open-path Fourier transform infrared (OP-FTIR) spectrometer, proton-transfer-reaction mass spectrometry (PTRMS), proton-transfer ion-trap mass spectrometry (PIT-MS), negative-ion proton-transfer …
Measurements Of Reactive Trace Gases And Variable O-3 Formation Rates In Some South Carolina Biomass Burning Plumes, S. K. Akagi, Robert J. Yokelson, I. R. Burling, S. Meinardi, Isobel J. Simpson, Donald R. Blake, G. R. Mcmeeking, A. Sullivan, T. Lee, S. Kreidenweis, S. P. Urbanski, J. Reardon, David W. T. Griffith, T. J. Johnson, D. R. Weise
Measurements Of Reactive Trace Gases And Variable O-3 Formation Rates In Some South Carolina Biomass Burning Plumes, S. K. Akagi, Robert J. Yokelson, I. R. Burling, S. Meinardi, Isobel J. Simpson, Donald R. Blake, G. R. Mcmeeking, A. Sullivan, T. Lee, S. Kreidenweis, S. P. Urbanski, J. Reardon, David W. T. Griffith, T. J. Johnson, D. R. Weise
Chemistry and Biochemistry Faculty Publications
In October-November 2011 we measured trace gas emission factors from seven prescribed fires in South Carolina (SC), US, using two Fourier transform infrared spectrometer (FTIR) systems and whole air sampling (WAS) into canisters followed by gas-chromatographic analysis. A total of 97 trace gas species were quantified from both airborne and ground-based sampling platforms, making this one of the most detailed field studies of fire emissions to date. The measurements include the first emission factors for a suite of monoterpenes produced by heating vegetative fuels during field fires. The first quantitative FTIR observations of limonene in smoke are reported along with …
Synthesis And Application Of Atp Analogs For Phosphorylation-Dependent Kinase-Substrate Crosslinking, Satish Kumar Garre Venkata Raghavendra
Synthesis And Application Of Atp Analogs For Phosphorylation-Dependent Kinase-Substrate Crosslinking, Satish Kumar Garre Venkata Raghavendra
Wayne State University Dissertations
Phosphorylation is an important post-translational modification that plays a key role in a variety of signaling cascades and cellular functions. Kinases phosphorylate protein substrates in a highly regulated manner and are promiscuous. Understanding kinase-substrate specificity has been challenging and there is a need for new chemical tools. To this end we developed -phosphate modified ATP photocrosslinking analogs ATP-ArN3 and ATP-BP, that crosslink substrate and kinase in a phosphorylation dependent manner. We have successfully demonstrated that ATP-ArN3 and ATP-BP can be used with natural kinase and substrates using cell lysates in vitro. We used our approach to identify novel kinases of …
Protein-Protein Interactions In The Neocortex: Emx2 And Its Binding Partners, Cierra Miller
Protein-Protein Interactions In The Neocortex: Emx2 And Its Binding Partners, Cierra Miller
Undergraduate Honors Theses
The mammalian neocortex is divided into discrete functional areas that are marked by distinct boundaries and whose positions are assigned through a process called neocortical arealization. One of the proteins involved in this process is Emx2, a transcription factor (protein that turns genes on and off) that is expressed, or made, in a gradient along the axis of the neocortex and determines the positions of these areal boundaries. In order to determine how Emx2 carries out this function of assigning areas, we have identified the proteins QKl-7 and Cnot61 as binding partners of Emx2.
Current research involves confirming the interactions …
The Cloning And Expression Of Histone Genes From The Archaeal Organisms Pyrococcus Furiosus And Methanobrevibacter Smithii In The Polycistronic Vector Pst44., Doha Abdullah Alqurashi
The Cloning And Expression Of Histone Genes From The Archaeal Organisms Pyrococcus Furiosus And Methanobrevibacter Smithii In The Polycistronic Vector Pst44., Doha Abdullah Alqurashi
Electronic Theses & Dissertations
The Euryarcheota branch of the Archaea contains histone proteins that are highly homologous to eukaryotic histones. Virtually all species within this group have two histone proteins (designated H1A and H2B). These proteins contain a canonical histone fold motif that stabilizes homo- and perhaps hetero-dimeric interactions. Molecular modeling calculations previously carried out in our laboratory revealed that both homo and hetero-dimers of histones from two euryarchaeal organisms are equally plausible. We have also shown through molecular modeling that inter-species hetero-dimers are structurally identical to existing solution structures archaeal histones. An interesting question that needs to be addressed is whether homo- and …
Development And Optimization Of The First High Throughput In Vitro Fret Assay To Characterize The Saccharomyces Cerevisiae Gpi-T, Sandamali Amarasingha Ekanayaka
Development And Optimization Of The First High Throughput In Vitro Fret Assay To Characterize The Saccharomyces Cerevisiae Gpi-T, Sandamali Amarasingha Ekanayaka
Wayne State University Dissertations
DEVELOPMENT AND OPTIMIZATION OF AN IN VITRO FRET ASSAY TO CHARACTERIZE THE SACCHAROMYCES CEREVISIAE GPI TRANSAMIDASE
By
SANDAMALI AMARASINGHA EKANAYAKA
December 2013
Advisor: Dr. Tamara L. Hendrickson
Major: Biochemistry
Degree: Doctor of Philosophy
The enzyme glycosylphosphatidylinositol transamidase (GPI-T) mediates the attachment of a glycosylphosphatidylinositol (GPI) anchor to the C-terminus of specific proteins to produce GPI anchored proteins. This post-translational modification is essential for viability of eukaryotic organisms. However, very little is known about GPI-T and its catalytic activity. Thus, the research described in this abstract was conducted to develop an in vitro assay to monitor GPI-T. A high-throughput assay for …
Characterization Of A Novel Fusion Protein Of Ipab And Ipad Of Shigella And Its Potential As A Pan-Shigella Vaccine, F. J. Martinez-Becerra, X. Chen, Nicholas E. Dickenson, S. P. Choudhari, K. Harrison, J. D. Clements, W. D. Picking, L. L. Van De Verg, R. I. Walker, W. L. Picking
Characterization Of A Novel Fusion Protein Of Ipab And Ipad Of Shigella And Its Potential As A Pan-Shigella Vaccine, F. J. Martinez-Becerra, X. Chen, Nicholas E. Dickenson, S. P. Choudhari, K. Harrison, J. D. Clements, W. D. Picking, L. L. Van De Verg, R. I. Walker, W. L. Picking
Chemistry and Biochemistry Faculty Publications
Shigellosis is an important disease in the developing world, where about 90 million people become infected with Shigella spp. each year. We previously demonstrated that the type three secretion apparatus (T3SA) proteins IpaB and IpaD are protective antigens in the mouse lethal pulmonary model. In order to simplify vaccine formulation and process development, we have evaluated a vaccine design that incorporates both of these previously tested Shigella antigens into a single polypeptide chain. To determine if this fusion protein (DB fusion) retains the antigenic and protective capacities of IpaB and IpaD, we immunized mice with the DB fusion and compared …
The Magnitude And Mechanism Of Charge Enhancement Of Ch∙∙O H-Bonds, U. Adhikari, Steve Scheiner
The Magnitude And Mechanism Of Charge Enhancement Of Ch∙∙O H-Bonds, U. Adhikari, Steve Scheiner
Chemistry and Biochemistry Faculty Publications
Quantum calculations find that neutral methylamines and thioethers form complexes, with N-methylacetamide (NMA) as proton acceptor, with binding energies of 2–5 kcal/mol. This interaction is magnified by a factor of 4–9, bringing the binding energy up to as much as 20 kcal/mol, when a CH3+ group is added to the proton donor. Complexes prefer trifurcated arrangements, wherein three separate methyl groups donate a proton to the O acceptor. Binding energies lessen when the systems are immersed in solvents of increasing polarity, but the ionic complexes retain their favored status even in water. The binding energy is reduced when the methyl …
Computational Approaches To Anti-Toxin Therapies And Biomarker Identification, Rebecca Jane Swett
Computational Approaches To Anti-Toxin Therapies And Biomarker Identification, Rebecca Jane Swett
Wayne State University Dissertations
This work describes the fundamental study of two bacterial toxins with computational methods, the rational design of a potent inhibitor using molecular dynamics, as well as the development of two bioinformatic methods for mining genomic data.
Clostridium difficile is an opportunistic bacillus which produces two large glucosylating toxins. These toxins, TcdA and TcdB cause severe intestinal damage. As Clostridium difficile harbors considerable antibiotic resistance, one treatment strategy is to prevent the tissue damage that the toxins cause. The catalytic glucosyltransferase domain of TcdA and TcdB was studied using molecular dynamics in the presence of both a protein-protein binding partner and …
Revisiting The Fundamentals In The Design And Control Of Nanoparticulate Colloids In The Frame Of Soft Chemistry, Vuk Uskoković
Revisiting The Fundamentals In The Design And Control Of Nanoparticulate Colloids In The Frame Of Soft Chemistry, Vuk Uskoković
Pharmacy Faculty Articles and Research
This review presents thoughts on some of the fundamental features of conceptual models applied in the design of fine particles in the frames of colloid and soft chemistry. A special emphasis is placed on the limitations of these models, an acknowledgment of which is vital in improving their intricacy and effectiveness in predicting the outcomes of the corresponding experimental settings. Thermodynamics of self-assembly phenomena illustrated on the examples of protein assembly and micellization is analyzed in relation to the previously elaborated thesis that each self-assembly in reality presents a co-assembly, since it implies a mutual reorganization of the assembling system …
2013 Ii Cu Suri (Common Poster), Vanessa Selimovic, Loriann Reese, Ruthie Nelson, Emma Sleeman, Hibery Ho, Maria Polozova
2013 Ii Cu Suri (Common Poster), Vanessa Selimovic, Loriann Reese, Ruthie Nelson, Emma Sleeman, Hibery Ho, Maria Polozova
CUP Undergraduate Research
A common poster providing information for several research projects: aerosol particles, deoxycytidine kinase, squaraine rotaxanes, glycol nucleic acied, and Kombucha.
Chlomid, Niki Smith
Chlomid, Niki Smith
Natural Sciences Student Research Presentations
This poster details the use of Clomid and provides a chemical analysis.
Membrane Surface Charges Attracted Protons Are Not Relevant To Proton Motive Force, James Weifu Lee
Membrane Surface Charges Attracted Protons Are Not Relevant To Proton Motive Force, James Weifu Lee
Chemistry & Biochemistry Faculty Publications
[First Paragraph] Only a half-century ago, British scientist Peter Mitchell proposed the conceptual scheme known as "chemiosmotic theory" that identified the role of proton coupling in the formation of ATP in cells [1,2]. Mitchell's delocalized proton-coupling chemiosmotic theory was initially quite controversial. But it would win for him the Nobel Prize in Chemistry in 1978. However, questions about Mitchell's chemiosmotic hypothesis have never gone away and a number of credible studies indicated the full extent of Mitchell's idea didn't always hold up to experience.
Development Of Peptide Inhibitors Targeting Clostridium Difficile Toxins A/B And Characterizing The Regulatory Role Of A Putative Negative Regulator Tcdc In Clostridium Difficile Toxin Gene Expression, Sanofar Jainul Abdeen
Development Of Peptide Inhibitors Targeting Clostridium Difficile Toxins A/B And Characterizing The Regulatory Role Of A Putative Negative Regulator Tcdc In Clostridium Difficile Toxin Gene Expression, Sanofar Jainul Abdeen
Wayne State University Dissertations
Clostridium difficile infections cause one of the most common and vital hospitalacquired
diseases often associated with broad-spectrum antibiotic usage. TcdA and TcdB
are the key virulence factors involved in major patho-physiology. While standard
antibiotics provide some respite, due to the high relapse rates and the emergence of more
severe disease presentations, antibiotics alone have often proven to be suboptimal.
Therefore there is a desperate need to develop an effective non-antimicrobial
therapeutics. Part of this work focuses on identification and further characterization of
peptide therapeutic that target the major virulence factor TcdA/TcdB. Towards
development of mechanistic-based anti-toxin agent, phage display was …
Specific Salt Effects On The Formation And Thermal Transitions Among Β-Lactoglobulin And Pectin Electrostatic Complexes, Stacey Ann Hirt
Specific Salt Effects On The Formation And Thermal Transitions Among Β-Lactoglobulin And Pectin Electrostatic Complexes, Stacey Ann Hirt
Open Access Theses
Factors of ion specificity and ionic strength (I~0-100) were studied in the electrostatic complex formation and protein particle formation by thermal treatment for a β-lactoglobulin and pectin system. ζ-potential showed β-lactoglobulin and pectin began to interact near pH 5.50 and interactions were strengthened with decrease in pH. Visible light turbidimetry and light scattering at 90° revealed a trend in critical pH transitions for electrostatic complex formation based on both the ionic strength and the anion of the salt species, while effects of the monovalent cation was insignificant. Critical pH values for complex formation and separation (pHc and pHΦ) decreased with …
Pickering Stabilization Of Oil-Water Interfaces By Heated B-Lactoglobulin/Pectin Particles, Laura Kathryn Zimmerer
Pickering Stabilization Of Oil-Water Interfaces By Heated B-Lactoglobulin/Pectin Particles, Laura Kathryn Zimmerer
Open Access Theses
The use of natural biopolymer particles as Pickering stabilizers for oil-in-water emulsions was investigated. B-lactoglobulin microgels and B-lactoglobulin/pectin complexes were created by heating appropriate biopolymer solutions at pH 5.8 and 4.75, respectively. Resultant particles exhibited spherical morphology with diameters of 100-300 nm and possessed significant negative surface charge. Particles were first homogenized with 1% corn oil at 0.05%, 0.1% or 0.25% (wt/ wt) particle concentrations. All emulsions appeared stable over seven days with only a thin, creamed ring forming after several hours. Corn oil emulsions were most stable with 0.25% heated complexes, with volume-weighted mean droplet diameter remaining around 480 …
Fate Of 17Α-Estradiol, 17Β-Estradiol, And Estrone In Agricultural Soils And Sediments, Michael L. Mashtare Jr
Fate Of 17Α-Estradiol, 17Β-Estradiol, And Estrone In Agricultural Soils And Sediments, Michael L. Mashtare Jr
Open Access Dissertations
The shift to concentrated animal production facilities and increasing rural-urban migration has increased the localized land application of nearly 1 billion tons of manure and biosolids annually. Although these applications provide nutrients and contribute to soil tilth, they also serve as a source for an estimated 49 tons of the natural manure-borne estrogens, 17α-estradiol (17α-E2), 17β-estradiol (17β-E2), and estrone (E1). While these estrogens are critical to endocrine systems, the low concentrations observed in the environment can disrupt endocrine function in non-target organisms, e.g., altering secondary sex characteristics which can lead to changes in wildlife communities.
Research presented here focuses on …
Decoration Of Graphene With Metal Nanoparticles And Its Application For Bioanalysis, Keun Soo Kwon
Decoration Of Graphene With Metal Nanoparticles And Its Application For Bioanalysis, Keun Soo Kwon
Theses, Dissertations and Culminating Projects
Graphene is a two-dimensional monolayer of tightly packed sp2 hybridized Carbon atoms. Formed from graphite, the theoretical surface area of the monolayer is about 2630 m2/g, and the initial formation of graphene oxide from graphite oxide introduces a variety o f functional groups, such as -COOH, -C=0, and -OH, on its surface. The high surface area and the rich presence of functional groups, along with the potential formation o f sp2 bonding networks within graphene oxide, all serve as critical factors allowing for additional chemical modifications. There are extensive research attempts being performed to explore and …
Molecular Biochemical Study Of The Cataract-Associated Mutants In Human Gammad-Crystallin, Cindy Yeung
Molecular Biochemical Study Of The Cataract-Associated Mutants In Human Gammad-Crystallin, Cindy Yeung
Legacy Theses & Dissertations (2009 - 2024)
Cataract is a vision impairment disease that leads to light scattering and opacity of the eye lens. It is recognized as the most prevalent cause of blindness. Most cataracts occur due to aging, but those that occur in childhood or in young adults are typically of genetic origin. In the young (developing) eye, post–surgical complications such as glaucoma are common after cataract surgery. Hence there is a great need to develop non-surgical intervention strategies for the treatment of cataract. Here, two cataract-associated mutants of human γD-crystallin (HGD): i) Arg76 to Ser (R76S) and ii) a truncation mutation at Trp156 (W156X …
Structure-Activity Relationship Of 2,3-Benzodiazepin-4-Ones As Noncompetitive Ampa Receptor Antagonists, Mohammad Shaban Qneibi
Structure-Activity Relationship Of 2,3-Benzodiazepin-4-Ones As Noncompetitive Ampa Receptor Antagonists, Mohammad Shaban Qneibi
Legacy Theses & Dissertations (2009 - 2024)
2,3-Benzodiazepin-4-one (BDZ-11) derivatives are a special group of 2,3-benzodiazepine compounds. These compounds have been previously synthesized as AMPA receptor inhibitors, and they are also potential drugs for the treatment of various neurological diseases involving excessive AMPA receptor activity. AMPA receptors are a subtype of glutamate ion channel proteins and are responsible for the majority of excitatory neurotransmission in the mammalian central nervous system. Specifically, they are critically involved in neuronal development and brain activities, including learning and memory. Overstimulation of AMPA receptors is associated with some neurological diseases such as ALS, stroke and Alzheimer's disease. Despite the fact that hundreds …
(S)-Trifluoroselenomethionine : A New Non-Natural Amino Acid With Enhanced Methioninase-Induced Cytotoxicity Toward Human Colon Cancer Cells, Stephene Nathele Lodge
(S)-Trifluoroselenomethionine : A New Non-Natural Amino Acid With Enhanced Methioninase-Induced Cytotoxicity Toward Human Colon Cancer Cells, Stephene Nathele Lodge
Legacy Theses & Dissertations (2009 - 2024)
Abstract
Assessment Of Human Exposure To Perchlorate And Perfluoroalkyl Substances In The United States : Biomonitoring And Environmental Monitoring Approaches, Qian Wu
Legacy Theses & Dissertations (2009 - 2024)
Perchlorate is an oxidant in solid fuels and explosives and is produced in large quantities worldwide. Perchlorate is a ubiquitous environmental contaminant and is present in water, food, indoor environment and humans. Human exposure to perchlorate is a concern due to its ability to disrupt the thyroid gland functions.
Voltage-Controlled Enzyme-Catalyzed Glucose–Gluconolactone Conversion Using A Field-Effect Enzymatic Detector, Siu Tung Yau, Yan Xu, Yang Song, Ye Feng, Jiapeng Wang
Voltage-Controlled Enzyme-Catalyzed Glucose–Gluconolactone Conversion Using A Field-Effect Enzymatic Detector, Siu Tung Yau, Yan Xu, Yang Song, Ye Feng, Jiapeng Wang
Chemistry Faculty Publications
The field-effect enzymatic detection (FEED) technique was used to control the kinetics of the enzymatic conversion of glucose to gluconolactone. The glucose–gluconolactone conversion occurring at an enzyme-immobilized electrode, a well-studied process, was confirmed using mass spectrometry. Electrochemical studies showed that the glucose oxidation current depends on the gating voltage VG and the ion concentration of the sample solution. Additionally, the depletion of glucose in the sample also showed a dependence on VG. FEED was used to detect H2O2 on the zepto-molar level in order to show the ultrasensitive detection capability of the technique. These results, while providing evidence for the …
Spliceosomal Prp24 Unwinds A Minimal U2/U6 Complex From Yeast, Chandani Manoja Warnasooriya
Spliceosomal Prp24 Unwinds A Minimal U2/U6 Complex From Yeast, Chandani Manoja Warnasooriya
Wayne State University Theses
Splicing plays a major role in eukaryotic gene expression by processing pre-mRNA to form mature mRNA. Pre-mRNAs undergo splicing to remove introns, non–protein coding regions, and religate exons, protein coding regions. This process is catalyzed by the spliceosome, which consists of five small nuclear ribonucleoprotein particles (snRNPs: U1, U2, U4, U5 and U6) and numerous protein factors. Proper assembly of spliceosomal components is critical for function, and thus, defects in assembly can be lethal. Several spliceosomal proteins facilitate structural rearrangements important for spliceosomal assembly and function. Prp24 is an essential factor in U6 snRNP assembly, and it has been proposed …
Spectroscopic Analysis Of Polymerization And Exonuclease Proofreading By A High-Fidelity Dna Polymerase During Translesion Dna Synthesis, Babho Devadoss, Irene Lee, Anthony J. Berdis
Spectroscopic Analysis Of Polymerization And Exonuclease Proofreading By A High-Fidelity Dna Polymerase During Translesion Dna Synthesis, Babho Devadoss, Irene Lee, Anthony J. Berdis
Chemistry Faculty Publications
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that include nucleotide binding, conformational changes, phosphoryl transfer, polymerase translocation, and nucleotide excision. Developing a comprehensive understanding of how these steps are coordinated during correct and pro-mutagenic DNA synthesis has been hindered due to lack of spectroscopic nucleotides that function as efficient polymerase substrates. This report describes the application of a non-natural nucleotide designated 5-naphthyl-indole-2′-deoxyribose triphosphate which behaves as a fluorogenic substrate to monitor nucleotide incorporation and excision during the replication of normal DNA versus two distinct DNA lesions (cyclobutane thymine dimer and an abasic site). Transient …
Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard
Amalgamation Of Nucleosides And Amino Acids In Antibiotic Biosynthesis, Sandra H. Barnard
Theses and Dissertations--Pharmacy
The rapid increase in antibiotic resistance demands the identification of novel antibiotics with novel targets. One potential antibacterial target is the biosynthesis of peptidoglycan cell wall, which is both ubiquitous and necessary for bacterial survival. Both the caprazamycin-related compounds A-90289 and muraminomicin, as well as the capuramycin-related compounds A-503083 and A-102395 are potent inhibitors of the translocase I enzyme, one of the key enzymes required for cell wall biosynthesis. The caprazamycin-related compounds contain a core nonproteinogen b-hydroxy-a-amino acid referred to as 5’-C-glycyluridine (GlyU). Residing within the biosynthetic gene clusters of the aforementioned compounds is a shared open reading …
Periplasmic Binding Proteins In Thermophiles: Characterization And Potential Application Of An Arginine-Binding Protein From Thermotoga Maritima: A Brief Thermo-Story, Alessio Ausili, Maria Staiano, Jonathan D. Dattelbaum, Antonio Varriale, Alessandro Capo, Sabato D'Auria
Periplasmic Binding Proteins In Thermophiles: Characterization And Potential Application Of An Arginine-Binding Protein From Thermotoga Maritima: A Brief Thermo-Story, Alessio Ausili, Maria Staiano, Jonathan D. Dattelbaum, Antonio Varriale, Alessandro Capo, Sabato D'Auria
Chemistry Faculty Publications
Arginine-binding protein from the extremophile Thermotoga maritima is a 27.7 kDa protein possessing the typical two-domain structure of the periplasmic binding proteins family. The protein is characterized by a very high specificity and affinity to bind to arginine, also at high temperatures. Due to its features, this protein could be taken into account as a potential candidate for the design of a biosensor for arginine. It is important to investigate the stability of proteins when they are used for biotechnological applications. In this article, we review the structural and functional features of an arginine-binding protein from the extremophile Thermotoga maritima …
Structurally Diverse Hamigerans From The New Zealand Marine Sponge Hamigera Tarangaensis: Nmr-Directed Isolation, Structure Elucidation And Antifungal Activity, A. Jonathan Singh, Jonathan D. Dattelbaum, Jessica J. Field, Zlatka Smart, Ethan F. Woolly, Jacqueline M. Barber, Rosemary Heathcott, John H. Miller, Peter T. Northcote
Structurally Diverse Hamigerans From The New Zealand Marine Sponge Hamigera Tarangaensis: Nmr-Directed Isolation, Structure Elucidation And Antifungal Activity, A. Jonathan Singh, Jonathan D. Dattelbaum, Jessica J. Field, Zlatka Smart, Ethan F. Woolly, Jacqueline M. Barber, Rosemary Heathcott, John H. Miller, Peter T. Northcote
Chemistry Faculty Publications
The NMR-directed investigation of the New Zealand marine sponge Hamigera tarangaensis has afforded ten new compounds of the hamigeran family, and a new 13-epi-verrucosane congener. Notably, hamigeran F (6) possesses an unusual carbon–carbon bond between C-12 and C-13, creating an unprecedented skeleton within this class. In particular, the structural features of 6, hamigeran H (10) and hamigeran J (12) imply a diterpenoid origin, which has allowed the putative biogenesis of three hamigeran carbon skeletons to be proposed based on geranyl geranyl pyrophosphate. All new hamigerans exhibited micromolar activity towards the HL-60 …
Oligodeoxynucleotide Synthesis Using Protecting Groups And A Linker Cleavable Under Non-Nucleophilic Conditions, Xi Lin
Dissertations, Master's Theses and Master's Reports - Open
Oligodeoxynucleotides (ODNs) containing latent electrophilic groups can be highly useful in antisense drug development and many other applications such as chemical biology and medicine, where covalent cross-linking of ODNs with mRNA, protein and ODN is required. However, such ODN analogues cannot be synthesized using traditional technologies due to the strongly nucleophilic conditions used in traditional deprotection/cleavage process.
To solve this long lasting and highly challenging problem in nucleic acid chemistry, I used the 1,3-dithian-2-yl-methoxycarbonyl (Dmoc) function to protect the exo-amino groups on the nucleobases dA, dC and dG, and to design the linker between the nascent ODN and solid support. …