PubMed HealthSearch

Biomedical subjects

A Perl

Publications and source records attributed to A Perl.

14 recordsLinked to original sources

Human T-cell leukemia virus type I or a related retrovirus in patients with mycosis fungoides/Sézary syndrome and Kaposi's sarcoma.

Antibodies reactive with human T-cell leukemia virus type I (HTLV-I) proteins p19, p24, gp46, p56, and gp68 were detected in four of 27 patients with mycosis fungoides/Sézary syndrome (MF/SS) and one patient with Kaposi's sarcoma using radioimmunoprecipitation and Western blot analysis. Seroreactivity patterns to HTLV-I proteins of MF/SS sera were indeterminate or limited in comparison with sera of patients with adult T-cell leukemia/lymphoma. HTLV-I gag- and tax/rex-specific DNA was demonstrated in peripheral blood from three of the MF/SS patients and from the patient with Kaposi's sarcoma by the polymerase chain reaction. HTLV-I-specific DNA sequences were not detected in a cohort of seven seronegative MF/SS patients. The frequency of HTLV-I infection was four of 27 or 14.8% among the MF/SS patients, which is several hundredfold higher than in normal blood donors. The present data suggest a possible association of HTLV-I or a related retrovirus with mycosis fungoides/Sézary syndrome and Kaposi's sarcoma.

Adult

Human T-cell lymphotropic virus (HTLV)-related endogenous sequence, HRES-1, encodes a 28-kDa protein: a possible autoantigen for HTLV-I gag-reactive autoantibodies.

The presence of a human T-cell lymphotropic virus (HTLV)-related endogenous sequence, HRES-1, in the human genome has been documented. The HRES-1 genomic locus is transcriptionally active and contains open reading frames. Antibodies 232 and 233, specific for synthetic peptides pep14-24 and pep117-127, corresponding to two nonoverlapping HTLV-related regions in the longer open reading frame of HRES-1, recognize an identical 28-kDa protein in H9 human T cells. Thus, HRES-1 is a human endogenous retroviral sequence capable of protein expression. HRES-1/p28 is localized to the cytoplasm and nuclear bodies. While HTLV-I-specific antibodies react with HRES-1 peptides, antibody 233 cross-reacts with HTLV-I gag p24 protein. Three consecutive highly charged amino acid residues, Arg-Arg-Glu, present in both HRES-1 pep117-127 and HTLV-I gag p24 are likely to be the core of cross-reactive epitopes. The prevalence of antibodies to HRES-1 peptides pep14-24 and pep117-127 was determined in 65 normal blood donors and 146 patients with immunological disorders. Sera of patients with multiple sclerosis (19 out of 65, 29%), progressive systemic sclerosis (4 out of 17, 23%), systemic lupus erythematosus (4 out of 19, 21%), and Sjogren syndrome (2 out of 19, 10%) contained significantly higher HRES-1 peptide binding activity than sera of normal donors. Sera of patients with AIDS showed no specific binding to HRES-1 peptides. Nine of 30 HRES-1-seropositive patients showed immunoreactivity to HTLV-I gag p24. The data indicate that HRES-1/p28 may serve as an autoantigen eliciting autoantibodies cross-reactive with HTLV-I gag antigens.

Amino Acid Sequence

Regulation of lysine synthesis in transgenic potato plants expressing a bacterial dihydrodipicolinate synthase in their chloroplasts.

The essential amino acid lysine is synthesized in higher plants by a complex pathway that is predominantly regulated by feedback inhibition of two enzymes, namely aspartate kinase (AK) and dihydrodipicolinate synthase (DHPS). Although DHPS is thought to play a major role in this regulation, the relative importance of AK is not known. In order to study this regulation, we have expressed in the chloroplasts of transgenic potato plants a DHPS derived from Escherichia coli at a level 50-fold above the endogenous DHPS. The bacterial enzyme is much less sensitive to lysine inhibition than its potato counterpart. DHPS activity in leaves, roots and tubers of the transgenic plants was considerably higher and more resistant to lysine inhibition than in control untransformed plants. Furthermore, this activity was accompanied by a significant increase in level of free lysine in all three tissues. Yet, the extent of lysine overproduction in potato leaves was significantly lower than that previously reported in leaves of transgenic plants expressing the same bacterial enzyme, suggesting that in potato, AK may also play a major regulatory role in lysine biosynthesis. Indeed, the elevated level of free lysine in the transgenic potato plants was shown to inhibit the lysine-sensitive AK activity in vivo. Our results support previous reports showing that DHPS is the major rate-limiting enzyme for lysine synthesis in higher plants, but they suggest that additional plant-specific regulatory factors are also involved.

Aspartate Kinase

Improvement of plant regeneration and GUS expression in scutellar wheat calli by optimization of culture conditions and DNA-microprojectile delivery procedures.

Genetic transformation of cereals by direct DNA delivery via microprojectile bombardment has become an established procedure in recent years. But the derivation of functional transgenic plants, especially in wheat, is still problematic, mainly due to low efficiency of DNA delivery and the reduced regeneration capability of microprojectile-bombarded tissue. We focussed on these two aspects and found that the regeneration of scutellar calli of wheat can be rendered highly efficient and considerably accelerated by a liquid culture phase in screen rafts. We also found that the expression of a reporter gene following DNA delivery by microprojectile can be improved by maintaining the scutellar calli in 0.25 M mannitol before and after bombardment, by bombardment in the presence of silver thiosulfate and Ca(NO3)2 (rather than CaCl2) and by the elimination of spermidine from the DNA/microprojectile mixture. A protocol that includes all these features leads to several-fold higher transient expression of the reporter gene than have previously published procedures.

Calcium

Heterogeneous expression and coordinate regulation of endogenous retroviral sequences in human peripheral blood mononuclear cells.

This study examines the expression of human endogenous retroviral or retroviral-like (ERV) sequences in peripheral blood mononuclear cells (PBMC). Probes to 12 human ERV were used in Northern analyses of 38 patients with autoimmune muscle diseases and 31 blood donor controls. All patients and controls expressed multiple classes of ERV RNA. This expression was quite heterogenous: for each of the nine ERV classes for which expression was detected, some individuals showed high RNA levels whereas others showed low levels. ERV expression was independent of disease and autoantibody production. Statistical analysis of densitometric data indicated that expression of several classes of ERV was coordinately regulated. ERV expression in individual patients showed coordinate fluctuations with time. These studies demonstrate the heterogeneity and coordinate regulation of human ERV expression. To evaluate whether ERV expression might be affected by lymphocyte activation, PBMC were cultured with or without lymphocyte mitogens before RNA extraction. These studies demonstrated complex changes in ERV expression after lymphocyte activation. Murine ERV have several immunoregulatory activities. If human ERV have analogous effects, their heterogeneous expression and association with lymphocyte activation may have important biologic consequences.

Autoimmune Diseases

Endogenous retroviruses: potential etiologic agents in autoimmunity.

The genomes of all organisms, from yeast to humans, contain thousands of endogenous retroviruses (ERV). In most species all or almost all ERV are noninfectious, but some ERV retain open reading frames capable of encoding proteins. RNA and proteins derived from ERV are expressed in humans and other species. Until recently, there was little evidence that this ERV expression resulted in any immunologic effects. Recent studies make it increasingly clear that some ERV have important immunologic effects. The immune effects of ERV expression raise the question of a possible pathogenic role in idiopathic autoimmune diseases. Interest in this question has been heightened by the observation that some infectious retroviruses cause manifestations of autoimmunity. Nonetheless, attempts to isolate infectious retroviruses from patients with idiopathic autoimmune diseases have generally failed. The possible role of ERV in idiopathic autoimmune diseases has not yet been fully explored. This review focuses on the known and the potential immune effects of ERV, especially as they may relate to autoimmune diseases.

Animals

Antibodies to retroviral proteins and reverse transcriptase activity in patients with essential cryoglobulinemia.

Human T cell lymphotropic virus type I (HTLV-I) gag and env protein-specific antibodies were identified in 6 of 13 patients with essential cryoglobulinemia (EC), by Western blot and radioimmunoprecipitation analysis. Supernatants of cells from 2 of the 5 EC patients tested showed reverse transcriptase activity. DNA sequences homologous to HTLV-I could not be detected by polymerase chain reaction, thus excluding the presence of prototype HTLV-I in each patient with EC. The data suggest that retroviral proteins distinct from but related to HTLV-I may be involved in the pathogenesis of EC in some patients.

Adult

Nuclear-organelle interaction in Solanum: interspecific cybridizations and their correlation with a plastome dendrogram.

Alloplasmic compatibility, namely the functional interaction between the nuclear genome of a given species with plastomes and chondriomes of alien species, is of considerable relevance in plant biology. The genus Solanum encompasses a wide spectrum of species and is therefore suitable for a study of this compatibility. We thus chose the nuclear genome of Solanum tuberosum (potato) and organelles (chloroplast and mitochondria) from 14 other Solanum species to initiate an investigation of intrageneric nucleus/organelle interactions. An assessment of the diversity of the chloroplast DNAs from these 15 species resulted in the construction of a plastome dendrogram (phylogenetic tree). In parallel we extended a previous study and performed ten additional fusion combinations by the "donor-recipient protoplast fusion" procedure, using potato protoplasts as recipients and protoplasts from any of ten other Solanum species as donors. We found that two fusion combinations did not yield cybrids and that the chloroplasts of S. polyadenium and the mitochondria (or mitochondrial components) from S. tarijense could not be transferred to cybrids bearing potato nuclei. In general, there is a correlation, albeit not perfect, between the cybridization data and the plastome dendrogram. These results furnish valuable information toward future transfer of plasmone-encoded breeding traits from wild Solanum species into potato. This information should also be useful for the planning of asymmetric protoplast fusion between potato and wild accessions for the improvement of pathogen and stress resistance of potato cultivars.

Blotting, Southern

[Ketamine].

Explore the source record for details and available documents.

Ketamine