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Biomedical subjects

D L Weiss

Publications and source records attributed to D L Weiss.

At least 19 recordsLinked to original sources

CT features of plexiform neurofibroma of the submandibular gland.

Plexiform neurofibroma of the submandibular gland is an extremely rare tumor. We report the CT findings in a 6-year-old girl with type 1 neurofibromatosis who had a histopathologically proven submandibular gland plexiform neurofibroma. A "branching" hypodense mass was noted on the CT scan infiltrating the submandibular gland and the adjacent spaces of the neck. CT could be extremely valuable in suggesting the diagnosis.

Child↗

Influence of electrophysiological heterogeneity on electrical stimulation in healthy and failing human hearts.

The application of strong electrical stimuli is a common method used for terminating irregular cardiac behaviour. The study presents the influence of electrophysiological heterogeneity on the response of human hearts to electrical stimulation. The human electrophysiology was simulated using the ten Tusscher-Noble-Noble-Panfilov cell model. The anisotropic propagation of depolarisation in three-dimensional virtual myocardial preparations was calculated using bidomain equations. The research was carried out on different types of virtual cardiac wedge. The selection of the modelling parameters emphasises the influence of cellular electrophysiology on the response of the human myocardium to electrical stimulation. The simulations were initially performed on a virtual cardiac control model characterised by electrophysiological homogeneity. The second preparation incorporated the transmural electrophysiological heterogeneity characteristic of the healthy human heart. In the third model type, the normal electrophysiological heterogeneity was modified by the conditions of heart failure. The main currents responsible for repolarisation (Ito, IKs and IKI) were reduced by 25%. Successively, [Na+]i was increased by the regulation of the Na+-Ca2+ exchange function, and fibrosis was represented by decreasing electrical conductivity. Various electrical stimulation configurations were used to investigate the differences in the responses of the three different models. Monophasic and biphasic electrical stimuli were applied through rectangular paddles and needle electrodes. A whole systolic period was simulated. The distribution of the transmembrane voltage indicated that the modification of electrophysiological heterogeneity induced drastic changes during the repolarisation phase. The results illustrated that each of the heart failure conditions amplifies the modification of the response of the myocardium to electrical stimulation. Therefore a theoretical model of the failing human heart must incorporate all the characteristic features.

Electric Countershock↗

Integrated voice recognition and picture archiving and communication system: development and early experience.

Voice recognition (VR) and picture archiving and communication system (PACS) both have advantages and disadvantages in radiologic practice. We describe a fully integrated VR/PACS system running on a single platform. Integration optimizes the positive features of both systems and creates a synergy that is not otherwise realized. The planning and development of the system is described, as well as a number of challenges that were addressed. Radiologists have viewed the process changes very positively during initial use.

Humans↗

Regulation of IL-4 production in mast cells: a paradigm for cell-type-specific gene expression.

The role of interleukin (IL)-4 as an important immunomodulatory cytokine is well established. IL-4 exhibits a highly restricted pattern of expression by cells of distinct lineages. The cell types that produce IL-4 are located in anatomically distinct locations (e.g. circulating T cells vs. fixed tissue mast cells) and thus have access to different IL-4-responsive target cells. In addition, these cells appear to regulate IL-4 expression in cell-type-specific ways. These findings suggest that an understanding of IL-4 gene regulation in T and mast cells could provide the means to specifically control IL-4 release in a lineage- and site-specific manner. In this article we review the current knowledge regarding the cell-type specific regulation of IL-4 gene expression in mast cells and compare this to what has been defined in T cells. We show that there are distinct yet parallel events that control developmentally determined chromatin modifications, allowing accessibility of the locus, and provide the potential for transcription. In differentiated cells, a subset of unique cell activation signals initiates the cascade of events that lead to transcriptional activation of the IL-4 gene.

Animals↗

NF-ATc isoforms are differentially expressed and regulated in murine T and mast cells.

NF of activated T cells (NF-AT) denotes a family of transcription factors that regulate the activation-dependent expression of many immunologically important proteins. At least four distinct genes encode the various family members, and several isoforms of these have been identified as well. The overlapping expression patterns and similar in vitro binding and trans-activation activities on various promoter elements of NF-AT-regulated genes suggest some redundancy in the function of these proteins. However, the phenotypic analysis of NF-AT-deficient mice supports the idea that there are tissue- and gene-specific functions as well. In this study we have characterized the expression of NF-AT cDNAs in murine mast cells. The majority of clones identified correspond to two NF-ATc isoforms that differ only in their amino-terminal sequence. Despite minimal discrepancies in the coding region, there are striking tissue- and cell type-specific differences in isoform expression patterns. Detection of NF-ATc.alpha mRNA is strictly dependent on cell activation signals in both T and mast cell lines. In contrast, the beta isoform is expressed at very low constitutive levels in both cell types but is only up-regulated in response to mast cell activation signals delivered through the FcepsilonRI or via calcium ionophores. These results demonstrate another level of regulation within the NF-AT family that can contribute to cell type-specific gene expression.

Amino Acid Sequence↗

Comparison of outcome after stenting for de novo versus restenotic narrowings in native coronary arteries.

Intracoronary stenting of de novo narrowings results in a lower restenosis rate when compared with percutaneous transluminal coronary angioplasty. We sought to determine whether intracoronary stenting for restenotic narrowings is associated with a worse outcome when compared with stenting for de novo narrowings. A total of 114 consecutive patients with 124 narrowings were retrospectively identified. Stents were deployed in 46 de novo (37%) and in 78 restenotic (63%) narrowings. The 2 groups were similar with respect to variables known to affect restenosis. Follow-up angiograms were available in 88% of patients at a mean of 6.3 +/- 3.3 months after stent implantation. At follow-up angiography, a significantly higher restenosis rate in the restenotic group was observed (p = 0.05). Restenosis risk could not be predicted from variables known at the time of stent implantation. However, the presence of angina at the time of follow-up was significantly associated with restenosis (p = 0.01). Kaplan-Meier survival curves for freedom from repeat target-site revascularization demonstrated a significant difference in the need for target-site revascularization between the de novo and restenotic groups over the first-year post-stent implantation (p = 0.01; relative risk = 1.94). Multivariate analysis identified restenosis as the indication for stenting (p <0.01), postprocedure percent stenosis (p = 0.01), and narrowing length (p = 0.01) as independent predictors for repeat target-site revascularization. When compared with de novo narrowings, restenotic narrowings have a worse outcome after stenting. A prospective, randomized trial comparing outcome after percutaneous transluminal coronary angioplasty and stents for restenotic narrowings would be useful.

Adult↗

Nuclear factor of activated T cells is associated with a mast cell interleukin 4 transcription complex.

Interleukin 4 (IL-4), an immunoregulatory cytokine, is produced only by a subset of activated T cells and cells of the mast cell-basophil lineage. The production of IL-4 by mast cells likely represents a significant source of this protein in local immune-inflammatory responses in the skin, brain, gastrointestinal, and respiratory tracts, in which mast cells are prevalent. In the present study, the cis- and trans-acting elements that control inducible mast cell IL-4 gene transcription were examined and compared with those that function in T cells. We demonstrate that, as in T cells, sequences between bp -87 and -70 are critical for protein association and activation-dependent gene transcription and that this region (termed the activation-responsive element region) is the target of an inducible, cyclosporin A-sensitive, DNA-protein interaction. When assessed by electrophoretic mobility shift assays and UV cross-linking analyses, multiple proteins in both T- and mast cell nuclear extracts associate with the activation-responsive element in vitro, and some of these appear identical. However, distinct proteins are associated with each of the complexes as well. AP-1 family members are unique to the T-cell-stimulation-dependent complex, whereas mast cell complexes contain factors that are reactive with anti-nuclear factor of activated T cells p (NF-ATp) and anti-NF-ATc antibodies but have distinct molecular masses compared with those of T-cell-derived NF-AT. Furthermore, an anti-NF-ATp-reactive factor with a molecular mass of approximately 41 kDa is present in the nuclei of unstimulated cells and binds independently of cell activation, unlike the previously described NF-AT family members. These data support the idea that there are uniquely regulated, cell lineage-specific transcription factors related to T-cell-derived NF-AT that mediate inducible IL-4 transcription in mast cells. These differences likely reflect the distinct cell surface signaling requirements for IL-4 production in T and mast cells.

Animals↗

Characterization of the constitutive and inducible components of a T cell IL-4 activation responsive element.

An Il-4 regulatory element, activation responsive element (ARE), located between -88 and -60, contributes to activation-dependent transcription of IL-4/CAT reporter gene constructs in T cells. It was previously demonstrated that nuclear proteins present in both unstimulated and stimulated T cells specifically interact with the ARE. In this study, these proteins were further characterized. UV cross-linking experiments established that multiple proteins are associated with the ARE in both the constitutive and activation-dependent complexes and several of these have identical apparent m.w. The formation of both complexes is dependent on the same ARE subsequence. In addition, activator protein 1 family members are uniquely associated with the activation-dependent complex. These results support a model in which activation-dependent proteins, including jun/fos family members, associate with a preexisting transcription complex to influence inducible IL-4 gene transcription. The ARE shares 9 bp of sequence identity with the IL-2 nuclear factor of activated T cell (NF-AT) binding site within the critical protein binding region, and several features of ARE-protein interactions are similar to the NF-AT transcription complex. However, we demonstrate that the constitutive nuclear ARE-associated factors react with Abs, raised to NF-ATp and NF-ATc, preferentially bind to the ARE but not to the NF-AT binding site and are cyclosporin A sensitive. Taken together, these data indicate that there are IL-4 gene-specific factors associated with the ARE and that the formation of the ARE and NF-AT complexes are regulated differently.

Animals↗

Characterization of the molecular defect in a feline model for type II GM2-gangliosidosis (Sandhoff disease).

The Korat cat provides an animal model for type II GM2-gangliosidosis (Sandhoff disease) that may be suitable for tests of gene replacement therapy with the HEXB gene encoding the beta subunit of the beta-hexosaminidases. In the present report, we examined the brain and liver pathology of a typical Sandhoff-affected cat. We characterized the feline HEXB complementary DNA (cDNA) and determined the molecular defect in this feline model. cDNA libraries were produced from one normal and one affected animal, and cDNA clones homologous to human HEXB were sequenced. In the affected cDNA clone, the deletion of a cytosine residue at position +39 of the putative coding region results in a frame shift and a stop codon at base +191. This disease-related deletion was consistently detected by sequencing of cloned polymerase chain reaction amplified reverse transcribed messenger RNA from one more normal Korat and two additional affected animals. The defect was further demonstrated using single-strand conformational polymorphism analysis of the polymerase chain reaction products. In addition, alternative splicing of both normal and affected messenger RNAs was demonstrated. These results should facilitate the use of this animal model to assess gene therapy.

Amino Acid Sequence↗

An activation-responsive element in the murine IL-4 gene is the site of an inducible DNA-protein interaction.

IL-4 is a pleiotropic cytokine whose expression is limited to a subset of activated T cells and cells of the basophil/mast cell lineage. It plays a key role in regulating many immune responses; however, little is known about the intracellular signaling events that lead to the selective and transient IL-4 expression in either of these cell types. In this study, the molecular basis of stimulation-dependent transcription in T cells was explored. To identify cis elements that regulate IL-4 gene transcription, various amounts of the 5' flanking region of the murine IL-4 gene were linked to a chloramphenicol acetyl transferase (CAT) reporter gene and tested for the ability to modulate CAT gene transcription in PMA-stimulated EL-4 T cells. These experiments indicate that multiple positive and negative-acting elements contribute to the overall level of IL-4 transcription. These elements are located both proximal and distal to the transcription initiation site (TIS). An activation responsive element is located within 87 bp of the IL-4 gene TIS. This sequence is sufficient to confer responsiveness to PMA-mediated signals and results in a 10- to 20-fold induction of CAT reporter gene activity compared to activity detected in unstimulated cells. Proteins that specifically bind sequences within this region (-88 to -60) are detected in both unstimulated and stimulated EL-4 T cell nuclear extracts. An additional DNA-protein interaction is detected only when extracts from stimulated cells are analyzed. Base substitutions within the -88 to -60 sequence affect both transactivation function and protein/DNA interactions and demonstrate that sequences between -78 and -69 bp are critical. Together, these data support a model in which T cell activation signals stimulate binding of a nuclear protein(s) to a preexisting IL-4 DNA-protein complex. Proteins detected in these promoter proximal DNA-protein complexes are likely to be key elements in facilitating stimulation-dependent IL-4 transcription.

Animals↗

A DNase I-hypersensitive site in the second intron of the murine IL-4 gene defines a mast cell-specific enhancer.

IL-4 is a potent immunoregulatory cytokine that exhibits extremely diverse effects on a number of target cells. Although IL-4 was originally described as a T cell-derived product, it is evident that cells of the basophil/mast cell lineage are also an important source of this cytokine. Based on their different tissue distribution, mast cell and T cell-derived IL-4 may have distinct effects on local immune responses. The physiologic production of IL-4 appears to be tightly regulated because most T and mast cells require activation to express significant levels of IL-4. In contrast, a majority of murine transformed mast cell lines constitutively express relatively high levels of IL-4. In this study, transformed mast cell lines were used as models to define cis acting sequences that regulate mast cell IL-4 transcription. Chloramphenicol acetyltransferase reporter gene constructs containing 6.3 kb of 5' IL-4 flanking sequence direct relatively low chloramphenicol acetyltransferase expression in these cells. These results indicated that additional sequences may be important in stimulating transcriptional activity of the IL-4 gene. Using DNAse I hypersensitive site analysis to define other potential IL-4 transcriptional regulatory regions, two sites were identified in the murine IL-4 gene that appear to be unique to IL-4 expressing transformed mast cells. One site defines an intronic sequence that exhibits prototypic enhancer activity in several independently derived transformed mast cell lines. This enhancer is also active in stimulated, non-transformed mast cells but not stimulated EL-4 T cells. Taken together, these data indicate that the IL-4 intronic sequence contains a mast cell specific enhancer that plays an essential role in the unregulated expression of IL-4 in transformed mast cells and may also be important in the inducible expression of IL-4 in normal mast cells.

Animals↗

Structural analysis of the ileR locus of Escherichia coli K12.

The Ile repressor protein negatively controls expression from the ilv and thr promoters of Escherichia coli K12. Its existence was inferred from an analysis of the phenotypes of the ileR mutant avr-16 (Johnson, D. I., and Somerville, R. L. (1983) J. Bacteriol. 155, 49-55). The nucleotide sequence of ileR, the structural gene for Ile repressor, has been determined. A DNA segment of 300 base pairs constitutes the ileR gene. The predicted gene product, a protein of 100 amino acids (molecular weight 11,823) has primary structural features reminiscent of other double-stranded DNA-binding regulatory proteins. S1 nuclease mapping of the 5' terminus of ileR mRNA revealed two discrete species whose startpoints differed by approximately 47 nucleotides. The ileR gene, like other repressors for amino acid biosynthetic systems, is autogenously regulated at the transcriptional level. Within the ileR promoter region lie two 18-base pair segments of DNA bearing significant homology to putative operator targets also found within the thr and ilv promoters. A second open reading frame capable of specifying a protein of 83 amino acids, designated orf83, is transcribed divergently from the ileR gene. There are 202 base pairs separating the first codons of the two genes. S1 nuclease mapping of the 5' terminus of orf83 mRNA revealed two discrete species whose startpoints differed by approximately 27 nucleotides. The upstream promoters for ileR and orf83 overlap in their -35 regions.

Amino Acid Sequence↗

Mutations that convert the four leucine codons of the Salmonella typhimurium leu leader to four threonine codons.

In Salmonella typhimurium, expression of the leucine operon is regulated by a transcription attenuation mechanism. According to a current model of attenuation, elevated expression of this operon requires that a ribosome stall at one of four adjacent codons for leucine on a leader RNA. We used oligonucleotide-directed mutagenesis to convert the four leucine codons of the S. typhimurium leu leader to four threonine codons. Analysis of the resulting mutant operon showed that almost all regulation by leucine had been abolished. The mutant operon was, instead, partially derepressed by a limitation for charged threonine tRNA. These results provide direct evidence for the function for the four leucine codons postulated by the attenuator model. An unexpected observation made during these studies was that the wild-type leu operon was partially derepressed by starvation for threonine.

Codon↗