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Biomedical subjects

L Hood

Publications and source records attributed to L Hood.

At least 163 records · Page 9Linked to original sources

Sequence similarities of myelin basic protein promoters from mouse and shark: implications for the control of gene expression in myelinating cells.

To better understand the cell type-specific and coordinated regulation of the myelin protein genes, we cloned and sequenced the shark myelin basic protein (MBP) promoter. An alignment of the shark sequence with the corresponding mouse sequence showed striking similarities. These similarities, together with the results from expression experiments, define two major regions (A and B) within the MBP promoter. Region A is located immediately 5' to the transcription initiation sites and includes five sequences thought to be cis-acting domains. These domains include two boxes of 13 and 12 nucleotides, respectively, separated from each other by 10 nucleotides, an MBP enhancer, and GC, CCAAT, and TATA boxes. Region A also contains a putative exon that codes for 35 amino acids of an unidentified polypeptide. Region B, which is located adjacent to the 5' end of region A, contains two boxes that are 10 and 11 nucleotides long, respectively, and are identical in mouse and shark. We have previously cloned and sequenced the shark glycoprotein zero (P0) promoter. A comparison between the sequences of the rat and shark P0 promoters shows three conserved regions in addition to CCAAT and TATA boxes. The shark P0 promoter is active in the CNS and PNS, and contains a sequence of 13 nucleotides that is located at -159 from the initiation of transcription and is similar to that of the MBP enhancer. The mammalian P0 promoter is active exclusively in the adult PNS and contains a sequence similar to that of the MBP enhancer located adjacent to the 3' side of the transcription initiation site. Sequence similarities and differences between the promoters of the mammalian and shark myelin protein genes will help to identify the basis for the cell type-specific and coordinated expression of these genes.

Animals↗

The ht beta gene encodes a novel CACCC box-binding protein that regulates T-cell receptor gene expression.

A gene encoding a novel CACCC box-binding protein that binds to the promoter region of the human T-cell receptor (TCR) V beta 8.1 gene and the mouse TCR alpha gene silencer has been cloned. This gene, termed ht beta, contains four zinc fingers of the class Cys2-X12-His2 that may be responsible for DNA binding and a highly negatively charged region that defines a putative transcriptional activation domain. Analysis of the expression of ht beta mRNA revealed similar expression levels and patterns in various cell lines. The bacterially expressed ht beta protein can bind to the CACCC box in both the human TCR V beta 8.1 gene promoter and the mouse TCR alpha gene silencer. The CACCC box is essential for efficient transcription of the V beta 8.1 promoter. Cotransfection with an ht beta expression plasmid and a reporter vector indicated that ht beta can activate human TCR V beta 8.1 gene transcription. ht beta also is able to counteract the silencing effect of the mouse TCR alpha gene silencer. The CACCC box has been found in almost all V beta 8.1 gene subfamily members and in both TCR alpha and beta gene enhancers in humans and mice. These results suggest that the CACCC box-binding protein may have an important regulatory function for TCR gene expression in alpha beta T cells versus gamma delta T cells.

Amino Acid Sequence↗

Identification of a brain-specific human cerebrospinal fluid glycoprotein, beta-trace protein.

A prominent human cerebrospinal fluid (CSF) protein, P5, identified at mass 19-24 kDa and charge 5.5, by two-dimensional electrophoresis (2DE) and silver staining, has been previously demonstrated to be reduced in quantity in the CSF of patients with multiple sclerosis and schizophrenia. We report the purification and partial amino acid sequences from five tryptic fragments of P5. These sequences are not those of any known sequence in the Protein Identification Resource (PIR release 31) database. Synthetic peptides from two of the sequences were used to raise rabbit polyclonal antibodies. These antibodies detected P5 on 2DE blots of normal CSF proteins and other proteins of the same mass with a charge distribution between 5.17-8.5. These proteins comprise 5-10% of the total CSF protein and their mass, charge, abundance and predominance in CSF over plasma are consistent with a protein that had been initially characterized with antibodies, beta-trace protein. Glycosidase studies confirm that most of these proteins are due to sialic acid modifications that are N-linked to an 18 kDa protein, but other charge and mass variations also exist. 2DE blots of 26 types of human tissue and body fluid were immunostained. Of these, anti-P5 serum detected proteins of the same mass and charge as beta-trace protein only in brain samples. Proteins of different mass and charge from beta-trace protein were clearly immunostained in samples of eight tissues.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Mechanical precision in two-dimensional electrophoresis can improve protein spot positional reproducibility.

Current methods for high resolution two-dimensional electrophoresis (2DE) of proteins are capable of separating over 5000 protein spots in one procedure. Running and analysing such 2DE gels requires skilled technical work. However, the variable reproducibility of spot positions means that, even under the best circumstances, one gel cannot be overlain directly on another for precise comparison. Therefore, new and improved technologies that enhance gel-to-gel reproducibility are required. To this end, we have designed and built a research instrument to test whether a precise mechanical device could improve the gel-to-gel reproducibility by reducing the amount of distortion and positional variation between the first and second dimension gels. Other causes of poor reproducibility, including sample type and preparation, gel matrices and running conditions were not varied in order to limit this study to the mechanical variations inherent in current 2DE systems. We found that the sample standard deviation of pooled data for measured protein spot-to-spot distances in the prototype device was 1.3 mm as compared to 4.3 mm in a conventional 2DE system. These improvements support the possibility that greater automation of the multistep 2DE process will enhance reproducibility. This approach seems justified in order to achieve significantly better matching between gels and between results from different laboratories.

Cerebrospinal Fluid Proteins↗

Delays to thrombolysis in the treatment of myocardial infarction.

In-hospital delays to thrombolysis were significantly shorter when thrombolysis was available on admission to the accident and emergency department than after transfer to the coronary care unit (median 60 min v 84 min, p < 0.0001). With direct admission by general practitioners to a coronary care unit the subsequent in-hospital delay was shorter (median 39 min p = 0.0004), but overall delay to thrombolysis longer (median 220 v 170 min, p = 0.0019) because of longer pre-hospital delays. Overall delay was shortest with emergency ambulance referral and thrombolysis being administered in the accident and emergency department.

Aged↗

Sequence length and error analysis of Sequenase and automated Taq cycle sequencing methods.

We have examined DNA sequence error as a function of length using both a manual method of performing reactions with Sequenase and an automated Taq cycle sequencing method. DNA fragments from both methods were separated and analyzed on a sequencer. To determine the sequence of a cosmid insert (35.3 kb), 379 sequences were obtained from a manual Sequenase method, and 354 sequences were obtained from a Taq cycle sequencing method as performed on an automated robotic workstation and sequenced on an automated fluorescent sequencer. A highly redundant consensus of these sequences was obtained and aligned with the individual sequences to determine sequence error over the length of each sequence. The results of this study indicate that error is about 1% per position over the first 350 nucleotides, but increases thereafter to about 17% at 500 nucleotides. This pattern of accuracy was nearly equivalent for manual Sequenase methods and automated Taq cycle sequencing methods. The potential of these methods in large-scale DNA sequencing projects is discussed.

Cloning, Molecular↗

Structure-function relationship among T-cell receptors specific for lysozyme peptides bound to Ab or Abm-12 molecules.

The alpha beta T-cell receptor (TCR) recognizes antigenic peptides bound to major histocompatibility complex (MHC) molecules. In contrast to the antibody combining site, for which the antigen contact or complementarity-determining residues (CDRs) have been precisely defined, the location and function of the corresponding CDR regions of the alpha and beta TCR chains are not known. To develop a model system for systematic analysis of the CDRs of the alpha beta TCR, we isolated a panel of murine T-cell clones that recognize a lysozyme peptide containing residues 74-88 bound to either Ab or Abm-12 MHC class II molecules. Although these two MHC molecules differ by only three amino acid residues within the A beta chain, each of the T-cell clones was specific for peptide bound to the self-MHC molecule and did not recognize the same peptide bound to the other MHC molecule. The structural basis for this exquisite ligand specificity of the TCRs was analyzed by isolation and characterization of alpha and beta chain genes from five closely related T-cell clones. Comparison of predicted amino acid sequences mapped the ligand specificity differences to residues present within the alpha chain variable region segment and the alpha and beta chain variable-joining region junction regions. Thus with current models of TCR-ligand interactions, the results suggest that residues 26-30 of the alpha chain variable region may constitute one of the CDR regions of the TCR.

Amino Acid Sequence↗

Differences in T cell receptor restriction fragment length polymorphisms in patients with rheumatoid arthritis.

OBJECTIVE: The purpose of this study was to determine whether a T cell receptor (TCR) polymorphism, either by itself or in combination with particular HLA polymorphism, leads to susceptibility to rheumatoid arthritis (RA). METHODS: Eight restriction fragment length polymorphisms (RFLPs) detected with TCR gene segments were investigated in 46 individuals with RA and were compared with data from normal control subjects. RESULTS: A statistically significant difference in the genotype frequencies of a Taq I RFLP detected with the TCR alpha constant region (C alpha) gene was noted. In addition, when the DR4+ subpopulations were examined, the allelic frequency of a 2-kb Bam HI fragment detected with a V beta 8 gene was increased in the samples from RA patients (P less than 0.0086). CONCLUSION: The results of this study suggest that germline differences in the TCR repertoire may be associated with RA, and that there is a contributory effect of DR4+ haplotypes with certain TCR haplotypes in susceptibility to RA.

Arthritis, Rheumatoid↗

Human cerebrospinal fluid protein database: edition 1992.

Two-dimensional electrophoresis maps of human cerebrospinal fluid proteins are presented in the form of labeled images. 931 protein spots are identified in spinal fluid from a normal volunteer. Distinct spots that represent variants of the same protein, especially posttranslational modifications, are estimated to reduce the 931 different spots to < 200 different proteins. 248 spots of 29 protein groups have been identified and are indicated on enlargements of specific gel regions. The distribution of protein abundance, mass, charge and shape characteristics of these normal 931 spinal fluid spots are graphically profiled. Analysis of the shape parameter "vertical height: width ratio" reveals that a ratio > 3.5 correlates with glycoproteins, enabling their identification simply by image analysis. Proteins that are not present on the normal map, but appear in spinal fluid in patients with schizophrenia and Creutzfeldt-Jakob disease are illustrated on additional maps.

Cerebrospinal Fluid Proteins↗

Expression of mouse Tla region class I genes in tissues enriched for gamma delta cells.

The Tla region of the BALB/c mouse major histocompatibility complex contains at least 20 class I genes. The function of the products of these genes is unknown, but recent evidence demonstrates that some Tla region gene products could be involved in presentation of antigens to gamma delta T cells. We have generated a set of polymerase chain reaction (PCR) oligonucleotide primers and hybridization probes that permit us to specifically amplify and detect expression of 11 of the 20 BALB/c Tla region genes. cDNA prepared from 12 adult and fetal tissues and from seven cell lines was analyzed. In some cases, northern blot analysis or staining with monoclonal antibodies specific for the Tla-encoded thymus leukemia (TL) antigen were used to confirm the expression pattern of several of the genes as determined by PCR. Some Tla region genes, such as T24d and the members of the T10d/T22d gene pair, are expressed in a wide variety of tissues in a manner similar to the class I transplantation antigens. The members of the TL antigen encoding gene pair, T3d/T18d, are expressed in only a limited number of organs, including several sites enriched for gamma delta T cells. Other Tla region genes, including T1d, T2d, T16d, and T17d, are transcriptionally silent and transcripts from the T8d/T20d gene pair do not undergo proper splicing. In general, sites that contain gamma delta T lymphocytes have Tla region transcripts. The newly identified pattern of expression of the genes analyzed in sites containing gamma delta T cells further extends the list of potential candidates for antigen presentation to gamma delta T cells.

Animals↗

Automatable screening of yeast artificial-chromosome libraries based on the oligonucleotide-ligation assay.

The systematic screening of yeast artificial-chromosome (YAC) libraries is the limiting step in many physical mapping projects. To improve the screening throughput for a human YAC library, we designed an automatable strategy to identify YAC clones containing a specific segment of DNA. Our approach combines amplification of the target sequence from pooled YAC DNA by the polymerase chain reaction (PCR) with detection of the sequence by an ELISA-based oligonucleotide-ligation assay (OLA). The PCR-OLA approach eliminates the use of radioactive isotopes and gel electrophoresis, two of the major obstacles to automated YAC screening. Furthermore, the use of the OLA to test for the presence of sequences internal to PCR primers provides an additional level of sensitivity and specificity in comparison to methods that rely solely on the PCR.

Base Sequence↗

Nucleotide sequence analysis of 95 kb near the 3' end of the murine T-cell receptor alpha/delta chain locus: strategy and methodology.

The nucleotide sequence of a region at the 3' terminus of the murine T-cell receptor alpha/delta chain locus is presented. This region, which encodes the constant region genes for alpha and delta chain polypeptides and all 50 joining gene segments for the alpha chain polypeptide, spans 94,647 bp and includes more than 50 noncoding sequence elements important for T-cell receptor gene rearrangement and expression. DNA sequencing of this region included complete analysis of two cosmid clones and five additional restriction fragments using a random subcloning approach with various manual and automated sequencing strategies. The automated sequencing strategies hold considerable promise for future large-scale DNA sequencing efforts.

Animals↗

Organization, structure, and function of 95 kb of DNA spanning the murine T-cell receptor C alpha/C delta region.

We have analyzed the organization, structure, and function of the murine T-cell receptor C alpha/C delta region. This region spans 94.6 kb of DNA and contains the C alpha and C delta genes, as well as the V delta 5, J delta 2, and 50 different J alpha gene segments. Within this sequence we have identified 15 new J alpha gene segments, 40 new 5' RNA splice signals, and 40 new DNA rearrangement signals for the J alpha gene segments. The murine C alpha/C delta sequence contains an exceptionally high level of coding sequence with over 5.7% of the total sequence found in the exons. This is much more than that found in the beta-globin locus and the HPRT locus. Using the sequence data obtained from the C alpha/C delta region, we have designed simple assays to test for J alpha gene segment transcription and to determine the level of polymorphism for simple repeat sequences among different inbred strains of mice using the polymerase chain reaction. Furthermore, comparisons of this 95 kb of sequence with the available sequence from homologous regions of other species have led to the identification of a highly conserved sequence that is present throughout vertebrates and in the mouse binds lymphocyte-specific nuclear proteins. Comparisons of a 10-kb region, which includes the C alpha gene in human and mouse, average 66% sequence similarity. These studies support the contention that large-scale DNA sequencing projects of homologous regions of mouse and human will provide powerful new tools for studying the biology and evolution of loci such as the T-cell receptor and for identifying and posing new questions about the functions of conserved sequences.

Amino Acid Sequence↗

Identification of clusters of biallelic polymorphic sequence-tagged sites (pSTSs) that generate highly informative and automatable markers for genetic linkage mapping.

Using a combination of denaturing gradient gel electrophoresis and direct DNA sequencing, we have found that multiple (4 to 7) biallelic sequence polymorphisms can be located within short DNA segments, 300 to 2400 bp. Here, we report on the identification of three clusters of DNA polymorphisms, one in each of the constant regions of the human T cell receptor alpha and beta gene complexes on human chromosomes 14 and 7, respectively, and a third among the human t-RNA genes on human chromosome 14. The frequency of these polymorphisms and the extent of linkage disequilibrium between individual polymorphisms have been determined using a semiautomated DNA typing system combining DNA target amplification by the polymerase chain reaction with the analysis of internal sequence polymorphisms by a colorimetric oligonucleotide ligation assay. We have found that individual biallelic polymorphisms in each cluster are often in partial linkage disequilibrium with one another. This partial linkage disequilibrium permits the combined use of three to four markers in a cluster to generate a haplotype with high levels of heterozygosity, 71 to 88%. Therefore, clusters of physically linked biallelic polymorphisms provide an automatable and highly informative type of genetic marker for general linkage analysis as well as an attractive alternative marker system for fine-point mapping of disease-causing genes and phenotypic traits relative to their framework locations in the genome.

Alleles↗