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Articles 151 - 180 of 279
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Ab Initio Exon Definition Using An Information Theory-Based Approach, Peter K. Rogan
Ab Initio Exon Definition Using An Information Theory-Based Approach, Peter K. Rogan
Biochemistry Publications
Transcribed exons in genes are joined together at donor and acceptor splice sites precisely and efficiently to generate mRNAs capa ble of being translated into proteins. The sequence variability in individual splice sites can be modeled using Shannon information theory. In the laboratory, the degree of individual splice site use is inferred from the structures of mRNAs and their relative abundance. These structures can be predicted using a bipartite information theory framework that is guided by current knowledge of biological mechanisms for exon recognition. We present the results of this analysis for the complete dataset of all expressed human exons.
Role Of No In The Regulation Of Cortisol Synthesis In Long-Term Hypoxic Sheep Fetal Adrenal, Tshepo Rothi Monau
Role Of No In The Regulation Of Cortisol Synthesis In Long-Term Hypoxic Sheep Fetal Adrenal, Tshepo Rothi Monau
Loma Linda University Electronic Theses, Dissertations & Projects
Our laboratory has demonstrated that sheep fetuses adapt to long-term hypoxia (LTH) by maintaining normal level of basal plasma cortisol despite increased adrenocorticotropic hormone (ACTH). But the mechanisms involved are not fully understood. Studies have shown that nitric oxide (NO) inhibits synthesis of steroid hormones in a variety of tissues, and in different animal species. Studies also showed that hypoxia increases both expression and activity levels of the nitric oxide (NO) generating enzyme, nitric oxide synthase (NOS), in certain tissues. We have here investigated the expression level and localization of NOS isoforms in sheep fetal adrenals. We also investigated the …
From Gene Mutation To Protein Characterization, David A. Moffet
From Gene Mutation To Protein Characterization, David A. Moffet
Chemistry and Biochemistry Faculty Works
A seven-week “gene to protein” laboratory sequence is described for an undergraduate biochemistry laboratory course. Student pairs were given the task of introducing a point mutation of their choosing into the well studied protein, enhanced green fluorescent protein (EGFP). After conducting literature searches, each student group chose the mutation they wanted to introduce into EGFP. Students designed their sequence-specific mutagenic primers and constructed their desired mutation. The resulting EGFP mutant proteins were expressed in E. coli, purified and characterized. This laboratory sequence connected the major concepts of molecular biology and biochemistry, while incorporating the thrill of novel discovery in …
Biarsenical Labeling Of Vesicular Stomatitis Virus Encoding Tetracysteine-Tagged M Protein Allows Dynamic Imaging Of M Protein And Virus Uncoating In Infected Cells, Subash C. Das, Debasis Panda, Debasis Nayak, Asit K. Pattnaik
Biarsenical Labeling Of Vesicular Stomatitis Virus Encoding Tetracysteine-Tagged M Protein Allows Dynamic Imaging Of M Protein And Virus Uncoating In Infected Cells, Subash C. Das, Debasis Panda, Debasis Nayak, Asit K. Pattnaik
School of Veterinary and Biomedical Sciences: Faculty Publications
A recombinant vesicular stomatitis virus (VSV-PeGFP-M-MmRFP) encoding enhanced green fluorescent protein fused in frame with P (PeGFP) in place of P and a fusion matrix protein (monomeric red fluorescent protein fused in frame at the carboxy terminus of M [MmRFP]) at the G-L gene junction, in addition to wild-type (wt) M protein in its normal location, was recovered, but the MmRFP was not incorporated into the virions. Subsequently, we generated recombinant viruses (VSV-PeGFP-∆M-Mtc and VSV-∆M-Mtc) encoding Mprotein with a carboxy-terminal tetracysteine tag (Mtc) in place of the M protein. These recombinant viruses incorporated Mtc at levels similar to M in …
Msrb1 (Methionine-R-Sulfoxide Reductase 1) Knock-Out Mice: Roles Of Msrb1 In Redox Regulation And Identification Of A Novel Selenoprotein Form, Dmitri E. Fomenko, Sergey V. Novoselov, Sathish Kumar Natarajan, Byung Cheon Lee, Ahmet Koc, Bradley A. Carlson, Tae-Hyung Lee, Hwa-Young Kim, Dolph L. Hatfield, Vadim N. Gladyshev
Msrb1 (Methionine-R-Sulfoxide Reductase 1) Knock-Out Mice: Roles Of Msrb1 In Redox Regulation And Identification Of A Novel Selenoprotein Form, Dmitri E. Fomenko, Sergey V. Novoselov, Sathish Kumar Natarajan, Byung Cheon Lee, Ahmet Koc, Bradley A. Carlson, Tae-Hyung Lee, Hwa-Young Kim, Dolph L. Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Protein oxidation has been linked to accelerated aging and is a contributing factor to many diseases. Methionine residues are particularly susceptible to oxidation, but the resulting mixture of methionine R-sulfoxide (Met-RO) and methionine S-sulfoxide (Met-SO) can be repaired by thioredoxin-dependent enzymes MsrB and MsrA, respectively. Here, we describe a knock-out mouse deficient in selenoprotein MsrB1, the main mammalian MsrB located in the cytosol and nucleus. In these mice, in addition to the deletion of 14-kDa MsrB1, a 5-kDa selenoprotein form was specifically removed. Further studies revealed that the 5-kDa protein occurred in both mouse tissues and humanHEK293 cells; …
Polymer Microfluidic Devices For Bioanalysis, Xuefei Sun
Polymer Microfluidic Devices For Bioanalysis, Xuefei Sun
Theses and Dissertations
Polymeric microchips have received increasing attention in chemical analysis because polymers have attractive properties, such as low cost, ease of fabrication, biocompatibility and high flexibility. However, commercial polymers usually exhibit analyte adsorption on their surfaces, which can interfere with microfluidic transport in, for example, chemical separations such as chromatography or electrophoresis. Usually, surface modification is required to eliminate this problem. To perform stable and durable surface modification, a new polymer, poly(methyl methacrylate-co-glycidyl methacrylate) (PGMAMMA) was prepared for microchip fabrication, which provides epoxy groups on the surface. Whole surface atom transfer radical polymerization (ATRP) and in-channel ATRP approaches were employed to …
Role Of Rock And Pkc In Regulation Of Contraction Of Permeabilized Femoral Arterial Smooth Muscle, Brendan Browne
Role Of Rock And Pkc In Regulation Of Contraction Of Permeabilized Femoral Arterial Smooth Muscle, Brendan Browne
Theses and Dissertations
KCl is traditionally used as a stimulus to examine the role of increases in cytosolic Ca2+ on the regulation of smooth muscle contraction. KCl bypasses GPCR activation, thereby avoiding activation of additional cell signaling systems, such as phospholipase C and PKC that are inherent to Gaq and Ga12/13 stimulation. GPCR activation causes Ca2+ sensitization (greater force for a given increase in Ca2+) by a ROCK- and PKC-dependent inhibition of myosin light chain (MLC) phosphatase. Recent studies have demonstrated that KCl can also produce Ca2+ sensitization, implying that Ca2+ itself may induce Ca2+ sensitization. To test the hypothesis that Ca2+ can …
The Outcome Of Selenium And Vitamin E Cancer Prevention Trial (Select) Reveals The Need For Better Understanding Of Selenium Biology, Dolph Hatfield, Vadim N. Gladyshev
The Outcome Of Selenium And Vitamin E Cancer Prevention Trial (Select) Reveals The Need For Better Understanding Of Selenium Biology, Dolph Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
The Selenium and Vitamin E Cancer Prevention Trial (SELECT) was one of the largest human cancer prevention trials ever undertaken. Designed to examine the role of selenium and vitamin E in preventing prostate cancer (I) as a double-blind study, SELECT administered daily 200 micrograms of selenium in the form of pure L-selenomethionine, 400 IU of synthetic D,L-α-tocopherol (vitamin E), a combination of these two components, or a placebo to four approximately equally divided groups. SELECT enrollment was undertaken between August 22, 2001 and June 24, 2004, and involved 35.533 healthy males from more than 425 participating locations in …
Leptospira Interrogans Induces Apoptosis In Macrophages Via Caspase-8- And -3-Dependent Pathways, Dandan Jin, David M. Ojcius, Dexter Sun, Haiyan Dong, Yihui Luo, Yafei Mao, Jie Yan
Leptospira Interrogans Induces Apoptosis In Macrophages Via Caspase-8- And -3-Dependent Pathways, Dandan Jin, David M. Ojcius, Dexter Sun, Haiyan Dong, Yihui Luo, Yafei Mao, Jie Yan
All Dugoni School of Dentistry Faculty Articles
Apoptosis of host cells plays an important role in modulating the pathogenesis of many infectious diseases. It has been reported that Leptospira interrogans, the causal agent of leptospirosis, induces apoptosis in macrophages and hepatocytes. However, the molecular mechanisms responsible for host cell death remained largely unknown. Here we demonstrate that L. interrogans induced apoptosis in a macrophage-like cell line, J774A.1, and primary murine macrophages in a time- and dose-dependent manner. Apoptosis was associated with the activation of cysteine aspartic acid-specific proteases (caspase-3, caspase-6, and caspase-8), the increased expression of Fas-associated death domain (FADD), and the cleavage of the caspase substrates …
Molecular Coevolution Of Pacific Northwest Hantaviruses And Their Host, The Deer Mouse, Peromyscus Maniculatus, Philip Darren Jones
Molecular Coevolution Of Pacific Northwest Hantaviruses And Their Host, The Deer Mouse, Peromyscus Maniculatus, Philip Darren Jones
Dissertations and Theses
Sin Nombre virus (SNV, family Bunyaviridae, genus Hantavirus), hosted by the deer mouse, Peromyscus maniculatus (family Cricetidae, Subfamily Neotominae), is the primary etiological agent of Hantavirus pulmonary syndrome (HPS) in the western United States. HPS, with known pathogenicity only to humans and for which there is no cure or prophylaxis, affects the epithelium of the lungs by making the capillaries leaky, thereby resulting in bilateral infiltrates, and eventually leading to respiratory failure and death by drowning in approximately 38% of hospitalized patients.
In the Americas, Peromyscus has been co-evolving with hantaviruses for approximately 12–20 million years, since the first …
Temperature Influence And Heat Management Requirements Of Microalgae Cultivation In Photobioreactors, Thomas Hagen Mehlitz
Temperature Influence And Heat Management Requirements Of Microalgae Cultivation In Photobioreactors, Thomas Hagen Mehlitz
Master's Theses
Microalgae are considered one of the most promising feedstocks for biofuel production for the future. The most efficient way to produce vast amounts of algal biomass is the use of closed tubular photobioreactors (PBR). The heat requirement for a given system is a major concern since the best algae growth rates are obtained between 25-30 °C, depending on the specific strain. A procedure to determine temperature influence on algal growth rates was developed for a lab-scale PBR system using the species Chlorella. A maximum growth rate of 1.44 doublings per day at 29 °C (optimal temperature) was determined. In addition, …
Ca2+ Extrusion By Ncx Is Compromised In Olfactory Sensory Neurons Of Omp-/- Mice, Hyun J. Kwon, Jae Hyung Koo, Frank Zufall, Trese Leinders-Zufall, Frank L. Margolis
Ca2+ Extrusion By Ncx Is Compromised In Olfactory Sensory Neurons Of Omp-/- Mice, Hyun J. Kwon, Jae Hyung Koo, Frank Zufall, Trese Leinders-Zufall, Frank L. Margolis
Faculty Publications
Background: The role of olfactory marker protein (OMP), a hallmark of mature olfactory sensory neurons (OSNs), has been poorly understood since its discovery. The electrophysiological and behavioral phenotypes of OMP knockout mice indicated that OMP influences olfactory signal transduction. However, the mechanism by which this occurs remained unknown. Principal Findings: We used intact olfactory epithelium obtained from WT and OMP-/- mice to monitor the Ca2+ dynamics induced by the activation of cyclic nucleotide-gated channels, voltage-operated Ca2+ channels, or Ca2+ stores in single dendritic knobs of OSNs. Our data suggested that OMP could act to modulate the Ca2+-homeostasis in these neurons …
Adaptation Of The Bacterial Membrane To Changing Environments Using Aminoacylated Phospholipids, Hervé Roy, Kiley Dare, Michael Ibba
Adaptation Of The Bacterial Membrane To Changing Environments Using Aminoacylated Phospholipids, Hervé Roy, Kiley Dare, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Fine‐tuning of the biophysical properties of biological membranes is essential for adaptation of cells to changing environments. For instance, to lower the negative charge of the lipid bilayer, certain bacteria add lysine to phosphatidylglycerol (PG) converting the net negative charge of PG (−1) to a net positive charge in Lys‐PG (+1). Reducing the net negative charge of the bacterial cell wall is a common strategy used by bacteria to resist cationic antimicrobial peptides (CAMPs) secreted by other microbes or produced by the innate immune system of a host organism. The article by Klein et al. in the current issue of …
Genetic Code Supports Targeted Insertion Of Two Amino Acids By One Codon, Anton Turanov, Alexei Lobanov, Dmitri E. Fomenko, Hilary Morrison, Mitchell Sogin, Lawrence Klobutcher, Dolph Hatfield, Vadim N. Gladyshev
Genetic Code Supports Targeted Insertion Of Two Amino Acids By One Codon, Anton Turanov, Alexei Lobanov, Dmitri E. Fomenko, Hilary Morrison, Mitchell Sogin, Lawrence Klobutcher, Dolph Hatfield, Vadim N. Gladyshev
Vadim Gladyshev Publications
Strict one-to-one correspondence between codons and amino acids is thought to be an essential feature of the genetic code. However, we report that one codon can code for two different amino acids with the choice of the inserted amino acid determined by a specific 3’ untranslated region structure and location of the dual-function codon within the messenger RNA (mRNA). We found that the codon UGA specifies insertion of selenocysteine and cysteine in the ciliate Euplotes crassus, that the dual use of this codon can occur even within the same gene, and that the structural arrangements of Euplotes mRNA preserve location-dependent …
Hepatitis B Virus Subgenotypes D1 And D3 Are Prevalent In Pakistan, Anwar Ali Siddiqui, Saeeda Baig, Runu Chakravarty Runu Chakravarty, Tariq Moatter
Hepatitis B Virus Subgenotypes D1 And D3 Are Prevalent In Pakistan, Anwar Ali Siddiqui, Saeeda Baig, Runu Chakravarty Runu Chakravarty, Tariq Moatter
Department of Biological & Biomedical Sciences
Background:
As the hepatitis B genotyping is important for assessing its clinical implications and geographical distribution, the sub-genotypes have been found useful for determination of specific genomic markers related to hepatocarcinogenesis. In Pakistan, there is no reported data on molecular evolutionary analysis of HBV. A study was, therefore, much needed to evaluate the spectra of mutations present in the strains prevalent here.
Findings:
To confirm specificity of PCR typing, phylogenetic analysis of the pre-S1 region and the divergence was studied through 13 sequences of 362 bp (accession number EF432765 – EF432777). A total of 315 serum samples, selected from HBsAg …
Microscopic Analysis Of Sympathetic And Parasympathetic Distribution, Terminal Morphology, And Interaction In Whole-Mount Atria, Scott Harden
Electronic Theses and Dissertations
The sympathetic (SNS) and parasympathetic (PSNS) branches of the autonomic nervous system (ANS) innervate the heart, exerting excitatory and inhibitory influences (respectively) over cardiac functions (heart rate, AV conduction velocity, and contractility). However, the distribution and structure of SNS and PSNS innervation has not yet been well studied. Detailed characterization of the distributional organization and structural morphology of the SNS and PSNS in normal states is essential to the study of pathological autonomic remodeling. The present study utilized double immunohistochemical labeling techniques to examine tyrosine hydroxylase (TH) immunoreactive (IR) SNS and vesicular acetylcholine transporter (VAChT) IR PSNS axons and terminal …
The Expression Of Mkrn1, An E3 Ubiquitin Ligase For Telomerase Reverse Transcriptase, Is Induced With Differentiation Therapy In Leukemia, Jose Salvatico
The Expression Of Mkrn1, An E3 Ubiquitin Ligase For Telomerase Reverse Transcriptase, Is Induced With Differentiation Therapy In Leukemia, Jose Salvatico
Electronic Theses and Dissertations
Telomeres are important structural and functional components of chromosomes, serving to provide stability and enabling full replication of the chromosomes. However, a shortening of the telomeres occurs with each cell division that can be fixed by a polymerase activity provided by telomerase, preventing this loss which would otherwise eventually lead to chromosome end-to-end fusions, senescence and cell death. The telomerase activity is present in stem cells and germ line cells, but absent or barely noticeable in adult somatic cells. However, in approximately 80-90% of transformed somatic cells the telomerase activity is recovered, resulting in a "telomerase positive phenotype". This phenotype …
Structure Of Human Dna Polymerase Κ Inserting Datp Opposite An 8-Oxog Dna Lesion, Rodrigo Vasquez-Del Carpio, Timothy D. Silverstein, Samer Lone, Michael K. Swan, Jayati R. Choudhury, Robert E. Johnson, Satya Prakash, Louise Prakash, Aneel K. Aggarwal
Structure Of Human Dna Polymerase Κ Inserting Datp Opposite An 8-Oxog Dna Lesion, Rodrigo Vasquez-Del Carpio, Timothy D. Silverstein, Samer Lone, Michael K. Swan, Jayati R. Choudhury, Robert E. Johnson, Satya Prakash, Louise Prakash, Aneel K. Aggarwal
Chemical Sciences Faculty Publications
Background: Oxygen-free radicals formed during normal aerobic cellular metabolism attack bases in DNA and 7,8-dihydro-8-oxoguanine (8-oxoG) is one of the major lesions formed. It is amongst the most mutagenic lesions in cells because of its dual coding potential, wherein 8-oxoG(syn) can pair with an A in addition to normal base pairing of 8-oxoG(anti) with a C. Human DNA polymerase κ (Polκ) is a member of the newly discovered Y-family of DNA polymerases that possess the ability to replicate through DNA lesions. To understand the basis of Polκ's preference for insertion of an A opposite 8-oxoG lesion, …
A Watershed Analysis Of Salmon Lake And Mcgrath Pond: Implications For Water Quality And Land Use Management, Colby Environmental Assessment Team, Colby College, Problems In Environmental Science Course (Biology 493), Colby College
A Watershed Analysis Of Salmon Lake And Mcgrath Pond: Implications For Water Quality And Land Use Management, Colby Environmental Assessment Team, Colby College, Problems In Environmental Science Course (Biology 493), Colby College
Colby College Watershed Study: Salmon Lake and McGrath Pond (2009, 1993)
In the summer and fall of 2009, the Colby Environmental Assessment Team (CEAT) studied the water quality of Salmon Lake and McGrath Pond, located in the Belgrade Lakes Region of Maine. The physical, chemical and biological characteristics of water quality were measured and analyzed to evaluate the current health of these lakes. Water quality data collected during the summer and fall of 2009 were compared with data from previous years to study the historic water quality trends. Land use patterns in the Salmon/McGrath watershed were also examined to investigate their impact on the lake water quality. The water quality trends …
Functions And Evolution Of Selenoprotein Methionine Sulfoxide Reductases, Byung Cheon Lee, Alexander Dikiy, Hwa-Young Kim, Vadim N. Gladyshev
Functions And Evolution Of Selenoprotein Methionine Sulfoxide Reductases, Byung Cheon Lee, Alexander Dikiy, Hwa-Young Kim, Vadim N. Gladyshev
Vadim Gladyshev Publications
Methionine sulfoxide reductases (Msrs) are thiol-dependent enzymes which catalyze conversion of methionine sulfoxide to methionine. Three Msr families, MsrA, MsrB, and fRMsr, are known. MsrA and MsrB are responsible for the reduction of methionine-S-sulfoxide and methionine-R-sulfoxide residues in proteins, respectively, whereas fRMsr reduces free methionine-R-sulfoxide. Besides acting on proteins, MsrA can addi¬tionally reduce free methionine-S-sulfoxide. Some MsrAs and MsrBs evolved to utilize catalytic selenocysteine. This includes MsrB1, which is a major MsrB in cytosol and nucleus in mammalian cells. Specialized machinery is used for insertion of selenocysteine into MsrB1 and other seleno¬proteins at in-frame UGA codons. Selenocysteine offers catalytic advantage …
Selenoproteins That Function In Cancer Prevention And Promotion, Dolph L. Hatfield, Min-Hyuk Yoo, Bradley A. Carlson, Vadim N. Gladyshev
Selenoproteins That Function In Cancer Prevention And Promotion, Dolph L. Hatfield, Min-Hyuk Yoo, Bradley A. Carlson, Vadim N. Gladyshev
Vadim Gladyshev Publications
Of the many health benefits attributed to selenium, the one that has received the most attention is its role in cancer prevention. Selenium-containing proteins (selenoproteins) have been shown in recent years to have roles in cancer prevention. However, selenoproteins have diverse functions and their view as antioxidants is oversimplified. Some selenoproteins appear to have a split personality in having roles both in preventing and promoting cancer. The contrasting roles of one selenoprotein, thioredoxin reductase 1, in cancer are discussed in detail, but as also noted, at least one other selenoprotein may also have such a dual function. In addition, we …
Identification Of A Novel System For Boron Transport: Atr1 Is A Main Boron Exporter In Yeast, Alaattin Kaya, Huseyin C. Karakaya, Dmitri E. Fomenko, Vadim N. Gladyshev, Ahmet Koc
Identification Of A Novel System For Boron Transport: Atr1 Is A Main Boron Exporter In Yeast, Alaattin Kaya, Huseyin C. Karakaya, Dmitri E. Fomenko, Vadim N. Gladyshev, Ahmet Koc
Vadim Gladyshev Publications
Boron is a micronutrient in plants and animals, but its specific roles in cellular processes are not known. To understand boron transport and functions, we screened a yeast genomic DNA library for genes that confer resistance to the element in Saccharomyces cerevisiae. Thirty boron-resistant transformants were isolated, and they all contained the ATR1 (YML116w) gene. Atr1 is a multidrug resistance transport protein belonging to the major facilitator superfamily. C-terminal green fluorescent protein-tagged Atr1 localized to the cell membrane and vacuole, and ATR1 gene expression was upregulated by boron and several stress conditions. We found that atr1Δ mutants were …
Resolving The Lateral Component Of Blood Flow Velocity Based On Ultrasound Speckle Size Change With Scan Direction And Speed, Tiantian Xu, Greg R. Bashford
Resolving The Lateral Component Of Blood Flow Velocity Based On Ultrasound Speckle Size Change With Scan Direction And Speed, Tiantian Xu, Greg R. Bashford
Biomedical Imaging and Biosignal Analysis Laboratory
Conventional blood flow velocity measurement using ultrasound is capable of resolving the axial component (i.e., that aligned with the ultrasound propagation direction) of the blood flow velocity vector. However, these Doppler-based methods are incapable of detecting blood flow in the direction normal to the ultrasound beam. In addition, these methods require repeated pulse-echo interrogation at the same spatial location. In this paper, we introduce a method which estimates the lateral component of blood flow within a single image frame using the observation that the speckle pattern corresponding to the blood reflectors (typically red blood cells) stretches (i.e., is “smeared”) if …
Further Progress On Lateral Flow Estimation Using Speckle Size Variation With Scan Direction, Tiantian Xu, Gregory R. Bashford
Further Progress On Lateral Flow Estimation Using Speckle Size Variation With Scan Direction, Tiantian Xu, Gregory R. Bashford
Biomedical Imaging and Biosignal Analysis Laboratory
Conventional blood flow velocity measurement using ultrasound is capable of resolving the axial component (i.e., that aligned with the ultrasound propagation direction) of the blood flow velocity vector. However, these Doppler-based methods are incapable of detecting blood flow in the direction normal to the ultrasound beam. In addition, these methods require repeated pulse-echo interrogation at the same spatial location. In this paper, we report additional data on a new method recently introduced. This method estimates the lateral component of blood flow within a single image frame using the observation that the speckle pattern corresponding to the blood reflectors (typically red …
Single Molecule Diffusion Coefficient Estimation By Image Analysis Of Simulated Ccd Images To Aid High-Throughput Screening, Pengfei Song, Lloyd M. Davis, Greg Bashford
Single Molecule Diffusion Coefficient Estimation By Image Analysis Of Simulated Ccd Images To Aid High-Throughput Screening, Pengfei Song, Lloyd M. Davis, Greg Bashford
Biomedical Imaging and Biosignal Analysis Laboratory
Extension of one-dimensional signal analysis to two-dimensional image analysis could accelerate conventional methods of high-throughput screening in the discovery of new pharmaceutical agents. This work describes a first step taken towards this goal – the evaluation of image-analysis based estimation strategies of the diffusion coefficient of a single molecule transported within a microfabricated flowcell. A computer simulation of single-molecule imaging by a charge-coupled device (CCD) camera is used to determine if it is possible to distinguish three different types of molecules with different diffusion coefficients. The Gaussian fitting algorithm finds the variance of the transverse trajectory, which increases linearly with …
Optimal Thresholds Of Feature Tracking For Blood Velocity And Tissue Motion Estimation, Tiantian Xu, Gregory R. Bashford
Optimal Thresholds Of Feature Tracking For Blood Velocity And Tissue Motion Estimation, Tiantian Xu, Gregory R. Bashford
Biomedical Imaging and Biosignal Analysis Laboratory
Feature tracking is an algorithm for estimating blood flow velocity and tissue motion using pulse-echo ultrasound. In contrast to cross-correlation speckle-tracking techniques, feature tracking identifies features at discrete locations and corresponds them from frame to frame. Prior studies have demonstrated that feature-tracking estimates exhibit lower variance than those obtained by the conventional autocorrelation method and require less computational complexity than either speckle tracking or autocorrelation. To date, not much attention has been paid to the process by which trackable features (normally local maxima) are selected from the set of all available features. In the selection process, it is desired to …
Understanding The Physical Properties That Control Protein Crystallization By Analysis Of Largescale Experimental Data, W. Nicholson Price Ii, Yang Chen, Samuel K. Handelman, Helen Neely, Philip Manor, Richard Karlin, Rajesh Nair, Jinfeng Liu, Michael Baran, John Everett, Saichiu N. Tong, Farhad Forouhar, Swarup S. Swaminathan, Thomas Acton, Rong Xiao, Joseph R. Luft, Angela Lauricella, George T. Detitta, Burkhard Rost, Gaetano T. Montelione, John T. Hunt
Understanding The Physical Properties That Control Protein Crystallization By Analysis Of Largescale Experimental Data, W. Nicholson Price Ii, Yang Chen, Samuel K. Handelman, Helen Neely, Philip Manor, Richard Karlin, Rajesh Nair, Jinfeng Liu, Michael Baran, John Everett, Saichiu N. Tong, Farhad Forouhar, Swarup S. Swaminathan, Thomas Acton, Rong Xiao, Joseph R. Luft, Angela Lauricella, George T. Detitta, Burkhard Rost, Gaetano T. Montelione, John T. Hunt
Law Faculty Scholarship
Crystallization is the most serious bottleneck in high-throughput protein-structure determination by diffraction methods. We have used data mining of the large-scale experimental results of the Northeast Structural Genomics Consortium and experimental folding studies to characterize the biophysical properties that control protein crystallization. This analysis leads to the conclusion that crystallization propensity depends primarily on the prevalence of well-ordered surface epitopes capable of mediating interprotein interactions and is not strongly influenced by overall thermodynamic stability. We identify specific sequence features that correlate with crystallization propensity and that can be used to estimate the crystallization probability of a given construct. Analyses of …
Structure-Function Analysis Of Endoproteolytic Cleavage: Site-Directed Mutagenesis Studies Of The Α-Msh Cleavage Site In Silurana Tropicalis Pomc, Quinn Kun Chen
Electronic Theses and Dissertations
The maturation process of many prohormone molecules typically requires endoproteolytic cleavage C-terminal of dibasic residues, such as the K141R142↓ site N-terminal of the α-melanocyte stimulating hormone (α-MSH) sequence in Silurana tropicalis proopiomelanocortin (POMC). In order to determine the absolute requirement of basic amino acid residues in the cleavage process, site-directed mutagenesis was employed to substitute alanine for the wild-type residues in the frog POMC open reading frame. Specifically, the following underlined residues were individually targeted for alanine substitution: R 137 Q 138 E 139 N 140 K 141 R 142↓. The mouse pancreatic αTC1.9 cell …
Alpha-Msh Regulated Cell Signaling In Pancreatic Alpha Cells, Liang Liang
Alpha-Msh Regulated Cell Signaling In Pancreatic Alpha Cells, Liang Liang
Electronic Theses and Dissertations
Peripheral injection of α-MSH promotes glucagon secretion in POMC knockout mice, suggesting the role of α-MSH in regulation of pancreatic α cells. However, the underlying mechanisms remain unknown. This study investigated the stimulatory effect of α-MSH on mice pancreatic α cell line αTC1-6 cells in cell signaling pathway as well as glucagon secretion. In normal level of glucose, application of α-MSH stimulated Ltype Ca2+ current induced Ca2+ induced Ca2+ release (CICR) and membrane hyperpolarization. Increase of [cAMP]c was also observed when α-MSH was applied with IBMX. Acute hypoglycemia-induced CICR via N- and L-type Ca2+ channels was overridden by typical α-MSH …
Role Of Pro-Apoptotic Bcl2-Homology-3 Domain (Bh3)-Only Proteins In The Mutant Sod1 Mouse Model Of Als, Anna George Andrianakos
Role Of Pro-Apoptotic Bcl2-Homology-3 Domain (Bh3)-Only Proteins In The Mutant Sod1 Mouse Model Of Als, Anna George Andrianakos
Electronic Theses and Dissertations
Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease involving rapid degeneration of motor neurons in the spinal cord and retraction of their axonal projections to the neuromuscular junctions. Several known mutations linked to some familial cases of ALS have been linked to mutations in Cu/Zn superoxide dismutase (SOD1), resulting in mitochondrial oxidative stress and intrinsic apoptosis. Transgenic mice expressing a G93A mutant of SOD1 provide an in vivo model to investigate motor neuron death during disease progression. The principal regulators of intrinsic apoptosis are the Bcl-2 family proteins. While some members of this family are pro-survival, the Bcl-2 homology-3 …