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Biomedical subjects

S E Zweig

Publications and source records attributed to S E Zweig.

12 recordsLinked to original sources

Analysis of large nucleic acid dot matrices on small computers.

A UCSD Pascal program was developed which can analyze nucleic acid dot matrices of up to 9500 X 9500 in size on the Apple II computer. Although matrices of such size consume large amounts of computer memory, this program minimizes these problems by analyzing only small strips of the matrix at a time, and then transferring the results to a floppy disk or printer. Compression and memory efficient code further enhance the size of the matrix that can be analyzed. By generating an image of the dot matrix using software, and sending this image directly to an Epson dot matrix printer, a very detailed print out may be produced. The program has a number of user selectable options which allow a great deal of control over the analysis. The program contains no computer dependent code, and thus should work on all systems that can run UCSD Pascal.

Base Sequence

Monoclonal antibodies directed against human Ia antigens detect an evolutionary conserved epitope on guinea pig Ia antigens with unique functional properties.

Three murine monoclonal antihuman Ia antibodies were found to cross react with guinea pig Ia antigens. Sequential immunoprecipitation studies demonstrated that these antibodies recognized a subset of guinea pig Ia antigens. In competition binding studies, the antihuman Ia antibodies competed with each other, but not with a number of murine monoclonals raised directly to guinea pig Ia antigens. When the antihuman Ia monoclonals were tested for their ability to inhibit the proliferative response of primed guinea pig T cells to antigen-pulsed macrophages, they completely inhibited the response of strain 2 T cells to the complex antigen ovalbumin while having no effect on the response to the copolymer L-glutamic acid, L-lysine. In contrast, the monoclonals raised against guinea pig Ia had much less dramatic effects on the response of uncloned T cells to these antigens. These results suggest that the cross-reactive monoclonals may recognize an evolutionary conserved epitope on Ia that has a regulatory function in T-cell activation.

Animals

Production and characterization of monoclonal antibodies to guinea pig lymphoid differentiation antigens.

We have prepared 2 mouse monoclonal antibodies which react with differentiation antigens on guinea pig lymphoid cells. Monoclone 5AB2 recognizes an antigen expressed on both T and B lymphocytes and absent on macrophages. It has proven useful in the preparation of populations of antigen presenting cells which are free of T and B lymphocytes. The second monoclonal, 8BE6, is specific for peripheral T cells and 10% of thymocytes. It reacts with a 68,000 dalton molecule which is also expressed on the guinea pig B cell leukemia, EN-L2C. 8BE6 has proven to be lytic for peripheral T cells in the presence of rabbit complement and has been used to deplete T cells from heterogenous cell populations.

Animals

Production and properties of monoclonal antibodies to guinea pig Ia antigens.

Although the use of monoclonal antibodies to characterize the Ia antigen system is still in its infancy, the usefulness of this approach is clearly apparent. Since xenogeneic immunization can be used to generate these antibodies, the chances are good that a greater variety of Ia types and determinants will be detected compared to those detected with conventional alloantisera. In addition, the advantages of unlimited quantity and constant specificity allow a much greater degree of standardization than was previously possible. Finally, monoclonal antibodies open up lines of investigation, such as the examination of correlations between the monoclonal antibody's inhibition of T-cell proliferation and the antibody's corresponding Ia epitope-binding characteristics, that it would be impossible to approach using conventional alloantisera.

Animals

Cytomegalovirus-specific cell-mediated immunity during pregnancy in lower socioeconomic class adolescents.

The role of maternal cytomegalovirus (CMV)-specific cellular immunity in gestational CMV excretion and transmission of congenital infection was assessed by studying CMV-specific mononuclear proliferation (CMV-MP) longitudinally during pregnancy in 59 lower socioeconomic class adolescents. CMV-MP was absent in mothers seropositive for CMV on more than 40% of occasions tested, but no significant difference was noted at any time in frequency or degree of CMP-MP between the 16 mothers who shed virus and the 29 who were seropositive for CMV but did not shed virus. The presence of CMV-MP did not preclude gestational CMV excretion. The lone mother who bore a congenitally infected infant lacked CMV-MP on all three occasions when she shed virus. CMV-MP was noted in cord blood from 14 uninfected infants of seropositive mothers. Maternal CMV-specific cellular immunity is not the major determinant of gestational CMV excretion, but the extent of its role in modulating transmission of congenital infection is yet unclear.

Adolescent

Cytomegalovirus-specific cell-mediated immunity in lower-socioeconomic-class adolescent women with local cytomegalovirus infections.

The factors that regulate cytomegalovirus (CMV) excretion from the genitourinary tract are poorly understood. To assess the role of cell-mediated immunity in such excretion, a CMV-specific mononuclear blastogenesis assay was used to study a predominantly lower-socioeconomic-status population of 92 healthy nonpregnant adolescent women who also had CMV complement-fixing antibody titers and viral cultures of cervix, urine, saliva, and blood performed. Eighteen were studied more than once. No blood cultures were positive and no seroconversions were noted. There was no significant difference for frequency or degree of systemic CMV-specific blastogenesis between the 20 who were culture positive and the 41 who were seropositive but culture negative, although 40% of the culture-positive group and 27% of the seropositive, culture-negative group lacked CMV-specific blastogenesis. One of 31 seronegative subjects displayed CMV-specific blastogenesis. No systematic deficits were noted in any groups or individuals for E rosette number or mitogen response, though some isolated significant differences among groups for mitogen responses existed. Local CMV excretion in the study population was not related to systemic CMV-specific mononuclear blastogenesis.

Adolescent

The muscle specificity and structure of two closely related fast-twitch white muscle myosin heavy chain isozymes.

The structures of the heavy chains of fast-twitch white muscle myosin isolated from a number of specific rabbit muscles were examined by the technique of tryptic peptide mapping of iodinated proteins from sodium dodecyl sulfate polyacrylamide gels. The results suggest that the distribution of the two closely related heavy chain isozymes postulated to exist by Starr and Offer ((1973) J. Mol. Biol. 81, 17-31) vary in a muscle-specific manner. One isozyme appears to be preferentially located in the extensor digitorum longus muscle, while the other appears to be preferentially located in the semitendinosus muscle. Other muscles, such as the gastrocnemius and the latissimus dorsi, appear to contain the two isozymes in a nearly 1:1 ratio. Fine structure mapping of myosin fragments revealed that the two muscle-specific isozymes differ in a number of locations throughout the head and tail portions of the myosin heavy chain.

Animals

Member-associated changes during erythropoiesis. On the mechanism of maturation of reticulocytes to erythrocytes.

The mature mammalian erythrocyte has a unique membranoskeleton, the spectrin-actin complex, which is responsible for many of the unusual membrane properties of the erythrocyte. Previous studies have shown that in successive stages of differentiation of the erythropoietic series leading to the mature erythrocyte there is a progressive increase in the density of spectrin associated with the membranes of these cells. An important stage of this progression occurs during the enucleation of the late erythroblast to produce the incipient reticulocyte, when all of the spectrin of the former cell is sequestered to the membrane of the reticulocyte. The reticulocyte itself, however, does not exhibit a fully formed membranoskeleton. In particular, the in vitro binding of multivalent ligands to specific membrane receptors on the reticulocyte was shown to cause a clustering of some fractions of these ligand-receptor complexes into special mobile domains on the cell surface. These domains of clustered ligand-receptor complexes became invaginated and endocytosed as small vesicles. By immunoelectron microscopic experiments, these invaginations and endocytosed vesicles were found to be specifically free of spectrin on their cytoplasmic surfaces. These earlier findings then raised the possibility that the maturation of reticulocytes to mature erythrocytes in vivo might involve a progressive loss of reticulocyte membrane free of spectrin, thereby producing a still more concentrated spectrin-actin membranoskeleton in the erythrocyte than in the reticulocyte. This proposal is tested experimentally in this paper. In vivo reticulocytes were observed in ultrathin frozen sections of spleens from rabbits rendered anemic by phenylhydrazine treatment. These sections were indirectly immunolabeled with ferritin-antibody reagents directed to rabbit spectrin. Most reticulocytes in a section had one or more surface invaginations and one or more intracellular vesicles that were devoid of spectrin labeling. The erythrocytes in the same sections did not exhibit these features, and their membranes were everywhere uniformly labeled for spectrin. Spectrin-free surface invaginations and intracellular vesicle were also observed with reticulocytes within normal rabbit spleens. Based on these results, a scheme for membrane remodeling during reticulocyte maturation in vivo is proposed.

Actins

Two lactose binding lectins from chicken tissues. Purified lectin from intestine is different from those in liver and muscle.

Endogenous lactose-binding proteins from adult chicken liver and intestine have been purified to homogeneity by affinity chromatography on asialofetuinderivatized Sepharose, followed by isoelectric focusing. Since these carbohydrate-binding proteins are assayed as hemagglutinins, they are referred to by the operational term lectins. Although the hemagglutination activity of these lectins is inhibited by similar concentrations of inhibitory saccharides, they are not the same. They differ in specific hemagglutination activity, subunit molecular weight, and isoelectric point. They have very different peptide maps and show no detectable immunological cross-reactivity. Based on gel filtration studies, the liver lectin behaves as a dimer with apparent Mr = 31,000 +/- 1100, whereas the intestinal lectin behaves as a monomer with apparent Mr = 14,000 +/- 1700. Although clearly different from the intestinal lectin, the lectin from adult liver appears identical with the lectin previously purified from embryonic skeletal muscle.

Animals

Membrane-based, dry-reagent prothrombin time tests.

The authors describe a prototype membrane-based, dry-reagent prothrombin time assay for whole blood. This system uses an asymmetric polysulfone membrane to separate plasma from red blood cells, and works with samples as small as 10 microliters. The membrane contains calcium and thromboplastin, and permits the reactions of the complete extrinsic pathway to occur with minimal distortion from membrane surface interactions. Thrombin generation is monitored optically using a rhodamine-110-based fluorescent thrombin substrate. Fluorescence kinetics are analyzed to produce a prothrombin-time--equivalent parameter that can be converted to an international normalized ratio (INR) value. The system provides results that correlate well with conventional liquid phase prothrombin time assays (R2 = 0.96).

Anticoagulants