Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- University of Kentucky (61)
- Old Dominion University (38)
- Dartmouth College (16)
- The Texas Medical Center Library (15)
- City University of New York (CUNY) (13)
-
- Clemson University (12)
- University of Arkansas, Fayetteville (11)
- Western University (11)
- Augustana College (9)
- Purdue University (8)
- University of Nebraska Medical Center (8)
- Wayne State University (8)
- West Virginia University (8)
- East Tennessee State University (7)
- University of Nevada, Las Vegas (7)
- Virginia Commonwealth University (7)
- Bemidji State University (6)
- Northwestern College, Iowa (6)
- University of Connecticut (6)
- University of Nebraska - Lincoln (6)
- Loma Linda University (5)
- Louisiana State University (5)
- University of Louisville (5)
- Chapman University (4)
- College of Saint Benedict and Saint John's University (4)
- Illinois State University (4)
- Liberty University (4)
- Michigan Technological University (4)
- Thomas Jefferson University (4)
- University of Denver (4)
- Keyword
-
- Genetics (28)
- Bioinformatics (14)
- Metabolism (12)
- Biochemistry (11)
- Cancer (10)
-
- Genome (10)
- DNA (9)
- Mutation (9)
- Electroporation (8)
- Meiothermus ruber (8)
- Annotation (7)
- GENI-ACT (7)
- RNA (7)
- Chemistry (6)
- Drosophila (6)
- Gene expression (6)
- Genes (6)
- Killifish (6)
- Machine learning (6)
- Microbiology (6)
- Molecular sequence data (6)
- Neurospora crassa (6)
- Protein (6)
- Protein structure (6)
- Transcription factors (6)
- Amino acid sequence (5)
- Biological sciences (5)
- Biology (5)
- E. coli (5)
- Experiments (5)
- Publication Year
- Publication
-
- Markey Cancer Center Faculty Publications (38)
- Dartmouth Scholarship (15)
- Dissertations and Theses (Open Access) (15)
- Bioelectrics Publications (14)
- Electronic Theses and Dissertations (12)
-
- Biochemistry Publications (11)
- Theses and Dissertations (11)
- Dissertations, Theses, and Capstone Projects (8)
- Meiothermus ruber Genome Analysis Project (8)
- Theses & Dissertations (8)
- Honors Capstones (7)
- All Dissertations (6)
- Biology Faculty Publications (6)
- Computer Science Faculty Publications (6)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (6)
- Killifish Research Review (6)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (6)
- Undergraduate Research Opportunities Program (UROP) (6)
- Biological Sciences Faculty Publications (5)
- Honors Scholar Theses (5)
- Loma Linda University Electronic Theses, Dissertations & Projects (5)
- Saha Cardiovascular Research Center Faculty Publications (5)
- DU Undergraduate Research Journal Archive (4)
- Dissertations, Master's Theses and Master's Reports (4)
- Publications (4)
- School of Medical Diagnostics & Translational Sciences Publications (4)
- Senior Honors Projects (4)
- Biological Sciences Faculty Publications and Presentations (3)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (3)
- Chemistry & Biochemistry Theses & Dissertations (3)
- Publication Type
- File Type
Articles 391 - 410 of 410
Full-Text Articles in Biochemistry
Production Of A Monoclonal Antibody Against Benzo[Α]Pyrene Diol Epoxide Dna Adducts, Brian Peden Austin
Production Of A Monoclonal Antibody Against Benzo[Α]Pyrene Diol Epoxide Dna Adducts, Brian Peden Austin
Chemistry & Biochemistry Theses & Dissertations
Benzo[α]pyrene is a ubiquitous pollutant produced from the incomplete combustion of organic material such as fossil fuels. It is found in the workplace, urban air, drinking water, and the food supply. Recently, it has been proposed that benzo[α]pyrene may be the causative agent in the formation of lung adenocarcinomas among some Taiwanese women exposed to cooking oil fumes without adequate ventilation. In this study, calf thymus DNA was modified in vitro with benzo[α]pyrene-diol epoxide (BPDE) to a level consistent with that found in biological samples. This DNA of low modification was used as an immunogen in the production of a …
Electrically Mediated Plasmid Dna Delivery To Hepatocellular Carcinomas In Vivo, L. Heller, M. J. Jaroszeski, D. Coppola, C. Pottinger, R. Gilbert, Richard Heller
Electrically Mediated Plasmid Dna Delivery To Hepatocellular Carcinomas In Vivo, L. Heller, M. J. Jaroszeski, D. Coppola, C. Pottinger, R. Gilbert, Richard Heller
Bioelectrics Publications
Gene therapy by direct delivery of plasmid DNA has several advantages over viral gene transfer, but plasmid delivery is less efficient. In vivo electroporation has been used to enhance delivery of chemotherapeutic agents to tumors in both animal and human studies. Recently, this delivery technique has been extended to large molecules such as plasmid DNA. Here, the successful delivery of plasmids encoding reporter genes to rat hepatocellular carcinomas by in vivo electroporation is demonstrated.
Cbfa2 Is Required For The Formation Of Intra-Aortic Hematopoietic Clusters, Trista North, Ting-Lei Gu, Stacy Terryl, Qing Wang, Louisa Howard, Michael Binder, Miguel Marín-Padilla, Nancy A. Speck
Cbfa2 Is Required For The Formation Of Intra-Aortic Hematopoietic Clusters, Trista North, Ting-Lei Gu, Stacy Terryl, Qing Wang, Louisa Howard, Michael Binder, Miguel Marín-Padilla, Nancy A. Speck
Dartmouth Scholarship
Cbfa2 (AML1) encodes the DNA-binding subunit of a transcription factor in the small family of core-binding factors (CBFs). Cbfa2 is required for the differentiation of all definitive hematopoietic cells, but not for primitive erythropoiesis. Here we show that Cbfa2 is expressed in definitive hematopoietic progenitor cells, and in endothelial cells in sites from which these hematopoietic cells are thought to emerge. Endothelial cells expressing Cbfa2 are in the yolk sac, the vitelline and umbilical arteries, and in the ventral aspect of the dorsal aorta in the aorta/genital ridge/mesonephros (AGM) region. Endothelial cells lining the dorsal aspect of the aorta, and …
Transcriptional Regulation Of The Bmp2 Gene: Retinoic Acid Induction In F9 Embryonal Carcinoma Cells And Saccharomyces Cerevisiae, Loree C. Heller, Yong Li, Kevin L. Abrams, Melissa B. Rogers
Transcriptional Regulation Of The Bmp2 Gene: Retinoic Acid Induction In F9 Embryonal Carcinoma Cells And Saccharomyces Cerevisiae, Loree C. Heller, Yong Li, Kevin L. Abrams, Melissa B. Rogers
Bioelectrics Publications
Bmp2, a highly conserved member of the transforming growth factor-beta gene family, is crucial for normal development. Retinoic acid, combined with cAMP analogs, sharply induces the Bmp2 mRNA during the differentiation of F9 embryonal carcinoma cells into parietal endoderm. Retinoic acid (RA) also induces the Bmp2 gene in chick limb buds. Since normal Bmp2 expression may require an endogenous retinoid signal and aberrant Bmp2 expression may cause some aspects of RA-induced teratogenesis, we studied the mechanism underlying the induction of Bmp2. Measurements of the Bmp2 mRNA half-life and nuclear run-on assays …
A Model Using Radiation And Pws4-Htnf-Α Gene Therapy For Treatment Of Glioblastomas, Angelo G. Baher
A Model Using Radiation And Pws4-Htnf-Α Gene Therapy For Treatment Of Glioblastomas, Angelo G. Baher
Loma Linda University Electronic Theses, Dissertations & Projects
The efficacy of radiotherapy for cancer is limited by the dose that can be safely delivered to the tumor without causing debilitating side effects. In addition, successful treatment of highly malignant tumors such as glioblastomas is likely to require adjunctive therapies to enhance tumor response to radiation. Previous studies have shown immunomodulation and a synergestic reduction in tumor volume of malignant tumors when tumor necrosis factor-α (TNF-α) protein is administered prior to radiation. The major goal of the present investigation was to evaluate the efficacy of pWS4-human TNF-α (pWS4-hTNF-α), a new plasmid construct that expresses human TNF-α protein, together with …
Circadian Clock-Controlled Genes Isolated From Neurospora Crassa Are Late Night- To Early Morning-Specific, Deborah Bell-Pedersen, Mari L. Shinohara, Jennifer J. Loros, Jay C. Dunlap
Circadian Clock-Controlled Genes Isolated From Neurospora Crassa Are Late Night- To Early Morning-Specific, Deborah Bell-Pedersen, Mari L. Shinohara, Jennifer J. Loros, Jay C. Dunlap
Dartmouth Scholarship
An endogenous circadian biological clock controls the temporal aspects of life in most organisms, including rhythmic control of genes involved in clock output pathways. In the fungus Neurospora crassa, one pathway known to be under control of the clock is asexual spore (conidia) development. To understand more fully the processes that are regulated by the N. crassa circadian clock, systematic screens were carried out for genes that oscillate at the transcriptional level. Time-of-day-specific cDNA libraries were generated and used in differential screens to identify six new clock-controlled genes (ccgs). Transcripts specific for each of the ccgs …
Interactions Involving The Human Rna Polymerase Ii Transcription/Nucleotide Excision Repair Complex Tfiih, The Nucleotide Excision Repair Protein Xpg, And Cockayne Syndrome Group B (Csb) Protein, Narayan Iyer, Michael S. Reagan, Kou-Juey Wu, Bertram Canagarajah, Errol C. Friedberg
Interactions Involving The Human Rna Polymerase Ii Transcription/Nucleotide Excision Repair Complex Tfiih, The Nucleotide Excision Repair Protein Xpg, And Cockayne Syndrome Group B (Csb) Protein, Narayan Iyer, Michael S. Reagan, Kou-Juey Wu, Bertram Canagarajah, Errol C. Friedberg
Biology Faculty Publications
The human basal transcription factor TFIIH plays a central role in two distinct processes. TFIIH is an obligatory component of the RNA polymerase II (RNAP II) transcription initiation complex. Additionally, it is believed to be the core structure around which some if not all the components of the nucleotide excision repair (NER) machinery assemble to constitute a nucleotide excision repairosome. At least two of the subunits of TFIIH (XPB and XPD proteins) are implicated in the disease xeroderma pigmentosum (XP). We have exploited the availability of the cloned XPB, XPD, p62, p44, and p34 genes (all …
Rosalind Elsie Franklin (1920-1958) Biologist, Margaret Sylvia
Rosalind Elsie Franklin (1920-1958) Biologist, Margaret Sylvia
Faculty Publications
A biography of the biologist Rosalind Elsie Franklin whose work on x-ray crystallography contributed to Watson and Crick's elucidation of the structure of DNA.
Identification And Characterization Of Genes Associated With V-Jun Induced Cell Transformation, Martin Toralballa Hadman
Identification And Characterization Of Genes Associated With V-Jun Induced Cell Transformation, Martin Toralballa Hadman
Biological Sciences Theses & Dissertations
The v-jun oncogene was initially identified as the causative agent for fibrosarcomas in chickens. Studies show that overexpression of v-Jun proteins transforms chicken embryo fibroblasts (CEF) in vitro, and forms tumors in chickens in vivo. The mechanisms for this are not clearly defined. Conceivably, overexpression of an unregulated transcription factor would cause cell transfonnation by illicit regulation of its target genes. In support of this, we show that in vivo v-Jun complexes exhibit differential binding to in vitro generated AP-1 and 'AP-1 like' target sequences, suggesting that the pattern of target gene expression is altered during cell transformation. …
Molecular Cloning And Rare Cleavage Mapping Of Human 2p, 6q, 8q, 12q, And 18q Telomeres, Roberto A. Macina, Ken Morii, Xue-Lan Hu, Dimitri G. Negorev, Chrysanthe Spais, Lisa A. Ruthig, Harold C. Riethman
Molecular Cloning And Rare Cleavage Mapping Of Human 2p, 6q, 8q, 12q, And 18q Telomeres, Roberto A. Macina, Ken Morii, Xue-Lan Hu, Dimitri G. Negorev, Chrysanthe Spais, Lisa A. Ruthig, Harold C. Riethman
School of Medical Diagnostics & Translational Sciences Publications
Large terminal fragments of human chromosomes 2p, 6q, 8q, 12q, and 18q were cloned using yeast artificial chromosomes (YACs). RecA-assisted restriction endonuclease (RARE) cleavage analysis of genomic DNA samples from 11 unrelated individuals using YAC-derived probes confirmed the telomeric localizations of the half-YACs studied. The cloned Fragments provide telomeric closure of maps for the respective chromosome arms and will supply the reagents needed for analyzing and sequencing these distal subtelomeric regions.
A Study Of Euplotes Crassus Telomere Proteins And Related Genes, John Scott Perez
A Study Of Euplotes Crassus Telomere Proteins And Related Genes, John Scott Perez
Department of Chemistry: Dissertations, Theses, and Student Research
A novel PCR technique used to amplify Euplotes crassus macronuclear chromosomes was developed to provide scientific proof that an Euplotes crassus 1.0 kb gene is not genetically related to an Oxytricha nova 1.8 kb β-telomere protein gene. Theories and experimental procedures associated with the development of this PCR technique were the product of research that will have a profound impact on future studies of telomere protein genes and telomeric DNA in a multitude of eukaryotic cells. The hypothesis that a β-telomere protein does not exist in Euplotes crassus was supported by the result of this study.
Expression of the recombinant …
Circadian Clock Locus Frequency: Protein Encoded By A Single Open Reading Frame Defines Period Length And Temperature Compensation., Benjamin D. Aronson, Keith A. Johnson, Jay C. Dunlap
Circadian Clock Locus Frequency: Protein Encoded By A Single Open Reading Frame Defines Period Length And Temperature Compensation., Benjamin D. Aronson, Keith A. Johnson, Jay C. Dunlap
Dartmouth Scholarship
The frequency (frq) locus encodes a key component, a state variable, in a cellular oscillator generating circadian rhythmicity. Two transcripts have been mapped to this region, and data presented here are consistent with the existence of a third transcript. Analysis of cDNA clones and clock mutants from this region focuses attention on one transcript encoding a protein. FRQ, which is a central clock component: (i) mutations in all of the semidominant frq alleles are the result of single amino acid substitutions and map to the open reading frame (ORF) encoding FRQ; (ii) deletion of this ORF, or a frameshift mutation …
Gal4 Disrupts A Repressing Nucleosome During Activation Of Gal1 Transcription In Vivo, Jeffrey D. Axelrod, Michael S. Reagan, John Majors
Gal4 Disrupts A Repressing Nucleosome During Activation Of Gal1 Transcription In Vivo, Jeffrey D. Axelrod, Michael S. Reagan, John Majors
Biology Faculty Publications
Photofootprinting in vivo of GALl reveals an activation- dependent pattern between the UASG and the TATA box, in a sequence not required for transcriptional activation by GAL4. The pattern results from a nucleosome whose position depends on sequences within the UASG. In the wild-type gene, activation by GAL4 and derivatives disrupts this nucleosome. This activity is independent of interactions with DNA-bound core transcription factors and is proportional to the strength of the activator. Presence of the nucleosome correlates with low basal transcription levels under various conditions, suggesting a role in limiting basal expression. We propose a role for the GAL4 …
Saccharomyces Cerevisiae Sec59 Cells Are Deficient In Dolichol Kinase Activity, Loree Heller, Peter Orlean, W. Lee Adair Jr.
Saccharomyces Cerevisiae Sec59 Cells Are Deficient In Dolichol Kinase Activity, Loree Heller, Peter Orlean, W. Lee Adair Jr.
Bioelectrics Publications
The temperature-sensitive Saccharomyces cerevisiae mutant sec59 accumulates inactive and incompletely glycosylated protein precursors in its endoplasmic reticulum at the restrictive temperature. O-mannosylation and glycosyl phosphatidylinositol membrane anchoring of protein are also abolished, consistent with a deficiency in dolichyl phosphate mannose. Membranes prepared from sec59 cells that had been shifted to the restrictive temperature, however, made normal amounts of dolichyl phosphate mannose when exogenous dolichyl phosphate was supplied, but dolichyl phosphate mannose synthesis was severely depressed in the absence of exogenous dolichyl phosphate. Quantitative measurements of dolichyl phosphate in sec59 cells showed that the levels were decreased to 48% of wild …
A Temperature-Sensitive Mutant Of Escherichia Coli Affected In The Alpha Subunit Of Rna Polymerase, Majid Mehrpouyan
A Temperature-Sensitive Mutant Of Escherichia Coli Affected In The Alpha Subunit Of Rna Polymerase, Majid Mehrpouyan
Electronic Theses and Dissertations
A temperature-sensitive mutant of Escherichia coli affected in the alpha subunit of RNA polymerase has been investigated. Gene mapping and complementation experiments placed the mutation to temperature-sensitivity within the alpha operon at 72 min on the bacterial chromosome. The rate of RNA synthesis in vivo and the accumulation of ribosomal RNA were significantly reduced in the mutant at 44$\sp\circ$C. The thermostability at 44$\sp\circ$C of the purified holoenzyme from mutant cells was about 20% of that of the normal enzyme. Assays with T7 DNA as a template showed that the fraction of active enzyme competent for transcription was reduced as a …
The Use Of Synthetic Oligodeoxyribonucleotides In Direct Analysis Of Single Nucleotide Variations And Inhibition Of Eukaryotic Gene Expression, Daniel Y. Wu
Loma Linda University Electronic Theses, Dissertations & Projects
The present thesis work contributes to two areas of molecular genetics, namely the development of methods for identifying single nucleotides and the understanding of the mechanism by which antisense oligonucleotides inhibit eukaryotic gene expression. Three single nucleotide detection methods are presented. The first method utilizes hybridization with synthetic oligonucleotide probes to detect single or multiple nucleotide differences between alleles in genomic DNA without electrophoretic separation. Total genomic DNA (either digested or undigested with restriction endonucleases) was immobilized in depressions in an agarose gel (in situ dots) and hybridized with radiolabeled, allele-specific oligonucleotide probes. We show that this method can be …
Effects Of Chemical Aneuploidogens On Taxol Purified Drosophila And Mouse Brain Microtubules Polymerization And Depolymerization In Vitro, Anil Sehgal
Biological Sciences Theses & Dissertations
The effects of aneuploidogens (aneuploidy causing agents) on taxol-purified microtubules from Drosophila and mouse brain in vitro were studied by using a spectrophotometric assay and electron microscopy. Colchicine, acetonitrile, propionitrile, acrylonitrile, dimethyl sulfoxide (DMSO), griseofulvin and cadmium chloride inhibited microtubule polymerization whereas methoxyethyl acetate (MEA) and methyl mercuric chloride (MMC) did not. All aneuploidogens tested (at 50mM) resulted in reduced rate of elongation of mouse brain microtubules. MMC, cadmium chloride and DMSO resulted in increased rates of Drosophila microtubule elongation whereas the rest of the drugs resulted in decreases. The in vitro results from Drosophila correlate well with the previously …
Variants And Polymorphisms Of Three Repetitive Dna Families In The Human Genome, Robert M. Roudabush
Variants And Polymorphisms Of Three Repetitive Dna Families In The Human Genome, Robert M. Roudabush
Electronic Theses and Dissertations
A novel 0.6 kb LINE family in human DNA, designated L2Hs, has been described (Musich and Dykes 1986). Studies employing clone N6.4, containing three 0.6 kb segments of this family, indicate that these sequences are interspersed and moderately repetitive. Two additional variant sequences of the L2Hs family, N6.1 and N6.3, have been identified. Restriction mapping of each cloned segment indicates similarities among N6.4, N6.3 and N6.1. When the cloned DNAs were cleaved with restriction enzymes and subjected to cross-hybridization, each cloned insert produced a pattern indicating that the sequences contained in N6.1 and N6.3 are represented in at least one …
The Purification Of Ribosomal Rna Gene Chromatin From Physarum Polycephalum, Sally A. Amero, Roy C. Ogle, John L. Keating, Vicky L. Montoya, Wendy L. Murdoch, Robert M. Grainger
The Purification Of Ribosomal Rna Gene Chromatin From Physarum Polycephalum, Sally A. Amero, Roy C. Ogle, John L. Keating, Vicky L. Montoya, Wendy L. Murdoch, Robert M. Grainger
School of Medical Diagnostics & Translational Sciences Publications
We have undertaken the purification of ribosomal RNA gene (rDNA) chromatin from the slime mold Physarum polycephalum, in order to study its chromatin structure. In this organism rDNA exists in nucleoli as highly repeated minichromosomes, and one can obtain crude chromatin fractions highly enriched in rDNA from isolated nucleoli. We first developed a nucleolar isolation method utilizing polyamines as stabilization agents that results in a chromatin fraction containing far more protein than is obtained by the more commonly used divalent cation isolation methods. The latter method appears to result in extensive histone loss during chromatin isolations. Two methods were then …
The Association Of 5.8 S With 28s Ribosomal Rna, Nandita Banerjee
The Association Of 5.8 S With 28s Ribosomal Rna, Nandita Banerjee
Chemistry & Biochemistry Theses & Dissertations
5.8S rRNA is a low molecular weight ribosomal RNA which is noncovalently bonded to the larger ribosomal subunit 28S rRNA; through its 3' end and through its 5' end. This interaction is an integral part of the ribosome, and plays an important role in the ribosome structure and function.
There is a high degree of homology between the 5.8S rRNA primary structures of rat, turtle and chicken. The base sequence of rat 5.8S rRNA differs only in one position from that of turtle and in three positions fr.om that of cl1.icken. Tl1ere is a single purine substitution at the 5' …