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E V Deverson

Publications and source records attributed to E V Deverson.

14 recordsLinked to original sources

The distribution of Tap2 alleles among laboratory rat RT1 haplotypes.

We are reporting the cDNA sequences of Tap2 from two cima and two cimb rat strains. Comparison of the cDNA sequences shows that these alleles fall into two groups, which we refer to as Tap2-A and Tap2-B. We found that alleles from the Tap2-B group are more closely related to the mouse homologue than are Tap2-A alleles, and among the 48 nucleotides which differ between the Tap2-A and Tap2-B cDNAs, three affect restriction sites. We defined pairs of oligonucleotides which allow amplification of the regions bearing these restriction sites from genomic DNA or cDNA, and this technique has been successful for the genotyping of all of the 56 laboratory strains of Rattus norvegicus tested and for five cell lines tested so far. All 14 known RT1 standard haplotypes were tested, and 7 found to belong to the Tap2-B group, and 7 to Tap2-A. We also found that intron sizes among the alleles of the Tap2-B group fall into two subgroups, providing further insight into the phylogeny of these various haplotypes.

ATP Binding Cassette Transporter, Subfamily B, Mem

Effect of polymorphism of an MHC-linked transporter on the peptides assembled in a class I molecule.

Short antigenic peptides bound in the groove of class I major histocompatibility complex molecules enable T cells to detect intracellular pathogens. It has been assumed that structural features of the class I molecule alone select which peptides are bound. It is now demonstrated that a complex polymorphism in one of the major histocompatibility complex-encoded putative peptide-transporter genes is associated with an altered spectrum of bound peptides.

Alleles

Expression and characterization of ovine major histocompatibility complex class II (OLA-DR) genes.

Previous work made use of nucleic acid probes corresponding to different subtypes of the class II regions of the human and murine major histocompatibility complex (MHC) to isolate seven different alpha and 24 different beta genes of the ovine MHC from two cosmid libraries. In an attempt to identify pairs of alpha and beta genes capable of cell surface expression, all permutations of alpha and beta genes were in turn transfected into mouse L-cells. Two pairs of alpha and beta genes co-expressed and stable ovine MHC class II L-cell lines were developed. The expressed alpha genes had previously been defined as DR-alpha homologues (DRA) by differential Southern hybridization to human subtype specific class II probes. The expressed ovine beta genes were also assigned as ovine DR-beta homologues (DRB) on the basis of their sequence having a higher degree of similarity with human DRB than any other subtype. A total of eight out of 23 anti-sheep class II specific monoclonal antibodies were typed OLA-DR specific by FACScan analysis using the L-cell lines.

Amino Acid Sequence

Class II major histocompatibility complex genes of the sheep.

The class II genes of the sheep major histocompatibility complex (MHC) have been cloned from two unrelated heterozygous sheep into cosmid vectors. By restriction mapping and hybridization with a number of class II probes of human and mouse origin, the cloned genetic material has been assigned to seven distinct alpha genes, 10 distinct beta genes and 14 beta-related sequences. It was difficult to identify homologues of specific HLA class II genes because of a tendency for the ovine genes to cross-hybridize between HLA probes representing different loci. Such cross-hybridization was especially marked among the beta genes. While DQ and DR homologues have been tentatively identified by several criteria, no genes corresponding to DP have been identified. Cosmids containing class II alpha and beta genes have been transfected into mouse LTK- cells, and surface expression of a sheep class II molecule has been obtained.

Animals

The sequence of the human immunoglobulin mu-delta intron reveals possible vestigial switch segments.

We present the full sequence of an insert of a lambda phage clone which contains a segment of human DNA stretching from the secreted mu(mu s) constant region gene through to the beginning of the constant region gene and including the membrane mu(mu m) segments. The segment of 8.6kb extending from mu s to the first constant domain of delta(C delta 1) has been completely sequenced and reveals little conservation in comparison to the corresponding mouse sequence. The outstanding feature of the mu s-mu m intron is the occurrence of a potential Z-DNA forming region situated at 285bp downstream of the mu s poly A addition signal. A similar DNA stretch exists in mouse and may represent a site for transcriptional control of mu gene expression. The mu m-C delta 1 intron is much longer (6Kb) than the corresponding mouse intron and includes a series of different repeats, which start at 430bp downstream of the mu m poly A addition site and continue for 3.5Kb, ending about 1.5Kb from the beginning of C delta 1. This series of repeats may be a vestigial switch sequence used in the production of the secreting cells which are the progenitors of the rare human IgD myelomas.

Bacteriophage lambda

J segment in human delta chains.

We report the complete sequence of a cyanogen bromide fragment of a human delta chain (ErI). Its interest lies in the fact that it contains the peptide joining the V delta to the C delta 1 region. The presented sequence is compared with the homologous region of other human heavy chain classes and subclasses. The possibility that human delta chains and other human heavy chains have in their chromosomal DNA a short J sequence, is discussed.

Amino Acid Sequence

Characterization of monoferric fragments obtained by tryptic cleavage of bovine transferrin.

1. The electrophoretically fast (F) and slow (S) fragments obtained by tryptic cleavage of bovine iron-saturated transferrin differed in carbohydrate content and peptide 'maps'. 2. A fragment capable of binding one Fe3+ ion per molecule was isolated after brief tryptic digestion of bovine apotransferrin and shown closely to resemble the S fragment obtained from the iron-saturated protein. 3. Fragments F and S are probably derived from the N- and C-terminal halves of the transferrin molecule respectively. 4. Bovine transferrin could donate iron to rabbit reticulocytes, but the monoferric fragments possessed little iron-donating ability.

Amino Acids

Comparative studies of sheep immunoglobulins IgG1 and IgG2: amino acid sequence of carboxy-terminal cyanogen bromide fragments from their heavy chains.

Sheep immunoglobulin IgG1 and immunoglobulin IgG2 heavy chains were treated with cyanogen bromide. The fractions from the C-terminal end of the heavy chains were isolated and purified, and the amino acid sequences gamma1 and gamma2 heavy chains had the identical sequence: Met-His-Glx-Ala-Leu-His-Asx-His-Tyr-Thr-Glx-Lys-Ser-Ile-Ser-Lys-Pro-Pro-Gly. Comparison with the C-terminal peptides of other species, reported in the literature, suggests that the subclasses are the results of recent evolutionary processes. Residues at position 4 from the C-terminus may be phylogenetically related.

Amino Acid Sequence

The amino acid sequence of a human kappa light chain.

The amino acid sequence of the light chain of the myeloma protein Dee was studied. The light chain is of the kappa type and of subgroup I. The variable part contains some substitutions that are unique and also some that have been observed already in other kappaI chains (repeated variants). Based on these repeated variants a subdivision of the kappaI subgroup is proposed.

Alkylation

MHC class II region encoding proteins related to the multidrug resistance family of transmembrane transporters.

The T-cell immune response is directed against antigenic peptide fragments generated in intracellular compartments, the cytosol or the endocytic system. Peptides derived from cytosolic proteins, usually of biosynthetic origin, are presented efficiently to T-cell receptors by major histocompatibility complex (MHC) class I molecules, with which they assemble, probably in the endoplasmic reticulum (ER). In the absence of recognizable N-terminal signal sequences, such cytosolic peptides must be translocated across the ER membrane by a novel mechanism. Genes apparently involved in the normal assembly and transport of class I molecules may themselves be encoded in the MHC. Here we show that one of these, the rat cim gene, maps to a highly polymorphic part of the MHC class II region encoding two novel members of the family of transmembrane transporters related to multidrug resistance. Other members of this family of transporter proteins are known to be capable of transporting proteins and peptides across membranes independently of the classical secretory pathway. Such molecules are credible candidates for peptide pumps that move fragments of antigenic proteins from the cytosol into the ER.

Amino Acid Sequence

Restoration of antigen presentation to the mutant cell line RMA-S by an MHC-linked transporter.

In mammalian cells, short peptides derived from intracellular proteins are displayed on the cell membrane associated with class I molecules of the major histocompatibility complex (MHC). The surface presentation of class I-peptide complexes presumably alerts the immune system to intracellular viral protein synthesis. Peptides derived from the cytosol must reach the cisternae of the endoplasmic reticulum where they are required for the assembly of stable class I molecules, and it has been proposed that the products of the two MHC-encoded ATP-binding cassette (ABC) transporter genes function to deliver the peptides across the membrane of the endoplasmic reticulum. This idea is supported by experiments in which transfection of a human cell line defective in class I expression with a complementary DNA of one of these genes restored cell surface expression levels. Here we show that the complete phenotype of the mouse mutant cell line RMA-S, in which lack of surface expression of stable class I molecules correlates with an inability to present viral peptides originating in the cytosol, is repaired by the cDNA of the other transporter gene. These results are consistent with the possibility that the two transporter polypeptides form a heterodimer.

ATP Binding Cassette Transporter, Subfamily B, Mem