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Biomedical subjects

F Rougeon

Publications and source records attributed to F Rougeon.

At least 109 records · Page 6Linked to original sources

Mouse immunoglobulin A: nucleotide sequence of the structural gene for the alpha heavy chain derived from cloned cDNAs.

The cDNAs complementary to mouse immunoglobulin alpha heavy chain mRNAs have been cloned into the PstI site of the plasmid vector pBR322. Recombinant plasmids have been identified by hybrid-arrested translation and purification of alpha heavy chain mRNA on DNA-DBM filters. The nucleotide sequence of the inserts encodes the constant and 3' untranslated regions of the alpha heavy chain mRNA. The CH3 domains of human and mouse alpha chains are highly homologous, including a 36 amino acid fragment not reported in the protein sequence (Robinson and Appella, 1980). As in the case of the mu secreted heavy chain, the alpha heavy chain contains a carboxy terminal piece of 20 amino acids.

Animals↗

Molecular cloning of a mouse submaxillary gland renin cDNA fragment.

The mRNA encoding mouse renin has been partially purified from total poly(A)-containing RNA of submaxillary glands of male Swiss mice. Corresponding cDNAs were cloned in the Pst I site of pBR322. Recombinants have been characterized by differential screening and hybrid-arrested translation. The DNA of clone pRn3-5 has been used to study the expression of renin mRNA in the submaxillary gland and in the kidney of different mouse strains. The renin mRNA from submaxillary gland and kidney have the same length (1600 nucleotides) and appear to be the products of the same gene. In vitro translation of mRNAs and RNA blotting experiments have shown that renin mRNA sequences are accumulated in the submaxillary gland of males of AKR and Swiss strains but not in the gland of male BALB/c.

Animals↗

Comparison of mouse immunoglobulin gamma 2a and gamma 2b chain genes suggests that exons can be exchanged between genes in a multigenic family.

A 23-kilobase EcoRI DNA fragment coding for the BALB/c immunoglobulin gamma 2a chain was cloned from mouse embryo DNA in the cosmid pJC74, and a nucleotide sequence of 1904 bases was determined for the entire constant region (CH1, CH2, and CH3), the three intervening sequences (IVS 1, IVS 2, and IVS 3) and the 5' and 3' flanking sequences. When the gamma 2a chain nucleotide sequence was compared with the gamma 2b chain nucleotide sequence, the percent homology of corresponding segments (excluding deletion and insertion) was 82% for the 5' flanking sequence, 87% for CH1, 84% for IVS 1, 96% for the hinge, 95% for IVS 2, 94.6% for CH2, 86% for IVS 3, 74% for CH3, 89% for the 3' untranslated region, and 92% for the 3' flanking region. These findings show that different domains of gamma 2a and gamma 2b have independent rates of evolution and that some of the noncoding segments of the gene are more conserved than are adjacent coding segments. Hypotheses on the possible role of IVS is gene evolution and expression are discussed.

Animals↗

Nucleotide sequence of constant and 3' untranslated regions of a kappa immunoglobulin light chain mRNA of a homozygous b4 rabbit.

A homozygous a2/a2 and b4/b4 rabbit has been hyperimmunized with Micrococcus lysodeikticus. Poly(A)-containing RNA has been isolated from the spleen and translated in vitro, and translation products have been analyzed by NaDodSO4/polyacrylamide gel electrophoresis. Double-stranded cDNA has been synthesized from poly(A)-containing RNA template and inserted in the Pst I endonuclease site of plasmid pBR322 by using the oligo(dC).oligo(dG) tailing procedure. Tetracycline-resistant ampicillin-sensitive clones containing cDNA complementary to a kappa light chain mRNA have been selected by differential screening and their ability to hybridize to a spleen mRNA having the same size as a mouse kappa light chain mRNA. Two clones, pRk-15 and pRk-32, have been selected to determine the nucleotide sequence of the constant and 3' untranslated regions of kappa light chain mRNA, by the Maxam and Gilbert partial degradation method. Comparison of homologous regions of mouse kappa chain mRNA and b4 rabbit kappa chain mRNA reveals 61% homology in the constant region and 59% homology in the 3' untranslated region.

Animals↗

Structure of the constant and 3' untranslated regions of the murine Balb/c gamma 2a heavy chain messenger RNA.

The complete sequence for the constant and 3' untranslated regions of a mouse gamma 2a immunoglobulin heavy chain mRNA is reported. The sequence is 1093 nucleotides long coding for the CH1 (amino-acids 118-214), the Hinge (215-230), the CH2 (231-340) and the CH3 (341-447). The 3' untranslated region is 103 nucleotides long preceding the poly(A). The nucleotide sequence predicts as in the case for gamma 1 and gamma 2b heavy chains an additional lysine residue before the termination codon. This sequence has been compared to the corresponding sequences of gamma 1 and gamma 2b heavy chain mRNAs. These sequences are respectively 75% and 84% homologous. The CH2 domains of gamma 2a and gamma 2b are 95% homologous at the nucleotide level. The cross-over point of a gamma 2a - gamma 2b heavy chain variant is located in a segment of 73 perfectly matching nucleotides. The 3' non coding regions of gamma 2a and gamma 2b are 89% homologous.

Amino Acid Sequence↗

Mouse immunoglobulin genes: a bacterial plasmid containing the entire coding sequence for a pre-gamma 2a heavy chain.

A DNA sequence complementary to the entire coding part of a mouse gamma 2a immunoglobulin heavy chain mRNA isolated from a myeloma producing a levan binding protein (UPC 10), has been cloned in the PstI site of pBR 322. Transformants containing sequences complementary to purified gamma 2a heavy chain mRNA were selected. One transformant, pG2a-10-21, containing a 1750 nucleotide insert, has been characterized by hybrid-arrested translation and purification of gamma 2a heavy chain mRNA on DNA-DBM cellulose filters. Restriction enzyme analysis and partial sequencing demonstrate that the pG2a-10-21 contains the complete structural sequence for the gamma 2a heavy chain and predicts the sequence of a 18 amino acid hydrophobic amino terminal extra piece segment.

Animals↗

Purification of mouse immunoglobulin heavy-chain messenger RNAs from total myeloma tumor RNA.

A procedure is described for the large-scale purification of light (L) and heavy (H) chain mRNAs from plasmacytomas produced in mice. Intact RNA is selectively precipitated in high yield from frozen tumors homogenized in 3 M LiCl and 6 M urea. L and H-chain mRNAs were purified by oligo(dT)-cellulose chromatography and either sucrose gradient centrifugation in conditions preventing aggregation or by means of high-resolution preparative gel electrophoresis under non-denaturing conditions. gamma 2a and alpha H-chain mRNAs sedimented as major components at 15.5 S and 16.5 S respectively, when L-chain mRNAs sedimented as 12-S species. H-chain mRNAs isolated by continuous elution during preparative gel electrophoresis were completely separated from both L-chain mRNA and residual 18-S rRNA, and migrated as single components of 1900 +/- 50 nucleotides on analytical denaturing gels. The partially purified H-chain mRNAs were translated into major components of molecular weights of 56,000 (gamma 2a) and 60,000 (alpha) in an mRNA-dependent rabbit reticulocyte lysate, whereas L-chain mRNAs yielded polypeptides of molecular weights of 25,000 (gamma) and 27,000 (chi). Up to 95% of the translation products directed by the purified mRNAs were immunoprecipitated using specific antisera. The purity of L and H-chain mRNAs was assessed by hybridization of corresponding cDNAs with excess recombinant plasmid DNA. The results indicated a minimum purity of 47% (gamma 2a), 62% (alpha), for H-chain mRNAs and 60% (chi), for L-chain mRNAs.

Animals↗

Molecular cloning and nucleotide sequence of the human growth hormone structural gene.

An almost complete cDNA copy of human growth hormone has been cloned and sequenced. The nucleotide sequence confirms the known protein sequence and predicts the sequence of a precursor region of 26 amino acids. We have compared the nucleotide sequence to that for the homolgous proteins, rat growth hormone and human chorionic somatomammotropin (Seeburg et al. and Shine et al., Nature 270, 486 (1977)). There appears to be evolutionary conservation of mRNA sequence features not related to protein structure.

Amino Acid Sequence↗

Electron microscope analysis of mouse and rabbit globin and immunoglobulin gene sequences.

Mouse and rabbit globin and immunoglobulin gene sequences, which had been synthesized in vitro from eukaryotic mRNAs and inserted into plasmids, have been examined in the electron microscope. The size of the inserted beta rabbit and alpha and beta mouse globin DNA sequences has been estimated as 620 base pairs while the size of the inserted alpha rabbit globin DNA sequences was found to be about 490 base pairs. Heteroduplex analysis has revealed no structural abnormalities at the insertion sites of the chimeric plasmids except in the case of a plasmid containing an immunoglobulin light chain gene sequence of about 830 bases, in which 3 kb deletion adjacent to the insertion site was observed.

Animals↗

Cloning and amplification of rabbit alpha- and beta-globin gene sequences into Escherichia coli plasmids.

cDNA, synthesized from rabbit globin mRNA, was used in a self-priming reaction, with avian myeloblastosis virus DNA polymerase, for the synthesis of double-stranded DNA. Globin DNA ranging from about 400 to 650 base pairs was elongated with dG tails using deoxypolynucleotide transferase and was annealed to linear Escherichia coli plasmic pCR1, elongated with dC tails. Preparation of the plasmid DNA involved an enzymatic reconstruction of one EcoRI-specific site on each side of the molecule. After transformation of E. coli cells to kanamycin resistance with the hybrid molecules, bacterial clones harboring recombinant plasmids were studied for the presence of globin-specific DNA. Plasmids containing either alpha or beta rabbit globin gene sequences were obtained. There was a 4-fold excess of recombinant plasmids containing beta-globin sequences over those with alpha-globin DNA. The longest beta-globin sequences found in plasmids were about 550 to 600 pairs long, and correspond therefore to the entire beta-globin structural gene and to some of the untranslated regions. The alpha-globin sequences were 400 to 450 base pairs long. Treatment of clone pCR1betarG 19 with EcoRI endonuclease released two DNA fragments (410 and 210 base pairs) resulting from cleavage at two reconstructed external EcoRI sites and at one internal EcoRI site within the rabbit globin gene. The same treatment of pCR1alpharG 11 released one fragment. In most other recombinant plasmids studied however, no fragment was released by EcoRI digestion.

Amino Acid Sequence↗

Cloning and amplification of alpha and beta mouse globin gene sequences synthesised in vitro.

New chimeric Escherichia coli plasmids containing alpha or beta globin gene sequences of the mouse were constructed. Double-stranded DNA, synthesised in vitro in a 2-step reaction from mouse globin mRNA was inserted into E. coli plasmid pCR1, after tailing of the 2 DNAs with dG and dC respectively. Some of the mouse globin plasmids described contain at least 90% of the globin mRNA sequence and therefore contain the entire translated sequence of the globin genes. Some possible uses of these recombinant plasmids are described.

Animals↗

Stepwise biosynthesis in vitro of globin genes from globin mRNA by DNA polymerase of avian myeloblastosis virus.

Two approaches have been explored for the synthesis of double-stranded DNA from single-stranded DNA template complementary to rabbit 9S globin mRNA (cDNA). (i) cDNA was elongated with dCMP or dTMP homopolymeric tracts using terminal deoxynucleotidyltransferase (EC 2.7.7.31; nucleosidetriphosphate:DNA deoxynucleotidylexotransferase). cDNA-dC, in the presence of an oligo(dG)10 primer, was an efficient template with either DNA polymerase of Escherichia coli (EC 2.7.7.7; deoxynucleosidetriphosphate:DNA deoxynucleotidyltransferase) or RNA-directed DNA polymerase of avian myeloblastosis virus. cDNA-dT [ with an oligo(dA)10 primer] functioned as template only with E. coli polymerase. (ii) cDNA, without homopolymeric tails, was also efficiently copied in the absence of oligonucleotide primer, by DNA polymerase of avian myeloblastosis virus or of E. coli. The product of the reaction consisted of long hairpin molecules which could be converted into DNA duplex (melting temperature, 93 degrees) by digestion with single-strand nuclease S1. The data indicate that a loop structure on the 3' end of cDNA allowed DNA synthesis to take place by a "self-priming" mechanism. Some of the double-stranded DNA synthesized corresponded to the entire sequence of the 9S mRNA template. The synthesis of full-length double-stranded DNA from mouse globin mRNA and immunoglobulin light chain mRNA is also discussed.

Avian Myeloblastosis Virus↗

Insertion of a rabbit beta-globin gene sequence into an E. coli plasmid.

Double stranded DNA has been synthesized in vitro from rabbit globin messenger RNA and elongated with homopolymeric dG tails. An E. coli plasmid was cleaved by EcoRI. The cohesive ends were repaired and dC tails added, to permit reconstitution of the EcoRI sites upon annealing with the dG elongated globin DNA. Transformation of E. coli with the globin-plasmid DNA hybrid has yielded a clone which harbours a recombinant plasmid (pCR1-betaG1), as demonstrated by hybridization experiments with radioactive globin cDNA. The sequence carried by the recombinant plasmid corresponds to part of the gene sequence coding for the beta chain of rabbit globin. Circular DNA of the purified recombinant plasmid exhibits sensitivity to EcoRI.

Animals↗

Primer requirement and template specificity of a DNA polymerase of chick embryo.

A DNA polymerase purified from extracts of chick embryo catalyzes the synthesis of poly(dT) in the presence of poly(rA) or poly(dA) as template and poly(dT) or oligo(dT) as primer. Oligo- or polyribonucleotides are relatively ineffective initiators of polydeoxynucleotide polymerization. Using activated DNA as template, the enzyme catalyzes a repair-like reaction that resembles that catalyzed by RNA-directed DNA polymerase of RNA tumor viruses and Escherichia coli DNA polymerase II. With natural templates containing poly(rA) sequences, such as avian myeloblastosis virus RNA or rabbit globin mRNA, and oligo(dT) as initiator, principally poly(dT) is synthesized. Consequently, the enzyme differs from the RNA-directed DNA polymerase associated with RNA tumor viruses by its incapacity to transcribe heteropolymeric regions of RNA templates. The possible role of the enzyme in repair of DNA during transcription is discussed.

Adenine Nucleotides↗