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Biomedical subjects

M Zweig

Publications and source records attributed to M Zweig.

At least 19 recordsLinked to original sources

Adsorption to aluminum hydroxide promotes the activity of IL-12 as an adjuvant for antibody as well as type 1 cytokine responses to HIV-1 gp120.

A series of protocols were tested to examine the adjuvant effects of IL-12 on humoral and type 1 cytokine responses elicited in mice by recombinant gp120 envelope protein from HIV-1. This Ag fails to induce detectable Ab responses when administered s.c. alone, but stimulates low Ab levels when combined with aluminum hydroxide (alum). Moreover, when i.p. injected rIL-12 was included in the immunization, no increase in Ab production was observed. Importantly, optimal gp120 Ab responses were achieved by immunizing mice s.c. with gp120 and rIL-12 simultaneously coadsorbed to alum. These animals displayed a highly polarized, type 1 cytokine profile, with the emergence of anti-gp120 Ig belonging to the IgG2 and IgG3 isotypes. In addition, a major increase occurred in Ab of the IgG1 subclass. The superior adjuvant activity of alum-adsorbed IL-12 compared with that of the free cytokine correlated with the prolonged detection of IFN-gamma in the sera of animals immunized using the former procedure. In related experiments, in vitro neutralization of IL-12 was shown to inhibit IFN-gamma production by spleen cells from mice immunized with gp120 plus alum, but not by splenocytes from mice primed in the presence of IL-12, suggesting that the latter protocol induces a stable type 1 phenotype. These studies demonstrate that presentation of IL-12 on alum enhances its immunomodulatory effects and establish a protocol for the use of the cytokine as an adjuvant for simultaneously promoting both humoral Ab and type 1 cytokine responses.

AIDS Vaccines↗

Purification of an Escherichia coli-expressed Nef protein from the human immunodeficiency virus-type 2.

The entire nef gene sequence of HIV-2, NIH-Z strain, has been cloned into the pJL6 expression vector and used for the synthesis of a 23-kDa protein in E. coli. The expressed protein is a fusion between the N-terminal 13 amino acids of the cII gene, 8 amino acids resulting from the ligation procedure, and the 180 amino acids that comprise the HIV-2 Nef sequence from the NIH-Z strain. The bacterially expressed Nef protein has been purified to apparent homogeneity on analytical scale (10-20 micrograms) by a combination of sequential detergent extraction, gel filtration, and reversed-phase high-performance chromatography. The expressed Nef protein is highly susceptible to proteolysis (chymotryptic-like activity) and this property accounts for the low yield obtained by gel filtration and RP-HPLC. Larger amounts (> 100 micrograms) of the purified Nef protein have been produced by a purification procedure that employs sequential detergent extraction, chromatography on Q-Sepharose in the presence of 7 M urea, and chromatography on hydroxylapatite, also in 7 M urea. The purified HIV-2 Nef protein has been used for the production of polyclonal and monoclonal antibodies. The milder method of purification should facilitate structure-function studies of the Nef protein and its role in the life cycle of HIV.

Amino Acid Sequence↗

Priming with T helper cell epitope peptides enhances the antibody response to the envelope glycoprotein of HIV-1 in primates.

The induction of a memory immune response to HIV, mediated by any kind of effector mechanism, requires the induction of T cell help. In previous studies performed in different murine MHC haplotypes, three immunodominant T cell epitopes (T1, T2, and TH4.1) had been identified in the HIV envelope glycoprotein. Moreover, these peptides were proliferative T cell epitopes in humans. In this study, rhesus monkeys, Macaca mulatta, were primed with these three peptides either in combination or given separately. Half of the monkeys had a proliferative response to one or more of the priming peptide(s). Those monkeys who had a T cell proliferative response also had a high antibody response after one boost with a suboptimal dose of the native protein gp 160, whereas three of four control monkeys who had received only the native protein immunization gave no detectable antibody response, and one displayed a very weak response. For reasons that are unclear, antibodies only to the gp41 portion of gp 160 could be detected in the sera. Thus, the peptides can prime Th cells in primates for an enhanced antibody response on first exposure to the whole protein. The three peptides belong to highly conserved and nonglycosylated regions of the envelope protein. The fact that the peptides acted as immunogenic T cell proliferative and helper epitopes in nonhuman primates is very encouraging for including them in future vaccine studies in humans.

Amino Acid Sequence↗

Heterogeneity of Nef proteins in cells infected with human immunodeficiency virus type 1.

Human T-lymphocytic cell line H9 infected with the HTLV-IIIB isolate of human immunodeficiency virus type 1 (HIV-1) synthesizes two forms of the Nef protein (p25 and p27) that differ both in molecular weight and charge. Different subpopulations of viruses were isolated from the HTLV-IIIB stock which induce expression of only p25 or p27. Cells infected with HIV-1 derived from the HXB3 clone of the HTLV-IIIB isolate made only the p25 species, whereas the 8E5/LAV cell line which harbors a single defective LAV provirus produces only the p27 species. These findings are consistent with the notion that the HTLV-IIIB isolate consists of at least two distinct variants with different nef genes, one specifying p25 and the other encoding p27. After a considerable number of passages in culture, H9 cells chronically infected with the HTLV-IIIB isolate produced high levels of p25 and lower levels of p27. Passages in culture appear to select for a subpopulation of virus variants that specify high levels of p25 Nef expression.

Cell Line↗

Expression of HIV-1 integrase in E. coli: immunological analysis of the recombinant protein.

Sequences encoding the human immunodeficiency virus type 1 (HIV-1) integrase gene have been cloned and expressed in Escherichia coli. The expressed protein is a lambda cII fusion protein of 37 kD containing the carboxyl-terminal 23 [corrected] amino acids of reverse transcriptase fused to the entire integrase sequence and is insoluble, a feature which allows partial purification away from soluble bacterial proteins. As judged by its reactivity with HIV positive sera in Western blot and in enzyme-linked immunosorbent assay (ELISA), the recombinant integrase retains antigenicity similar to native protein. Additionally, ELISA data obtained with the cloned protein indicate that patients infected with HIV-1 who are at different stages of progression to AIDS have antibodies reactive with the cloned integrase. HIV-2 positive human sera are also reactive with the cloned integrase. Rabbit antibodies produced against the recombinant protein react both by ELISA and Western blot with the homologous bacterially expressed protein, recognize both virion HIV-1 integrase and reverse transcriptase in Western blots, and immunoprecipitate an HIV-1 virion protein of 34 kD. Unlike human antisera from patients infected with HIV-1 or HIV-2 which are frequently reactive with both HIV-1 and HIV-2 integrase, the rabbit antibodies are type specific, reacting with HIV-1, but not with HIV-2 integrase by Western blot.

Acquired Immunodeficiency Syndrome↗

Effect of placental factors on growth and function of the human fetal adrenal in vitro.

Conditioned medium from human placental monolayer cultures (PM) had a marked stimulatory effect on proliferation (3H-thymidine uptake) of human fetal zone adrenal cells in primary monolayer culture, even in the absence of serum. Epidermal growth factor (EGF) and fibroblast growth factor (FGF) also significantly stimulated fetal adrenal cell growth. However, the effects of PM differed from those of EGF and FGF in several respects: 1) maximal response to PM was 2-5 times greater; 2) mitogenic effects of EGF and FGF were suppressed by adrenocorticotropic hormone (ACTH), whereas that of 50% PM was not; 3) PM inhibited ACTH-stimulated steroidogenesis (dehydroepiandrosterone sulfate and cortisol), but EGF and FGF did not. Preliminary characterization studies have indicated that approximately half of the placental growth-promoting activity is heat resistant and sensitive to bacterial proteases, and that 50-60% of the activity is lost after dialysis with membranes having a molecular weight cutoff of 3500. These findings suggest a role for the placenta in the growth and differentiated function of the human fetal adrenal gland.

Adrenal Cortex↗

Evaluation of a radioimmunoassay of urinary cortisol without extraction.

We evaluated the Kallestad "Quanticoat" cortisol RIA for direct (no extraction) measurement of urinary free cortisol, which requires no solvent extraction. An analytical-recovery study showed a linear regression of y (measured) = 0.65x (added) + 37.5 micrograms/L (Sy.x = 21.4 micrograms/L, r = 0.978, n = 48). Recovery appeared to vary with the urine used and with the concentrations of cortisol added. Within- and between-run CVs were less than or equal to 4.1% and less than or equal to 3.8%, respectively. Cross reactivities were low, except for prednisolone (20.5%). This no-extraction method gave higher values for urinary free cortisol than did either an RIA method involving extraction or an HPLC method. A comparison study with the HPLC (x) and with the method involving extraction (x') gave the following Deming-debiased regression equations: y = 1.60x + 68.8 (Sy.x = 34.4, n = 29) and y = 1.33x' + 0.69 (Sy.x = 40.3, n = 66), respectively. We conclude that the no-extraction method may give misleading results for patients' diagnosis or management if this cross reactivity is not taken into account.

Chromatography, High Pressure Liquid↗

Bacterial expression and characterization of nine polypeptides encoded by segments of the envelope gene of human immunodeficiency virus.

Nine envelope (Env) polypeptides, encoding different regions of HIV gp120 and gp41 Env proteins, and accounting for approx. 96% of the entire Env precursor glycoprotein complex (gp160) were expressed in Escherichia coli at levels ranging from approx. 2 to 20% of total cellular protein. The recombinant polypeptides were produced either as hybrid products fused to the cII gene fragment of the lambda vector or in an unfused form without interfering cII products. Partially purified protein fractions of each polypeptide were characterized serologically by Western-blot analysis against a panel of well characterized human immunodeficiency virus (HIV)-positive human reference sera. Most of the Env polypeptides were highly immunoreactive with anti-gp120/gp41 antibodies present in the sera of patients with acquired immunodeficiency syndrome (AIDS) and AIDS-related diseases, but the patterns of reactivity were different. These results demonstrate that some of the antigenic determinants residing on the viral gp160 complex are retained on the surfaces of the recombinant Env polypeptides, and suggest that these sites are differentially immunogenic. These results are therefore interpreted in the context of an ongoing process towards using bacterially expressed HIV Env polypeptides to help define biological and structural epitopes to aid in the development of more sensitive diagnostic and therapeutic reagents in the fight against AIDS.

Cloning, Molecular↗

Expression and purification of protein segments encoded by the envelope and 3'-orf genes of human immunodeficiency virus type 1.

The pJL6 expression vector and its derivatives, pJLA16 and pANH-1, have been used for the synthesis and high-level expression in Escherichia coli of restriction enzyme fragments derived from the envelope and 3'-orf genes of the BH10 and BH8 clones, respectively, of the human immunodeficiency virus (HIV-1). These bacterially expressed proteins have been purified to apparent homogeneity by sequential detergent extraction, gel filtration, and reverse-phase high-performance liquid chromatography. The recombinant proteins have been used for the production of polyclonal and monoclonal antibodies, and the fusion proteins from the envelope gene are currently being evaluated for use as immunodiagnostic assay reagants.

Cloning, Molecular↗

Comparative analysis of gp41 antigens by enzyme-linked immunosorbent assays for detecting antibodies to human immunodeficiency virus type 1.

We have compared the antigenic qualities of human immunodeficiency virus type 1 (HIV-1) gp41 glycoprotein with a synthetic oligopeptide (peptide R21S) and a bacterially synthesized protein (protein 566), which are homologous with the N-terminal region of gp41, in enzyme-linked immunosorbent assays (ELISA) for detecting antibodies to HIV-1 in sera of patients with the acquired immunodeficiency syndrome (AIDS) or the aids-related complex (ARC). Although the use of all three types of antigens readily allowed the detection of antibodies in human sera, ELISA employing purified gp41 glycoprotein and the protein 566 were more specific and sensitive than the peptide R21S ELISA.

AIDS-Related Complex↗

Partial purification of native HIV transmembrane protein gp41: generation of polyclonal and monoclonal antibodies.

We partially purified the human immunodeficiency virus (HIV) glycoprotein gp41 from infected H9 cells by immunoaffinity chromatography using a column containing the M25 monoclonal antibody (diMarzo-Veronese et al., 1985). A pH 11.5 buffer worked best for eluting the glycoprotein from this column. The eluted gp41 was used in a sensitive slot blot immunoassay to detect antibodies to HIV in human sera and to prepare rabbit polyclonal antibodies and the 41-1S mouse monoclonal antibody. These antibodies reacted with gp41 in immunoprecipitation and in Western blot assays, but did not neutralize HIV in a syncytium-forming microassay. A pH 2.5 buffer was found to be the most effective solution for eluting gp41 from a 41-1S monoclonal antibody column.

Antibodies, Monoclonal↗

Functional organization of the murine leukemia virus reverse transcriptase: characterization of a bacterially expressed AKR DNA polymerase deficient in RNase H activity.

The functional organization of the murine leukemia virus reverse transcriptase was investigated by expressing a molecular clone containing AKR MuLV reverse transcriptase-coding sequences in Escherichia coli. A purified preparation of the expressed enzyme (pRT250 reverse transcriptase) consisted primarily of a 69-kilodalton protein that has normal levels of murine leukemia virus polymerase activity but 10-fold-reduced levels of RNase H compared with the viral enzyme. The deficit in RNase H activity was correlated with the absence of 60 to 65 amino acids normally present at the carboxyl end of murine leukemia virus reverse transcriptase. The results provide additional experimental evidence for the localization of polymerase and RNase H domains to the N- and C-terminal regions of reverse transcriptase, respectively.

AKR murine leukemia virus↗

Characterization and localization of the products of the human homologs of the v-ets oncogene.

The avian erythroblastosis virus, E26, an acute leukemia virus, contains a transforming gene composed of two cellular components, v-myb and v-ets. The v-ets related sequences of man and other mammals consist of two transcriptionally active genes, ets-1 and ets-2, located on separate chromosomes. By contrast, both of these genes are contiguous in birds, are located on the same chromosome, and are coordinately transcribed. The human ets-1 and ets-2 gene products were identified by means of antibodies directed against the ets-1 and ets-2 encoded products. A 51 kD protein has been identified as the ets-1 gene product, and a 56 kD protein as the ets-2 gene product. Cellular fractionation studies indicated that the ets-1 protein is located in the cytoplasm and the ets-2 protein is nuclear. By comparison, the chicken ets protein, which contains both the ets-1 and ets-2 domains, distributes equally between the cytoplasm and nucleus. The differential compartmentalization of the ets gene products and their non-coordinate expression suggest that these proteins have different biological functions.

Cell Compartmentation↗

Detection of heterologous fusion proteins in Escherichia coli with a monoclonal antibody.

Several laboratories have constructed expression vectors for the production of heterologous fusion proteins containing the N-terminal 13 amino acids of the bacteriophage lambda cII-coded protein in Escherichia coli. We have prepared a monoclonal antibody to a synthetic peptide having this CII amino acid sequence and have found that this antibody reacts with authentic CII protein in Western blot tests and with most CII peptide-containing fusion proteins in both radioimmunoprecipitation and Western blot assays. However, there are some CII-hybrid protein species with which the antibody does not react. Our findings indicate that this antibody is a valuable tool for detecting and purifying expressed proteins and in studying their structure and function.

Animals↗

Expression in E. coli of erg: a novel gene in humans related to the ets oncogene.

We have recently cloned a novel human gene named erg related to the ets oncogene. In this report we describe the expression of the erg gene product in E. coli under the control of the tightly-regulated phage lambda PL promoter. Two expression vectors were utilized for the synthesis of the cII-erg and erg-fusion proteins. All these products were recognized by peptide antibodies prepared against the predicted amino acid sequences of erg and the Hu-ets-2 domain which shares homology with erg.

Amino Acid Sequence↗

Analysis of the transforming potential of the human homolog of mos.

The human homolog, c-moshu, of the mouse cellular mos proto-oncogene (c-mosmu) transforms NIH 3T3 cells at low efficiency. Furthermore, the c-moshu-induced foci are less distinct, and transformed cells contain a high level of human mos protein. The transforming activity of hybrid mos genes derived from human and mouse sequences reveals three domains within the coding region, as well as a negative regulatory sequence upstream from the c-moshu ORF that reduces its transforming efficiency. The mos C-terminal region, however, which contains the src-kinase homology domain, appears to have the greatest influence on transforming efficiency. The low transforming efficiency of c-moshu may provide a selective advantage to the host, but it also may indicate a reduced or modified function of mos in humans.

Animals↗

Murine leukemia virus pol gene products: analysis with antisera generated against reverse transcriptase and endonuclease fusion proteins expressed in Escherichia coli.

The organization of the murine leukemia virus (MuLV) pol gene was investigated by expressing molecular clones containing AKR MuLV reverse transcriptase or endonuclease or both gene segments in Escherichia coli and generating specific antisera against the expressed bacterial proteins. Reaction of these antisera with detergent-disrupted virus precipitated an 80-kilodalton (kDa) protein, the MuLV reverse transcriptase, and a 46-kDa protein which we believe is the viral endonuclease. A third (50-kDa) protein, related to reverse transcriptase, was also precipitated. Bacterial extracts of clones expressing reverse transcriptase and endonuclease sequences competed with the viral 80- and 46-kDa proteins, respectively. These results demonstrate that the antisera are specific for viral reverse transcriptase and endonuclease. Immunoprecipitation of AKR MuLV with antisera prepared against a bacterial protein containing only endonuclease sequences led to the observation that reverse transcriptase and endonuclease can be associated as a complex involving a disulfide bond(s).

AKR murine leukemia virus↗