Search PubMed⌕ Search

Biomedical subjects

E Jay

Publications and source records attributed to E Jay.

At least 19 recordsLinked to original sources

Superoxide dismutase activity of the captopril-iron complex.

With an assay that generates superoxide anion radicals without the intervention of metal ions we investigated the antioxidant properties of captopril, an angiotensin-converting enzyme inhibitor with a sulfhydryl group. Under these conditions, increasing concentrations of the drug were seen not to scavenge O.-2 directly. However, a combination of captopril and iron could bring about the breakdown of the superoxide anion; a result that may help to understand the free radical-scavenging properties of captopril.

Antioxidants↗

Determination of the optimal aligned spacing between the Shine-Dalgarno sequence and the translation initiation codon of Escherichia coli mRNAs.

The prokaryotic mRNA ribosome binding site (RBS) usually contains part or all of a polypurine domain UAAGGAGGU known as the Shine-Dalgarno (SD) sequence found just 5' to the translation initiation codon. It is now clear that the SD sequence is important for identification of the translation initiation site on the mRNA by the ribosome, and that as a result, the spacing between the SD and the initiation codon strongly affects translational efficiency (1). It is not as clear, however, whether there is a unique optimal spacing. Complications involving the definition of the spacing as well as secondary structures have obscured matters. We thus undertook a systematic study by inserting two series of synthetic RBSs of varying spacing and SD sequence into a plasmid vector containing the chloramphenicol acetyltransferase gene. Care was taken not to introduce any secondary structure. Measurements of protein expression demonstrated an optimal aligned spacing of 5 nt for both series. Since aligned spacing corresponds naturally to the spacing between the 3'-end of the 16S rRNA and the P-site, we conclude that there is a unique optimal aligned SD-AUG spacing in the absence of other complicating issues.

Base Sequence↗

The influence of adenine-rich motifs in the 3' portion of the ribosome binding site on human IFN-gamma gene expression in Escherichia coli.

The ribosome binding site (RBS) of prokaryotic mRNA is divided into 5' and 3' portions by the translation initiation codon. Although it is well known that the presence of an appropriate RBS containing only the 5' portion is sufficient to direct the initiation of protein synthesis, the 3' portion appears to play a significant role in modulating the initiation process as well. Here we examine the influence of adenine-rich motifs frequently found in the 3' portion of highly expressed prokaryotic mRNAs. Two synthetic DNA fragments, GAGAAAAAAATC (corresponding to the first 12 nucleotides following the initiation codon of the chloramphenicol acetyltransferase gene), and AAAAAAATTAA were used to modify the beginning of the coding region of the human immune interferon-gamma (IFN-gamma) gene. The level of the protein synthesis in Escherichia coli directed by plasmids containing these constructs was quantitated. We found that placing either adenine-rich motif in the 3' portion of the RBS strongly enhanced gene expression, probably through an effect on translation initiation. We have also compared the protein expression levels of these gene constructs containing different series of 5'-RBSs with varying precistronic lengths and Shine-Dalgarno sequence lengths. The results suggest a positive functional role for the 3' adenine-rich motif. A possible mechanism for these effects is discussed.

Adenine↗

Structure-function analysis of the human interferon gamma. The COOH terminus is not essential for functional activity.

The structure-function relationships for the human interferon gamma (HuIFN-gamma) were studied using recombinant variants that had various deletions at the carboxyl terminus. Four COOH-terminal deletion variants were constructed that contained the amino-terminal 122, 117, 111, and 106 amino acid residues. These variants were constructed by specific DNA modifications and were expressed in Escherichia coli. The deletion of 21 amino acid residues resulted in only 2- and 3-fold reduction in the antiviral and antiproliferative specific activities, respectively. Thus, the carboxyl-terminal 21 residues are not directly involved in the function of the HuIFN-gamma. The level of intracellular accumulation was also decreased by 3-5-fold. Further deletions of 26, 32, and 37 residues from the COOH terminus resulted in the lack of detectable activity as well as in 50-100-fold reduction in the level of accumulation in the bacterial cell. However, each of the modified plasmids was found to have comparable efficiency in directing the production of the respective variant molecules relative to the full-length HuIFN-gamma molecule in an in vitro transcription-translation assay. Thus, the failure of some of the deletion variant molecules to accumulate in the E. coli cell is likely due to their instability in vitro. The loss of the COOH-terminal 21 amino acid residues of HuIFN-gamma also resulted in a substantial reduction in the ability of the molecule to be renatured in vitro from the treatment with chaotrophic agents, a method frequently used to extract and purify recombinant polypeptides from E. coli host. The latter result may account for some earlier reports which inferred the involvement of the COOH terminus in the functions of the HuIFN-gamma molecule due to their failure to detect activity upon deletions of only 11-18 residues.

Amino Acid Sequence↗

Construction of a Co1E1 plasmid bearing inducible high-copy-number phenotype.

In order to construct plasmids bearing inducible high-copy-number phenotype, the cloning plasmid pBR322 was modified as follows: a DNA fragment containing a strong synthetic promoter (P1), synthetic lac operator (O1), DNA sequence corresponding to the RNAI/RNAII region of the Co1E1 replicon and the CAT gene transcription terminator was substituted for the 29 bp EcoRI/HindIII DNA fragment. Two types of plasmids were constructed in this way, differing in the orientation of the RNAI/RNAII fragment. Depending on the orientation these plasmids coded for RNA molecules representing either RNAI or RNAII domains. It was found that when RNAII molecules were overproduced the plasmid copy number was about 4 times higher than that of pBR322 and only negligible change in the plasmid copy-number value was observed upon overproduction of RNAI molecules.

Bacteriocin Plasmids↗

Chemical synthesis and characteristics of a hybrid phage T5-lac promoter.

A new P1O1R9 inducible promoter (where P1 is a promoter sequence analogous to that of the phage T5 early promoter; O1 is lac-operator; and R9 is a ribosome binding site) was synthesized. We studied the efficiency of this promoter in controlling and inducible gene expression using two model genes: human calcitonin tetrameric (hCT[4]) and human interferon alpha 1 (hIFN alpha 1). The synthetic lac-operator O1 was found to repress P1 activity in media free of lac-operon inducers which was derepressed in the presence of IPTG. The levels of expression of both genes (evaluated by quantitating mRNA and protein) in the presence of lac-inducers were close to those obtained with the P1R9 constitutive promoter.

Base Sequence↗

Expression of repetitive human calcitonin genes in Escherichia coli.

In order to stabilize recombinant human calcitonin (rhCT) against Escherichia coli proteases a series of concatemeric hCT genes with varying degrees of repetition were synthesized and expressed in E. coli under the control of a constitutive synthetic phage promoter. The series of expression vectors thus constructed was used as a model to study the effect of gene repetition on the efficiency of expression (both transcription and translation), stability of mRNA, proteolytic stability of recombinant protein, genetic stability of expression plasmids, etc. The oligomerization of the hCT gene resulted in stabilization of the mRNA increasing its half-life from 60-70 s (as in the hCT monomer, dimer, and trimer genes) to 100-120 s (for the hCT tetramer gene). This effect held true as well for the proteins coded by the corresponding repetitive hCT genes. The genetic stability (segregation and recombination) of the expression plasmids containing hCT oligomeric genes also depended on the number of hCT gene repeats. The expression plasmid containing the hCT tetramer gene segregated from one of the best producers of rhCT (E. coli LE392) up to 100% after 100 cell generations in nonselective media (free of antibiotics). One of the plasmids most sensitive to recombination events was that containing the hCT pentamer gene. The series of expression plasmids bearing hCT oligomeric genes was used for transformation of various E. coli strains in order to find the optimal host for production of rhCT. The highest yield (44-100 mg rhCT per 1 liter of bacterial culture) was obtained with the strains LE392, JM107, and DH1.

Calcitonin↗

Structure-function studies on bacteriorhodopsin. II. Improved expression of the bacterio-opsin gene in Escherichia coli.

The aims of this work have been to express bacterio-opsin with minimal variation from the native primary structure and to improve the level of expression in Escherichia coli. We describe the construction of plasmids in which the bacterio-opsin gene contains only an additional methionine residue at the N terminus and in which the C-terminal aspartic acid encoded in the gene has been deleted to conform to the mature protein. In attempts to improve bacterio-opsin expression, a variety of expression plasmids were constructed in which the promoters and the ribosome-binding sequences were varied. Invariably, in these plasmids, translation but not transcription of the bacterio-opsin gene was limiting. A striking increase in expression of the gene occurred when the codons for several of the N-terminal amino acids were changed to increase the A = T content. Bacterio-opsin expressed in E. coli was degraded with a half-life of 8-10 min. The addition of hydrophobic signal sequences at the N terminus increased the half-life and overall yield of the protein. Bacterio-opsin thus produced regenerated the native bacteriorhodopsin-like chromophore and carried out light-dependent proton translocation at a rate comparable to that of the native bacterio-opsin prepared from the purple membrane.

Amino Acid Sequence↗

Chemical synthesis and expression in E. coli of a human Val8-calcitonin gene by fusion to a synthetic human interferon-gamma gene.

A gene coding for human Val8-calcitonin (Val8-hCT) was synthesized by the solid-phase phosphite approach and fused to a synthetic human immune interferon-gamma (IFN-gamma) gene. The IFN gene was previously shown to be expressed at a very high level in E. coli [(1986) Gene, in press] due to the control of a strong synthetic promoter and strong ribosome binding site. The cells harboring the fused gene produced 100-150 micrograms per l of bacterial suspension of immunoreactive calcitonin in the form of hybrid IFN-gamma-Val8-hCT protein consisting of 140 amino acids. The Val8-hCT can be released from this protein by CNBr treatment.

Amino Acid Sequence↗

Chemical synthesis and expression of the human calcitonin gene.

A gene coding for the peptide hormone, human calcitonin (hCT), has been constructed and expressed in bacteria using a prokaryotic vector containing the strong T5P25 promoter and a strong ribosome-binding site. The bacterial hCT is different from the natural hCT by having an additional Met residue at the N terminus and a non-amidated C terminus. Despite these differences, the bacterial hCT is biologically active in rat cells. The results are important for future structure-function relationship studies using mutants constructed by genetic engineering.

Amino Acid Sequence↗

Inclusion bodies in recombinant E. coli producing human calcitonin tetramer, as visualized by immuno-gold electron microscopy.

Inclusion bodies are described in recombinant E. coli cells harboring plasmid for the expression of a synthetic gene coding for human calcitonin tetramer. The inclusion bodies are visualized by electron microscopy and the protein is identified by immuno-gold technique, using antibodies against synthetic human calcitonin. The diameter of the inclusion bodies is 1 micron on the average.

Calcitonin↗

Molecular cloning and nucleotide sequence of the alpha and beta subunits of allophycocyanin from the cyanelle genome of Cyanophora paradoxa.

The genes for the alpha- and beta-subunit apoproteins of allophycocyanin (AP) were isolated from the cyanelle genome of Cyanophora paradoxa and subjected to nucleotide sequence analysis. The AP beta-subunit apoprotein gene was localized to a 7.8-kilobase-pair Pst I restriction fragment from cyanelle DNA by hybridization with a tetradecameric oligonucleotide probe. Sequence analysis using that oligonucleotide and its complement as primers for the dideoxy chain-termination sequencing method confirmed the presence of both AP alpha- and beta-subunit genes on this restriction fragment. Additional oligonucleotide primers were synthesized as sequencing progressed and were used to determine rapidly the nucleotide sequence of a 1336-base-pair region of this cloned fragment. This strategy allowed the sequencing to be completed without a detailed restriction map and without extensive and time-consuming subcloning. The sequenced region contains two open reading frames whose deduced amino acid sequences are 81-85% homologous to cyanobacterial and red algal AP subunits whose amino acid sequences have been determined. The two open reading frames are in the same orientation and are separated by 39 base pairs. AP alpha is 5' to AP beta and both coding sequences are preceded by a polypurine, Shine-Dalgarno-type sequence. Sequences upstream from AP alpha closely resemble the Escherichia coli consensus promoter sequences and also show considerable homology to promoter sequences for several chloroplast-encoded psbA genes. A 56-base-pair palindromic sequence downstream from the AP beta gene could play a role in the termination of transcription or translation. The allophycocyanin apoprotein subunit genes are located on the large single-copy region of the cyanelle genome.

Amino Acid Sequence↗

Chemical synthesis of a biologically active gene for human immune interferon-gamma. Prospect for site-specific mutagenesis and structure-function studies.

A 453-base pair DNA duplex consisting of a gene coding for human interferon-gamma and initiation and termination signals plus appropriate restriction enzyme sites for plasmid insertion has been totally synthesized. The synthesis involved preparation of 66 oligodeoxynucleotides by a modified, solid phase phosphite procedure and enzymatic ligation of the oligonucleotides. The gene, when inserted into a previously constructed expression vector, was expressed in Escherichia coli, demonstrating functional activity for the synthetic gene. Several strategically located restriction cleavage sites have been introduced into the sequence. This provides a convenient system for site-specific mutagenesis for structure-function studies.

Amino Acid Sequence↗

Genes for the alpha and beta subunits of phycocyanin.

Phycocyanin (PC) is a light-harvesting protein common to blue-green and red algae. We have isolated the genes for the two apoprotein subunits, alpha and beta, of PC from the blue-green alga Agmenellum quadruplicatum PR-6. We synthesized eight sense-strand tetradecameric oligonucleotide probes that could encode a particular pentapeptide in PC alpha from A. quadruplicatum. Only one probe hybridized with total RNA from this organism. This oligonucleotide showed homology to a unique restriction fragment when used to probe Southern blots of A. quadruplicatum DNA. The probe-homologous 3.1-kilobase pair HindIII fragment was cloned. The nucleotide sequence of a 1.7-kilobase pair segment of this clone was determined. Two open reading frames are contained in this region, which correspond in deduced amino acid sequence to PC alpha and PC beta subunits. Both coding sequences are in the same orientation, separated by 105 base pairs, with the PC beta gene 5' to the PC alpha gene. Each gene has a Shine-Dalgarno-type sequence near the initiation codon. Codon frequencies in the two genes may be correlated with the abundance of their products. The deduced amino acid sequences of the gene products show considerable homology with the alpha and beta PC subunits from other species.

Amino Acid Sequence↗

High-level expression of a chemically synthesized gene for human interferon-gamma using a prokaryotic expression vector.

A chemically synthesized gene for human interferon-gamma has been cloned into a prokaryotic expression vector under the regulation of a synthetic constitutive transcriptional-translational control unit that contains a strong bacteriophage T5 early promoter and a strong ribosome-binding site. Cells harboring the recombinant plasmid express high levels (4 X 10(9) units per liter of culture) of antiviral activity specific for interferon-gamma. Analysis of total cell lysates on NaDodSO4/polyacrylamide gels revealed a 17,200-dalton protein, expected for the nonglycosylated form of human interferon-gamma, that constitutes greater than 15% of total cell protein.

Amino Acid Sequence↗

Comparison of class I (H-2) gene sequences. Derivation of unique probes for members of this multigene family.

The genes for the classical transplantation antigens are unique in that they belong to a multigene family of which each member is represented by a large number of alleles. Since all of these genes are highly related in sequence, it has been difficult to study the expression of individual members of this complex gene family. Based upon our initial suggestion that the 3' noncoding regions of these genes may be useful in identifying mRNA molecules transcribed from different loci, we have compared a large number of sequences from different inbred mouse strains and have been able to assign each of these sequences without ambiguity into distinct allelic series. Such accurate assignment has afforded the opportunity to compare the coding regions of these highly homologous genes and has led to the identification of sequences which are apparently unique to specific genes in the family. Synthetic oligonucleotides corresponding to each of the locus-specific unique regions have been used successfully to type a panel of cDNA sequences, as well as to quantitate the relative amounts of mRNA transcribed from distinct loci. The availability of these specific coding probes will allow the analysis of individual genes and their specific expression without interference from other highly homologous sequences in this multigene family.

Amino Acid Sequence↗

Gene expression: chemical synthesis and molecular cloning of a bacteriophage T5 (T5P25) early promoter.

A sixty base pair DNA duplex containing the nucleotide sequence of the bacteriophage T5 early (T5P25) promoter has been constructed using a combination of chemical synthesis and enzymatic methods. Subsequent to cloning into pBR322, the promoter has been demonstrated to be biologically active being capable of directing the efficient expression of genes under its control. This serves as a prototype for an approach to the study of the in vivo structure-function relationships and efficiency of promoters.

Base Composition↗