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B Mach

Publications and source records attributed to B Mach.

At least 109 records · Page 6Linked to original sources

Somatic mutations of immunoglobulin variable genes are restricted to the rearranged V gene.

An important question concerning the mechanism of somatic mutation of immunoglobulin variable (V) genes is whether it involves all of the numerous V genes in a differentiated B cell, independent of location, or if it is restricted to a particular chromosomal site. Comparison of the sequence of two alleles of a given V gene shows that the mutations are limited to the rearranged V gene, while the same V gene on the other chromosome has not undergone mutation. This indicates that a V gene sequence alone is not sufficient for somatic mutation to take place. The mutation is therefore restricted to the rearranged V gene and consequently does not occur before rearrangement.

Animals

The absence of beta 2-microglobulin in Daudi cells: active gene but inactive messenger RNA.

The Daudi cell line is characterized by an absence of HLA antigen on its surface. This has been attributed to a lack of beta 2-microglobulin (beta 2m) while the heavy chain of HLA is present intracellularly. Karyotype analysis of Daudi cells has shown a deletion involving one of the beta 2-microglobulin alleles. It was generally believed that the absence of beta 2-microglobulin in that cell line resulted from an absence of expression of the remaining gene. We report here the unexpected finding of a normal amount of beta 2-microglobulin messenger RNA in Daudi cells. This was demonstrated by "Northern blot" hybridization with cDNA plasmid clones as a probe. This mRNA, however, when purified by hybridization-selection with beta 2-microglobulin plasmid DNA, is unable to function as messenger in protein synthesis and is therefore an inactive mRNA. The finding of a translationally inactive beta 2-microglobulin mRNA provides a new explanation for the absence of beta 2-microglobulin and therefore of HLA antigens in Daudi cells.

Animals

Molecular analysis of the genes for human class II antigens of the major histocompatibility complex.

Different cDNA clones have been isolated that encode each of the three chains of HLA-DR antigens: alpha, intermediate and beta, as well as another beta chain, most likely DC. Whereas the DR alpha and intermediate chains seem encoded by single genes, the DR and DC beta chains are most likely encoded by multiple genes; furthermore, their polymorphism can be readily detected by restriction analysis of cellular DNA. Several genomic DNA clones were isolated for the DR and DC beta chain genes and for the intermediate chain gene. The sum of all distinct cDNA clones and genomic DNA clones for HLA-DR beta chains, isolated from a heterozygous cell line, represent five genes. This implies the existence of at least three nonallelic DR beta chain genes in addition to the DC beta chain genes. The complete sequence of one of the DR beta chains is presented. A genomic DNA clone for a DR beta chain was transferred into mouse L cells and found to be expressed into RNA of the same size as DR beta mRNA. The finding, among the genes for class II antigens, of multiple genes for the beta chain of HLA-DR, distinct from those of other known subregions such as DC, emphasizes the importance of gene transfer experiments, where individual genes can be expressed and tested for their functional role in the immune response.

Alleles

Isolation of cDNA clones for the p33 invariant chain associated with HLA-DR antigens.

HLA-DR antigens are polymorphic cell surface glycoproteins involved in the control of the immune response in man. They consist of two subunits, the alpha and the beta chains. In addition, an invariant glycoprotein of Mr 33,000 (DRp33) is associated intracellularly with HLA-DR antigens. A cDNA clone for DRp33, called 33-10, was isolated. Because no amino acid sequence has yet been determined for DRp33 the identification of cDNA clone 33-10 was based on selection of mRNA by hybridization, subsequent translation in a rabbit reticulocyte lysate supplemented with microsomes, and translation in microinjected Xenopus oocytes followed by immunoprecipitation with an anti-DR antiserum. The translation products assembled with DR alpha and beta chains in oocytes coinjected with all three mRNAs. Assembly of DR alpha and beta chains was also observed in the absence of DRp33 mRNA. Furthermore, when compared with DRp33 immunoprecipitated from a human B-cell line, translation products of the hybrid-selected mRNA showed (i) identical migration in two-dimensional gel electrophoresis, (ii) identical apparent molecular weight in the absence of N-linked glycosylation, and (iii) a very similar two-dimensional peptide map. Transcription of the DRp33 gene into a mRNA 1,400 nucleotides long was observed in B cells but was undetectable in T-cell lines and was very low in liver. Thus, DRp33 appears to be coordinately expressed with DR alpha and beta chains. Hybridization to DNA of mouse-human somatic cell hybrids showed that DRp33 is encoded by a gene that is located outside the major histocompatibility complex.

Animals

A molecular map of the immune response region from the major histocompatibility complex of the mouse.

A stretch of 200 kilobases (kb) of DNA from the I region of the mouse major histocompatibility complex has been cloned and characterized. It contains the genes for the biochemically defined class II proteins E alpha, E beta and A beta. DNA blot analyses suggest that the I region may contain only 6-8 class II genes. Correlation of our molecular map with the genetic map of the I region confines two of the five I subregions, I-J and I-B, to less than 3.4 kb of DNA at the 3' end of the E beta gene where a hotspot for recombination has been observed. Indeed, the I-A and I-E subregions may be contiguous. If so, the I-B and I-J subregions are not encoded in the I region between the I-A and I-E subregions.

Animals

Translation and assembly of HLA-DR antigens in Xenopus oocytes injected with mRNA from a human B-cell line.

HLA-DR antigens are polymorphic cell surface glycoproteins, expressed primarily in B lymphocytes and macrophages, which are thought to play an important role in the immune response. Two polypeptide chains, alpha and beta, are associated at the cell surface, and a third chain associates with alpha and beta intracellularly. RNA isolated from the human B-cell line Raji was injected in Xenopus laevis oocytes. Immunoprecipitates of translation products with several monoclonal antibodies revealed the presence of HLA-DR antigens similar to those synthesized in Raji cells. One monoclonal antibody was able to bind the beta chain after dissociation of the three polypeptide chains with detergent. The presence of all three chains was confirmed by two-dimensional gel electrophoresis. The glycosylation pattern of the three chains was identical to that observed in vivo, as evidenced in studies using tunicamycin, an inhibitor of N-linked glycosylation. The presence of alpha chains assembled with beta chains in equimolar ratio was further demonstrated by amino-terminal sequencing. An RNA fraction enriched for the three mRNAs, encoding alpha, beta, and intracellular chains, was isolated. This translation-assembly system and the availability of monoclonal antibodies make it possible to assay for mRNA encoding specific molecules among the multiple human Ia-like antigens.

Animals

Origin of transcription of a mouse immunoglobulin light chain gene.

Although the organization, the structure, and the somatic rearrangement of immunoglobulin genes have been studied in detail, there is no information regarding the precise origin of transcription of immunoglobulin genes. We have analyzed the 5'-flanking region of an expressed mouse V kappa light chain gene and the pre-mRNA transcript of that light chain gene, as it is expressed in vivo. Study of the pre-mRNA and of the DNA sequence by the procedure of "S1 mapping" establishes that the 5' end of the pre-mRNA transcript is 25-26 nucleotides upstream from the initiation codon. A CATATA sequence is found 22-23 nucleotides upstream from the origin of transcription. Although several other TATA-like sequences are found further upstream, only a single origin of transcription can be documented. From the S1 protection experiments, the 5' end of the mature mRNA was found to be the same as that of the pre-mRNA, indicating conservation of that sequence during RNA processing. Finally, a conspicuous pentanucleotide repeat CATTG - CATTG has been identified at the position of transcription initiation.

Amino Acid Sequence

Isolation of cDNA clones encoding HLA-DR alpha chains.

HLA-DR antigens, the human equivalent of mouse Ia antigens, are multimeric surface glycoproteins characterized by a high degree of allelic polymorphism. They are expressed specifically on macrophages and lymphocytes and they play a key role in the regulation of the immune response. We have investigated this complex genetic system by a direct study of the genes involved through molecular cloning. This paper deals with the cloning, in plasmids, of full-length cDNA sequences for the HLA-DR alpha chain from the human B-cell line Raji. The approach relies on a translation assay of mRNA injected into frog oocytes and recognition of translation products by polyclonal and monoclonal antibodies. After enrichment of specific mRNA and cloning of cDNA, plasmid clones were analyzed by hybridization-selection of mRNA and translation in oocytes. A clone was identified and used to screen a cDNA library from which several full-length HLA-DR alpha chain plasmids were isolated. DNA sequence determination of one such clone confirmed its identity and also established the amino acid sequence of the NH2-terminal signal sequence of HLA-DR alpha chains. The translation product of HLA-DR alpha chain mRNA purified by hybridization-selection gives a single alpha chain spot on two-dimensional gels, whereas the alpha chain released from the alpha/beta HLA-DR complex gives about seven distinct spots. Finally, the results of analysis of genomic DNA by Southern blotting are compatible with the existence of a single nonpolymorphic alpha chain gene and indicate extensive cross-hybridization with a homologous gene in mouse DNA.

Animals

Isolation of distinct cDNA clones encoding HLA-DR beta chains by use of an expression assay.

cDNA clones encoding different human Ia antigen beta chains were isolated by use of a complementation-expression assay in Xenopus oocytes. The assay was based on two previous findings. First, oocytes injected with mRNA from a human B-cell line express HLA-DR antigen. The three intracellular DR chains are assembled in oocytes and can be immunoprecipitated with anti-DR monoclonal antibodies. Second, we have isolated cDNA clones encoding DR alpha and intermediate chains. In order to identify beta-chain cDNA clones, mRNA was hybrid-selected with pools of cDNA clones, mixed with mRNA for the alpha and intermediate chains, and injected into oocytes. We isolated two distinct clones that could select DR beta-chain mRNA as demonstrated by assembly of the translation product with DR alpha chains and immunoprecipitation with DR-specific monoclonal antibodies. One clone is specific for a beta chain of the DR locus. The other clone, much weaker in its ability to select DR mRNA, encodes another Ia-like beta chain. Full-length cDNA clones corresponding to the DR and Ia-like beta chains were isolated and compared. Cross-hybridization was detectable in the coding regions but not in the 3' untranslated regions. Distinct RNAs homologous to the DR and the Ia-like beta-chain clones were present in B cells but were undetectable in three T-cell lines.

Base Sequence

Cloning of multiple copies of immunoglobulin variable kappa genes in cosmid vectors.

The possibility of cloning large segments of DNA in cosmid vectors offers distinct advantages, in particular for the study of multigene families. Large size fragments of mouse embryo DNA were successfully cloned in the cosmid pHC 79. Twelve recombinants hybridizing specifically to an immunoglobulin kappa chain variable region probe were identified. In 9 of these recombinants, the size of the insert ranges from 30 to 43 kilobases. Factors affecting the cloning efficiency of a complex mammalian genome in cosmids were studied. The stability of these recombinant cosmids and the preparation of recombinant cosmid DNA are also discussed.

Animals

Cloning of immunoglobulin kappa light chain genes from mouse liver and myeloma MOPC 173.

The organization of the kappa chain constant region gene was compared in DNA from an immunoglobulin-producing mouse myeloma (MOPC 173) and from liver. In situ hybridization using the Southern blotting technique revealed constant region gene-containing EcoRI-DNA fragments of 14 and 20 kb in the myeloma tissue whereas one EcoRI-DNA fragment with a length of 15 kb was found in liver DNA. After enrichment by RPC-5 chromatography and preparative electrophoresis the 14 kb fragment from MOPC 173 DNA and the 15 kb fragment from liver DNA were cloned in the bacteriophage lambda vector Charon 4A using in vitro packaging. Extensive characterization of the two fragments by restriction endonuclease mapping, in situ hybridization, and electron microscopy (R-loop and heteroduplex) showed that both fragments contain the constant region but no MOPC 173 variable region gene. Both fragments are homologous over a length of 12.5 kb including the constant region but differ from one another starting about 2.7 kb from the 5' end of the constant region gene. This indicates that the 14 kb EcoRI-DNA fragment from the myeloma tissue clearly resulted from somatic DNA rearrangement although it does not seem to carry the MOPC 173 variable region gene. These observations suggest that somatic DNA rearrangement of immunoglobulin light chain genes can involve both homologous chromosomes.Images

Animals

A precise quantitation of gene number by saturation hybridization using cloned DNA.

This paper describes a precise method of gene titration as applied to the alpha- and beta-globin genes in the mouse. The three salient features of the method are: (i) the use of saturation hybridization in probe cDNA excess, (ii) the use of highly purified cDNA probes prepared by preparative hybridization with cloned globin sequences (Longacre and Mach (1978) J. Biol. Chem. 253, 7500) and (iii) the use of cloned globin sequences to calibrate the system internally. The results indicate that there are two genes for alpha-globin and two genes for beta-globin in the BALB/c mouse. The significance of these results are discussed in relation to other data regarding adult and embryonic globin genes.

Animals