PubMed Health⌕ Search

Biomedical subjects

H Grosfeld

Publications and source records attributed to H Grosfeld.

At least 37 records · Page 2Linked to original sources

Semliki Forest virus E2 envelope epitopes induce a nonneutralizing humoral response which protects mice against lethal challenge.

Along the 422 amino acids of the Semliki Forest virus (SFV) E2 envelope glycoprotein, we identified 13 peptide cassettes (ranging in size from 15 to 25 amino acids and designated A through N) that contain hydrophilic sequences flanked by amino acid sequences conserved in the E2 envelopes of the alphavirus family. Six peptide blocks containing either a single cassette or two to three contiguous cassettes (A, BC, DE, FG, HIK, and LMN) were produced in Escherichia coli as recombinant proteins fused to the N terminus of beta-galactosidase. All of the SFV E2 recombinant polypeptides except A-beta-galactosidase were recognized on Western blots (immunoblots) by anti-SFV polyclonal antisera. In addition, these five recombinant proteins induced in mice antibodies that interacted specifically with SFV E2 protein on Western blots as well as with the intact virions in an enzyme-linked immunosorbent assay. The six hybrid proteins were used to vaccinate mice and were tested for the ability to confer resistance against lethal doses of SFV. Peptides BC and HIK, located at amino acid positions 114 to 149 and 216 to 288, respectively, of E2, protected partially (40 to 60%) against SFV challenge. A third peptide, LMN, located between amino acid positions 289 and 352, rendered mice totally resistant to an SFV challenge of 250 50% lethal doses. The partially protective effects of the BC and HIK cassettes and the high efficacy of the LMN cassette were consistently demonstrated, independent of the adjuvant (complete Freund or alum), immunization protocol, and strain of mice used. None of the antisera raised against any given cassette could neutralize the virus in an in vitro tissue culture assay or in a plaque reduction neutralization test. Nevertheless, passive transfer experiments demonstrated that in the case of LMN, the protective effect was mainly of a humoral nature.

Amino Acid Sequence↗

Specific residues within an amino-terminal domain of 35 residues of interferon alpha are responsible for recognition of the human interferon alpha cell receptor and for triggering biological effects.

Bovine interferon alpha C (IFN-alpha C) manifest at least 10(5)-fold lower antiviral activity on human cells than on bovine cells (Velan, B., Cohen, S., Grosfeld, H., Leitner, M., and Shafferman, A. (1985) J. Biol. Chem. 260, 5498-5504). By oligonucleotide site-directed mutagenesis within the coding region for the NH2-terminal 44-residue domain of BoIFN-alpha C, we replaced up to 18 residues by the corresponding HuIFN-alpha J1 residues. (HuIFN-alpha J1 is less than 60% homologous in sequence to BoIFN-alpha C.) The nine different bovine-human-IFN alpha hybrids obtained were compared to BoIFN-alpha C and HuIFN-alpha J1 with respect to their potential to induce an antiviral state, synthesis of 2-5A-synthetase, and their specific binding to human and bovine cells. Relative to BoIFN-alpha C, a gradual increase in biological activities (antiviral or 2-5A-synthetase) of approximately 10-, 10(2)-, 10(3)-, and approximately 10(4)-fold is obtained, depending on the number and positions of the residues substituted. A direct correlation exists between biological response and ability of IFN alpha to bind specifically to human cells. A BoIFN alpha molecule mutated in the 10-44 NH2-terminal domain was obtained which is 15, 8, and 35% as active as HuIFN-alpha J1 on human cells in specific binding, induction of antiviral, and 2-5A-synthetase activities, respectively. We concluded that at least 5 of the 12 residues at positions 10; 21, 22, 24; 27; 31, 34, 35, 37, 40; 42, 43 in the 10-44 NH2-terminal domain are critical for recognition of the human IFN-alpha cell receptor and for biological activity. These residues are found among 10 strictly conserved residues in all reported mammalian IFN alpha S, and they act in a cooperative manner to induce a biological response in human cells. The gap between the extent of improvement in binding capacity of the BoIFN alpha mutants on human cells and the corresponding biological response suggests that the primary signal of binding to the cell receptor is amplified within the cell. On bovine cells, HuIFN-alpha J1 and BoIFN-alpha C also compete for the same receptor, and it seems that at least part of the 10-44 NH2-terminal domain on IFN alpha is also involved in interaction with the bovine IFN alpha cell receptor.

2',5'-Oligoadenylate Synthetase↗

Bovine interferon alpha genes. Structure and expression.

The bovine genome contains a gene family of interferon-alpha s (bIFN-alpha) that consists of at least five distinct members. Four of the bIFN-alpha genes isolated show a high degree of homology (97% in the nucleotide sequence and 93% in amino acid sequence). The overall homology in amino acid sequence of bIFN-alpha to human, murine, and rat IFNs-alpha is approximately 60%. Yet there are amino acid clusters (positions 28-41 and 118-146) which are highly conserved throughout the mammalian evolution and in which the overall homology can be as high as 86%. Within the C terminus conserved cluster there is a sequence containing 9 amino acids completely conserved in 16 mammalian IFNs-alpha and of these, 7 are also shared with a similar domain in some bacterial toxins, implying a common functional role for these domains. One of the genes, IFN-alpha C, was expressed in Escherichia coli. The purified bacterial IFN (specific activity, 2 X 10(8) units/mg) exhibited antiviral activity on bovine cells but no detectable activity was demonstrated on human and simian cells.

Amino Acid Sequence↗

Cloning, expression and biological activity of a new variant of human interferon alpha identified in virus induced lymphoblastoid cells.

A synthetic oligonucleotide complementary to a highly conserved sequence in the IFN-alpha gene family, was used to screen a Namalva cDNA library. Among the cDNA clones having typical IFN-alpha traits, one was distinct from previously characterized IFN-alpha cDNAs. E. coli cells carrying this recombinant cDNA plasmid express an alpha-interferon activity. The sequence of this IFN-cDNA is extremely homologous (99.5%) to that of the IFN-alpha J gene and is designated IFN-alpha J1. Several E. coli trp expression plasmids were constructed for efficient transcription and translation of the mature IFN-alpha J1. The maximal level of expression (5 X 10(3) molecules/cells) was obtained from plasmid pJ1-4. A synthetic consensus translation initiation sequence coupled to the trp p/o region (in pJ1-5) proved to be 10 times less effective in promoting metIFN production in bacteria, than the in-vitro mutated trpL initiation sequence carried on pJ1-4. The bacterial IFN-alpha J1 was purified (to over 90% purity) to a specific activity of 1.3 X 10(8) units/mg. The antiviral activity of the purified IFN-alpha J1 was compared with other highly purified IFN-alpha species (bacterial IFN alpha A and alpha C, leukocyte IFN-alpha 1, leukocyte IFN mixture and Namalva IFN preparation) on a large panel of mammalian cell cultures. IFN-alpha J1 exhibits a distinct antiviral activity.

Amino Acid Sequence↗

Cloning of a bovine interferon-alpha gene subfamily and comparisons between genetically engineered and leukocyte bovine interferons.

Bovine peripheral leukocytes were virally induced for interferon production, and an acid stable, SDS stable, antiviral activity was detected in the preparation. This bovine interferon (BoIFN) was tested for its ability to induce an antiviral state in various mammalian cells and was found to be specific to cells from bovine origin. The BoIFN cross reacts with antibodies against human IFN-alpha but these antibodies do not neutralize the bovine IFN activity. Leukocyte BoIFN exhibits polymorphism upon Affi-Gel Blue chromatography and SDS-PAGE (16k and 24K). The virally induced leukocytes produce a 13S mRNA which upon translation in oocytes yields an active IFN molecule. Bovine genomic library was constructed and screened for BoIFN-alpha sequences, using human IFN-alpha probes. From the clones isolated, five were found to represent distinct genes. Sequence analysis indicate that these genes are closely related (94% homology). One of these genes was expressed in E. coli under the control of trp promoter operator. The physicochemical and biological properties of the bacterial BoIFN-alpha product resemble those of a subpopulation of natural BoIFN.

Animals↗

Mutations not altering the symmetrical sequences in the trp operator yield a constitutive phenotype.

An E. coli trp promoter operator mutant was constructed, having two base pair alterations at position -4 and -1 relative to the transcription initiation site (+1). Expression of chloramphenicol acetyltransferase gene under this trp promoter operator suggests that it is almost fully constitutive. This trp Oc in vitro derived mutant differs from previously isolated Oc mutants in that its twofold symmetry sequence is identical to that of the wild type trp operator. The base substitution in the operator does not affect the functionality of the trp promoter. The trp Oc promoter DNA fragment is engineered so that it can be manipulated conveniently for efficient expression of various genes in E. coli.

Acetyltransferases↗

Human lymphoblastoid interferon for clinical trials: large scale purification and safety tests.

Human lymphoblastoid cell lines are one of the best sources for the production of large amounts of human interferon for clinical trials. The potential risk of using transformed cell lines for production of a substance for human use can be overcome by an extensive purification of the interferon to a high degree, and by carefully testing the final product for DNA content and toxic materials. In previous reports we described a method for large scale production of interferon by a human lymphoblastoid cell line (Namalva). In this report a system for large scale purification of Namalva interferon and safety tests is presented. The procedure consists of three main steps: 1. Concentration of crude interferon by ultrafiltration. II. Gel filtration on Sephadex G-75 or Ultrogel AcA 54 columns. III. Affinity chromatography on anti-interferon antibody column. All steps were adapted for the processing of batches of hundreds of litres and can be easily further scaled-up. The final highly purified product undergoes a series of quality control tests such as purity, sterility, toxicity, pyrogenicity and DNA content. After passing all tests the IFN is released for clinical trials.

Cell Line↗

Isolation of two species of human lymphoblastoid (Namalva) cell-derived interferon that differ in rates of clearance, size, and cell specificity.

Chromatography of human lymphoblastoid (Namalva) interferon on blue dextran Sepharose has separated the interferon activity into two species which differ in affinity to the dye Cibacron Blue F3GA. The separated species differ also in rates of clearance from the circulation of mice, size, and specificity toward human and bovine cells. The species retained by the dye manifests a slower clearance rate, is about 20,000 mol. wt., and is equally active on both human fibroblasts FS-11A and bovine cell line MDBK. The unretained species disappears from the circulation at a faster rate, is 16,000 mol. wt., is active on bovine cells, but almost inactive on human cells. It is suggested that a comparative study of the two species may aid in the elucidation of the causes responsible for the rapid clearance or bioinactivation of interferon.

Animals↗

Factors affecting the large scale production of human lymphoblastoid interferon.

Large scale production of human lymphoblastoid (Namalva) interferon (IFN) is carried out in pilot-plant-scale fermentors having up to 250 liter culture volume. Cells are grown in a semi-continuous culture. For IFN production, which is an IFN-alpha (Ly), harvested cells were induced by Sendai virus. Variations in IFN yields of up to ten-fold were observed during long-term cell cultivation. Several factors such as cell concentration, virus concentration, "age" of induced cells and serum substitutions, were investigated for their effect on the fluctuation in the IFN yields. Optimization of the above factors were found to be of great importance in controlling the IFN production and maintaining a stable and high IFN yield.

Cell Division↗

Purification and properties of the double-stranded RNA-activated eukaryotic initiation factor 3 kinase from rabbit reticulocytes.

The double-stranded RNA (dsRNA)-activated protein kinase (DAI) that phosphorylates the alpha subunit of the eukaryotic initiation factor eIF-2 and inhibits chain initiation has been isolated from rabbit reticulocyte lysates. The nonactivated enzyme or the enzyme partially activated by incubation with low levels of dsRNA (pro-DAI) could be purified only to a slight extent. However, the enzyme that was fully activated by incubation with both dsRNA and ATP was purified to near homogeneity. Active DAI is a phosphoprotein with an apparent subunit mass of 68,000 daltons. It can phosphorylate histone as well as the alpha subunit of eIF-2. Our results suggest that, after interaction with dsRNA, the enzyme phosphorylates itself and is thereby activated to phosphorylate alpha eIF-2 and histone.

Animals↗

Membrane associated cytoplasmic mRNA in Artemia salina; functional and physical changes during development.

The physical and functional properties of the mRNA population from developing embryos of the brine shrimp Artemia salina were characterized. About 20% of the total poly(A)-rich mRNA in these embryos appears to be specifically associated with the membrane fraction throughout early development, and physically differs markedly from the free cytoplasmic mRNA. The membrane-associated mRNA fraction consists of two well-defined populations of molecular weight of 5.2x10(5) and 3.6x10(5), whose relative amount changes during the various stages of embryo development. The size of the poly(A) tail at the 3'-end of the mRNA molecules, as estimated by processive phosphorolysis, was found to consist of 180 and 210 adenosine residues for the two respective mRNA species. The in vitro translation products of the membrane-bound mRNA molecules are apparently similar to those of the free mRNA molecules.

Animals↗

The translation in vitro of mRNA from developing cysts of Artemia salina.

Successive stages in the development of the brine shrimp cyst were used as a model for studying differentiation at the level of mRNA transcription and translation. The poly (A)-containing mRNA from dormant cysts and free-swimming larvae (nauplii) was found to be efficiently translated in a wheat-germ cell-free system, and electrophoretic patterns of translation products in vitro resembled those of the endogenous proteins extracted from the equivalent developmental stages. Each stage, however, exhibits a characteristic protein pattern. Two low-molecular-weight proteins prominent in the cyst disappeared almost completely in the nauplius stage, whereas the proportion of actin increased 3-fold. Parallel patterns were observed upon translation in vitro of the respective mRNA preparations. The percentage of the acidic protein, tubulin, decreased somewhat during development.

Actins↗

Large subunit ribulosebisphosphate carboxylase messenger RNA from Euglena chloroplasts.

RNA from wild-type Euglena, aplastidic mutant cells, and purified chloroplasts was chromatographed on oligo(dT)-cellulose at 4 degrees. The poly(A)-containing and poly(A)-lacking fractions from each were then tested in a cell-free protein-synthesizing system from wheat germ for their abilities to specifically stimulate synthesis of large subunit ribulosebisphosphate carboxylase [EC 4.1.1.39; 3-phospho-D-glycerate carboxy-lyase (dimerizing)]. The large subunit polypeptide (59,000 molecular weight) was identified in the in vitro reaction by two-dimensional electrophoresis involving isoelectric focusing and size filtration on polyacrylamide gels. Template activity for the large subunit was detected in wild-type cells but not in aplastidic mutant strains; it was highly enriched in the isolated chloroplasts. This messenger was present only in the poly(A)-lacking RNA fraction, where it constituted the most prominent template species of chloroplast RNA. The large subunit message was freed of considerable non-messenger RNA contamination and localized to the 10-20S fraction by sucrose gradient centrifugation.

Carboxy-Lyases↗

5'-Capping structures of Artemia salina mRNA and the translational inhibition by cap analogs.

The mRNA of the brain shrimp Artemia salina has two types of blocked methylated 5'-terminal structures (caps). About 75% of the mRNA molecules have the 5'-end structure of m7G5'ppp5'-AmpGp and about 25% have the structure of m7G5'ppp5'GmpGp. The only other type of methylated residue found in Artemia mRNA is N6-methyladenosine and which is located at internal positions along the mRNA chain. Translation of Artemia cyst or nauplius poly(A)-rich mRNA in wheat-germ extracts was found to be inhibited by 7-methylguanosine 5'-monophosphate, a chemical analog of the cap, as well as by snythetic caps such as m7G5'ppp5'Gm. On the other hand, the elongation activity on endonegous mRNA in an Artemia cell-free system was not sensitive to 7-methylguanosine 5'-monophosphate.

Aminoacylation↗